Claims
- 1. An automatic inlet control mechanism for connection to a compression cylinder inlet of a reciprocating air compressor unit which produces compressed air at a predetermined rate of production through the use of a piston that reciprocates within a compression cylinder, said inlet control mechanism comprising:
a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding the compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to the compression cylinder inlet, said valve outlet hole having a size sufficient to enable the compressor unit to produce compressed air at its predetermined rate of production; said valve piston assembly including a valve piston, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet; a vent passageway allowing air to flow between said valve control chamber and the compression cylinder inlet; said vent passageway comprising at least one source of air to the compression cylinder inlet for a period of time after the compressor unit begins to draw air through the compression cylinder inlet, following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet to the compression cylinder inlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn, by the compressor unit, from said valve control chamber to the compression cylinder at a preselected rate which causes the compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by the compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on said valve piston assembly from within said valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compressor chamber inlet to enable the compressor unit to produce compressed air at its predetermined rate of production.
- 2. The automatic inlet control mechanism of claim 1 wherein said valve piston assembly includes a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber.
- 3. The automatic inlet control mechanism of claim 1 wherein said vent passageway is included within said valve piston assembly, said vent orifice being located at a position in said valve piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to the compression cylinder inlet as said valve piston assembly reciprocates within said inlet control mechanism.
- 4. The automatic inlet control mechanism of claim 1 wherein said valve piston assembly includes a valve stem, said vent passageway being included within said valve piston assembly and extending through said valve stem, said vent orifice being located at a position in said valve piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to the compression cylinder inlet as said valve piston assembly reciprocates within said inlet control mechanism.
- 5. The automatic inlet control mechanism of claim 1 wherein said valve outlet includes a valve outlet hole having a tapered portion, said tapered portion having at least a first inner diameter and a second inner diameter, said first inner diameter of said tapered portion being larger than said second inner diameter and being located at a position that is closer to said valve inlet chamber than said second inner diameter when said mechanism is installed, said second inner diameter being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet and said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which allows air to flow from said valve inlet chamber through said valve outlet.
- 6. The automatic inlet control mechanism of claim 1 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 7. The automatic inlet control mechanism of claim 1 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 8. The automatic inlet control mechanism of claim 1 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 9. The automatic inlet control mechanism of claim 1 wherein the compression cylinder inlet includes a cylinder inlet chamber for receiving air from the compression cylinder inlet before the air enters the compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and the cylinder inlet chamber.
- 10. The automatic inlet control mechanism of claim 1 wherein:
the compression cylinder inlet includes a cylinder inlet chamber for receiving air from the compression cylinder inlet before the air enters the compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and the cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 11. The automatic inlet control mechanism of claim 1 wherein the compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from the compression cylinder inlet enters the compression cylinder, said automatic inlet control mechanism being located at least partially within the cylinder inlet chamber.
- 12. The automatic inlet control mechanism of claim 1 wherein:
the compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from the compression cylinder inlet enters the compression cylinder, said automatic inlet control mechanism being located at least partially within the cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 13. The automatic inlet control mechanism of claim 1 wherein:
the compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from the compression cylinder inlet enters the compression cylinder, an inlet hole being positioned between the cylinder inlet chamber and the compression cylinder to channel air from the compression cylinder inlet to the compression cylinder, the inlet hole having an inlet valve to prevent the movement of air from the compression cylinder back through the inlet hole when the piston compresses air with a compression stroke, the air compressor unit including a compression cylinder outlet for receiving air that has been compressed by the compression cylinder and an outlet hole for channeling air from the compression cylinder into the outlet chamber, the outlet hole having an outlet valve to prevent the movement of air from the outlet chamber back through the outlet hole when the piston draws air through the inlet hole with an intake stroke, the automatic inlet control further comprising: a vent valve extending between the cylinder inlet chamber and the compressor outlet chamber, said vent valve having an open position in which said vent valve allows air to pass between the cylinder inlet chamber and the compressor outlet chamber and said vent valve having a closed position in which said vent valve prevents air from passing between the cylinder inlet chamber and the compressor outlet chamber, said vent valve being biased to the closed position; and a valve stem mounted on said valve piston assembly, said valve stem extending into the cylinder inlet chamber, said valve stem being constructed and positioned to engage and move said vent valve to the open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said valve stem being positioned to disengage the vent valve and allow said vent valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 14. The automatic inlet control mechanism of claim 1 further comprising an adjustment mechanism, said adjustment mechanism having a plurality of adjustment positions, each said adjustment position allowing said valve piston assembly to move to one of a plurality of open positions within said inlet control mechanism, each of said plurality of open positions allowing a separate predetermined amount of air to flow from said valve inlet chamber through said valve outlet during each piston reciprocation of the air compressor unit.
- 15. The automatic inlet control mechanism of claim 1 wherein the compressor unit includes an air reservoir, said automatic inlet control mechanism further comprising:
an equalization passage extending from the atmosphere surrounding said automatic inlet control to said valve control chamber; and an equalization valve having an open position and a closed position, said equalization valve being responsive to the air pressure contained within the air reservoir and allowing air to flow through said equalization passage between the atmosphere and said valve control chamber when said equalization valve is in said open position, said equalization valve preventing air from flowing between the atmosphere surrounding said inlet control and said valve control chamber when said equalization valve is in said closed position, said equalization valve moving to said closed position when the air pressure within the air reservoir falls below a predetermined minimum magnitude, said equalization valve moving to said open position when the air pressure within the air reservoir rises above a predetermined maximum magnitude.
- 16. The automatic inlet control mechanism of claim 1 wherein the compressor unit includes an air reservoir, a discharge tube to channel air from the compression cylinder to the air reservoir, an outlet valve to prevent air from flowing from the discharge tube back into the compression cylinder, and a check valve to prevent air from flowing from the air reservoir back into the discharge tube, said automatic inlet control mechanism further comprising:
a bleed passage extending between the discharge tube and said valve inlet chamber; a bleed valve having an open position and a closed position, said bleed valve being biased to said closed position, said bleed valve allowing air to flow between the discharge tube and said valve inlet chamber when said bleed valve is in the open position, said bleed valve preventing air from flowing between the discharge tube and said valve inlet chamber when said bleed valve is in the closed position; and a bleed pin mounted on said valve piston assembly, said bleed pin being positioned to reciprocate with said valve piston assembly within said inlet control mechanism, said bleed pin being configured to engage and move said bleed valve to said open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said bleed pin being positioned to disengage said bleed valve and allow said bleed valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 17. An automatic inlet control mechanism for connection to a compression cylinder inlet of a reciprocating air compressor unit which produces compressed air at a predetermined rate of production through the use of a piston that reciprocates within a compression cylinder, said inlet control mechanism comprising:
a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding the compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to the compression cylinder inlet, said valve outlet hole having a size sufficient to enable the compressor unit to produce compressed air at its predetermined rate of production; said valve piston assembly including a valve piston, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet; a vent passageway allowing air to flow between said valve control chamber and the compression cylinder inlet; said vent passageway comprising the primary source of air to the compression cylinder inlet for the period of time after the compressor unit begins to draw air through the compression cylinder inlet following the movement of said valve piston assembly to the position which prevents air from flowing from said valve inlet chamber through said valve outlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn, by the compressor unit, from said valve control chamber to the compression cylinder at a preselected rate which causes the compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by the compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on said valve piston assembly from within said valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compressor chamber inlet to enable the compressor unit to produce compressed air at its predetermined rate of production.
- 18. The automatic inlet control mechanism of claim 17 wherein said valve piston assembly includes a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber.
- 19. The automatic inlet control mechanism of claim 17 wherein said vent passageway is included within said valve piston assembly, said vent orifice being located at a position in said valve piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to the compression cylinder inlet as said valve piston assembly reciprocates within said inlet control mechanism.
- 20. The automatic inlet control mechanism of claim 17 wherein said valve piston assembly includes a valve stem, said vent passageway being included within said valve piston assembly and extending through said valve stem, said vent orifice being located at a position in said valve piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to the compression cylinder inlet as said valve piston assembly reciprocates within said inlet control mechanism.
- 21. The automatic inlet control mechanism of claim 17 wherein said valve outlet includes a valve outlet hole having a tapered portion, said tapered portion having at least a first inner diameter and a second inner diameter, said first inner diameter of said tapered portion being larger than said second inner diameter and being located at a position that is closer to said valve inlet chamber than said second inner diameter when said mechanism is installed, said second inner diameter being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet and said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which allows air to flow from said valve inlet chamber through said valve outlet.
- 22. The automatic inlet control mechanism of claim 17 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 23. The automatic inlet control mechanism of claim 17 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 24. The automatic inlet control mechanism of claim 17 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 25. The automatic inlet control mechanism of claim 17 wherein the compression cylinder inlet includes a cylinder inlet chamber for receiving air from the compression cylinder inlet before the air enters the compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and the cylinder inlet chamber.
- 26. The automatic inlet control mechanism of claim 17 wherein:
the compression cylinder inlet includes a cylinder inlet chamber for receiving air from the compression cylinder inlet before the air enters the compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and the cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 27. The automatic inlet control mechanism of claim 17 wherein the compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from the compression cylinder inlet enters the compression cylinder, said automatic inlet control mechanism being located at least partially within the cylinder inlet chamber.
- 28. The automatic inlet control mechanism of claim 17 wherein:
the compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from the compression cylinder inlet enters the compression cylinder, said automatic inlet control mechanism being located at least partially within the cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 29. The automatic inlet control mechanism of claim 17 wherein:
the compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from the compression cylinder inlet enters the compression cylinder, an inlet hole being positioned between the cylinder inlet chamber and the compression cylinder to channel air from the compression cylinder inlet to the compression cylinder, the inlet hole having an inlet valve to prevent the movement of air from the compression cylinder back through the inlet hole when the piston compresses air with a compression stroke, the air compressor unit including a compression cylinder outlet for receiving air that has been compressed by the compression cylinder and an outlet hole for channeling air from the compression cylinder into the outlet chamber, the outlet hole having an outlet valve to prevent the movement of air from the outlet chamber back through the outlet hole when the piston draws air through the inlet hole with an intake stroke, the automatic inlet control further comprising: a vent valve extending between the cylinder inlet chamber and the compressor outlet chamber, said vent valve having an open position in which said vent valve allows air to pass between the cylinder inlet chamber and the compressor outlet chamber and said vent valve having a closed position in which said vent valve prevents air from passing between the cylinder inlet chamber and the compressor outlet chamber, said vent valve being biased to the closed position; and a valve stem mounted on said valve piston assembly, said valve stem extending into the cylinder inlet chamber, said valve stem being constructed and positioned to engage and move said vent valve to the open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said valve stem being positioned to disengage the vent valve and allow said vent valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 30. The automatic inlet control mechanism of claim 17 further comprising an adjustment mechanism, said adjustment mechanism having a plurality of adjustment positions, each said adjustment position allowing said valve piston assembly to move to one of a plurality of open positions within said inlet control mechanism, each of said plurality of open positions allowing a separate predetermined amount of air to flow from said valve inlet chamber through said valve outlet during each piston reciprocation of the air compressor unit.
- 31. The automatic inlet control mechanism of claim 17 wherein the compressor unit includes an air reservoir, said automatic inlet control mechanism further comprising:
an equalization passage extending from the atmosphere surrounding said automatic inlet control to said valve control chamber; and an equalization valve having an open position and a closed position, said equalization valve being responsive to the air pressure contained within the air reservoir and allowing air to flow through said equalization passage between the atmosphere and said valve control chamber when said equalization valve is in said open position, said equalization valve preventing air from flowing between the atmosphere surrounding said inlet control and said valve control chamber when said equalization valve is in said closed position, said equalization valve moving to said closed position when the air pressure within the air reservoir falls below a predetermined minimum magnitude, said equalization valve moving to said open position when the air pressure within the air reservoir rises above a predetermined maximum magnitude.
- 32. The automatic inlet control mechanism of claim 17 wherein the compressor unit includes an air reservoir, a discharge tube to channel air from the compression cylinder to the air reservoir, an outlet valve to prevent air from flowing from the discharge tube back into the compression cylinder, and a check valve to prevent air from flowing from the air reservoir back into the discharge tube, said automatic inlet control mechanism further comprising:
a bleed passage extending between the discharge tube and said valve inlet chamber; a bleed valve having an open position and a closed position, said bleed valve being biased to said closed position, said bleed valve allowing air to flow between the discharge tube and said valve inlet chamber when said bleed valve is in the open position, said bleed valve preventing air from flowing between the discharge tube and said valve inlet chamber when said bleed valve is in the closed position; and a bleed pin mounted on said valve piston assembly, said bleed pin being positioned to reciprocate with said valve piston assembly within said inlet control mechanism, said bleed pin being configured to engage and move said bleed valve to said open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said bleed pin being positioned to disengage said bleed valve and allow said bleed valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 33. An automatic inlet control mechanism for connection to a compression cylinder inlet of a reciprocating air compressor unit which produces compressed air at a predetermined rate of production through the use of a piston that reciprocates within a compression cylinder, said inlet control mechanism comprising:
a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said said valve piston assembly including a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding the compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to the compression cylinder inlet, said valve outlet hole having a size sufficient to enable the compressor unit to produce compressed air at its predetermined rate of production; a valve piston and a valve stem included in said valve piston assembly, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet; a vent passageway included in said valve piston assembly, said vent passageway allowing air to flow between said valve control chamber and the compression cylinder inlet; said vent passageway comprising at least one source of air to the compression cylinder inlet for a period of time after the compressor unit begins to draw air through the compression cylinder inlet, following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet to the compression cylinder inlet; a valve outlet hole having a tapered portion included in said valve outlet, said tapered portion having a first inner diameter and a second inner diameter, said first inner diameter of said tapered portion being larger than said second inner diameter and being located at a position that is closer to said valve inlet chamber than said second inner diameter when said inlet control mechanism is installed, said second inner diameter being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet hole and said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which allows air to flow from said valve inlet chamber through said valve outlet; and said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn by the compressor unit from said valve control chamber to the compression cylinder at a preselected rate which causes the compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by the compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on the valve piston assembly from within the valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber through said valve outlet to enable the compressor unit to produce compressed air at its predetermined rate of production.
- 34. The automatic inlet control mechanism of claim 33 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 35. The automatic inlet control mechanism of claim 33 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 36. The automatic inlet control mechanism of claim 33 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 37. An automatic inlet control mechanism for connection to a compression cylinder inlet of a reciprocating air compressor unit which produces compressed air at a predetermined rate of production through the use of a piston that reciprocates within a compression cylinder, said inlet control mechanism comprising:
a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said valve piston assembly including a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding the compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to the compression cylinder inlet, said valve outlet hole having a size sufficient to enable the compressor unit to produce compressed air at its predetermined rate of production; a valve piston and a valve stem included in said valve piston assembly, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet; a vent passageway included in said valve piston assembly, said vent passageway allowing air to flow between said valve control chamber and the compression cylinder inlet; said vent passageway comprising the primary source of air to the compression cylinder inlet for a period of time after the compressor unit begins to draw air through the compression cylinder inlet, following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet to the compression cylinder inlet; a valve outlet hole having a tapered portion included in said valve outlet, said tapered portion having a first inner diameter and a second inner diameter, said first inner diameter of said tapered portion being larger than said second inner diameter and being located at a position that is closer to said valve inlet chamber than said second inner diameter when said inlet control mechanism is installed, said second inner diameter being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet hole and said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which allows air to flow from said valve inlet chamber through said valve outlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn by the compressor unit from said valve control chamber to the compression cylinder at a preselected rate which causes the compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by the compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on the valve piston assembly from within the valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber through said valve outlet to enable the compressor unit to produce compressed air at its predetermined rate of production.
- 38. The automatic inlet control mechanism of claim 37 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet.
- 39. The automatic inlet control mechanism of claim 37 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 40. The automatic inlet control mechanism of claim 37 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to the compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 41. A reciprocating air compressor unit which produces compressed air at a predetermined rate of production through the use of a piston that reciprocates within a compression cylinder, said air compressor unit comprising:
an automatic inlet control mechanism for connection to said compression cylinder inlet, said automatic inlet control having a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding said compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to said compression cylinder inlet, said valve outlet hole having a size sufficient to enable said compressor unit to produce compressed air at its predetermined rate of production; said valve piston assembly including a valve piston and a valve stem, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet when said compressor unit is not drawing air through said valve outlet; a vent passageway allowing air to flow between said valve control chamber and said compression cylinder inlet; said vent passageway comprising at least one source of air to said compression cylinder inlet for a period of time after said compressor unit begins to draw air through said compression cylinder inlet, following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet to the compression cylinder inlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn, by the compressor unit, from said valve control chamber to said compression cylinder at a preselected rate which causes said compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by said compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on said valve piston assembly from within said valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from said position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet enable said compressor unit to produce compressed air at its predetermined rate of production.
- 42. The reciprocating air compressor unit of claim 41 wherein said valve piston assembly includes a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber.
- 43. The reciprocating air compressor unit of claim 41 wherein said vent passageway is included within said valve piston assembly, said vent orifice being located at a position in said valve piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to said compression cylinder inlet as said valve piston assembly reciprocates within said inlet control mechanism.
- 44. The reciprocating air compressor unit of claim 41 wherein said valve piston assembly includes a valve stem, said vent passageway is included within said valve piston assembly and extends through said valve stem, said vent orifice being located at a position in said piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to said compression cylinder inlet as said piston assembly reciprocates within said inlet control mechanism.
- 45. The reciprocating air compressor unit of claim 41 wherein said valve outlet includes a valve outlet hole having a tapered portion, said tapered portion having at least a first inner diameter and a second inner diameter, said first inner diameter of said tapered portion being larger than said second inner diameter and being located at a position that is closer to said valve inlet chamber than said second inner diameter, said second inner diameter being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet and said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which allows air to flow from said valve inlet chamber through said valve outlet.
- 46. The reciprocating air compressor unit of claim 41 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 47. The reciprocating air compressor unit of claim 41 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 48. The reciprocating air compressor unit of claim 41 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 49. The reciprocating air compressor unit of claim 41 wherein said compression cylinder inlet includes a cylinder inlet chamber for receiving air from said compression cylinder inlet before the air enters said compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and said cylinder inlet chamber.
- 50. The reciprocating air compressor unit of claim 41 wherein:
said compression cylinder inlet includes a cylinder inlet chamber for receiving air from said compression cylinder inlet before the air enters said compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and said cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when said compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 51. The reciprocating air compressor unit of claim 41 wherein said compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from said compression cylinder inlet enters said compression cylinder, said automatic inlet control mechanism being located at least partially within said cylinder inlet chamber.
- 52. The reciprocating air compressor unit of claim 41 wherein:
said compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from said compression cylinder inlet enters said compression cylinder, said automatic inlet control mechanism being located at least partially within said cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 53. The reciprocating air compressor unit of claim 41 further comprising:
a cylinder inlet chamber for receiving air before the air from said compression cylinder inlet enters said compression cylinder, an inlet hole being positioned between said cylinder inlet chamber and said compression cylinder to channel air from said compression cylinder inlet to said compression cylinder, said inlet hole having an inlet valve to prevent the movement of air from said compression cylinder back through said inlet hole when the piston compresses air with a compression stroke; a compression cylinder outlet for receiving air that has been compressed by said compression cylinder and an outlet hole for channeling air from said compression cylinder into said outlet chamber, said outlet hole having an outlet valve to prevent the movement of air from said outlet chamber back through said outlet hole when said piston draws air through said inlet hole with an intake stroke; a vent valve extending between said cylinder inlet chamber and said compressor outlet chamber, said vent valve having a closed position and an open position, said vent valve being biased to said closed position, said vent valve allowing air to pass between said cylinder inlet chamber and said compressor outlet chamber when said vent valve is in said open position; and said valve stem extends into said cylinder inlet chamber, said valve stem being constructed and positioned to engage and move said vent valve to the open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said valve stem being positioned to disengage said vent valve and allow said vent valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 54. The reciprocating air compressor unit of claim 41 further comprising:
a cylinder inlet chamber in said compression cylinder inlet for receiving air before the air from said compression cylinder inlet enters said compression cylinder; an inlet hole being positioned between said cylinder inlet chamber and said compression cylinder to channel air from said compression cylinder inlet to said compression cylinder, said inlet hole having an inlet valve to prevent the movement of air from said compression cylinder back through said inlet hole when the piston compresses air with a compression stroke; a compression cylinder outlet for receiving air that has been compressed in said compression cylinder, said compression cylinder outlet having an outlet hole for channeling air from said compression cylinder outlet; an air reservoir to receive and store compressed air that has been channeled through said outlet hole of said compression cylinder outlet; a pilot valve responsive to the pressure of air that is stored within said air reservoir; and an inlet unloader responsive to said pilot valve and configured to keep said inlet valve in an open position when the pressure of air stored within said air reservoir is greater than a predetermined magnitude, thereby preventing said piston from compressing air in said compression cylinder.
- 55. The reciprocating air compressor unit of claim 41 further comprising an adjustment mechanism, said adjustment mechanism having a plurality of adjustment positions, each said adjustment position allowing said valve piston assembly to move to one of a plurality of open positions within said inlet control mechanism, each of said plurality of open positions of allows a predetermined amount of air to flow from said valve inlet chamber through said valve outlet during each piston reciprocation of said air compressor unit.
- 56. The reciprocating air compressor unit of claim 41 wherein said compressor unit includes an air reservoir, said automatic inlet control mechanism further comprising:
an equalization passage extending from the atmosphere surrounding said automatic inlet control to said valve control chamber; and an equalization valve having an open position and a closed position, said equalization valve being responsive to the air pressure contained within said air reservoir and allowing air to flow through said equalization passage between the atmosphere and said valve control chamber when said equalization valve is in said open position, said equalization preventing air from flowing between the atmosphere surrounding said inlet control and said valve control chamber when said equalization valve is in said closed position, said equalization valve moving to said closed position when the air pressure within said air reservoir falls below a predetermined minimum magnitude, said equalization valve moving to said open position when the air pressure within said air reservoir rises above a predetermined maximum magnitude.
- 57. The reciprocating air compressor unit of claim 41 further comprising:
an air reservoir to receive and store air that has been compressed in said compression cylinder; a discharge tube to channel air from said compression cylinder to said air reservoir; an outlet valve to prevent air from flowing from said discharge tube back into said compression cylinder; a check valve to prevent air from flowing from said air reservoir back into said discharge tube; a bleed passage extending between said discharge tube and said valve inlet chamber; a bleed valve having an open position and a closed position, said bleed valve being biased to said closed position, said bleed valve allowing air to flow between said discharge tube and said valve inlet chamber when said bleed valve is in said open position, said bleed valve preventing air from flowing between said discharge tube and said valve inlet chamber when said bleed valve is in said closed position; and a bleed pin mounted on said valve piston assembly, said bleed pin being positioned to reciprocate with said valve piston assembly within said inlet control mechanism, said bleed pin being configured to engage and move said bleed valve to said open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said bleed pin being positioned to disengage said bleed valve and allow said bleed valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 58. A reciprocating air compressor unit which produces compressed air at a predetermined rate of production through the use of a piston that reciprocates within a compression cylinder, said air compressor unit comprising:
an automatic inlet control mechanism for connection to said compression cylinder inlet, said automatic inlet control having a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding said compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to said compression cylinder inlet, said valve outlet hole having a size sufficient to enable said compressor unit to produce compressed air at its predetermined rate of production; said valve piston assembly including a valve piston and a valve stem, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet when said compressor unit is not drawing air through said valve outlet; a vent passageway allowing air to flow between said valve control chamber and said compression cylinder inlet; said vent passageway comprising the primary source of air to said compression cylinder inlet for a period of time after said compressor unit begins to draw air through said compression cylinder inlet following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet to the compression cylinder inlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn, by the compressor unit, from said valve control chamber to said compression cylinder at a preselected rate which causes said compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by said compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on said valve piston assembly from within said valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from said position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet enable said compressor unit to produce compressed air at its predetermined rate of production.
- 59. The reciprocating air compressor unit of claim 58 wherein said valve piston assembly includes a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber.
- 60. The reciprocating air compressor unit of claim 58 wherein said vent passageway is included within said valve piston assembly, said vent orifice being located at a position in said valve piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to said compression cylinder inlet as said valve piston assembly reciprocates within said inlet control mechanism.
- 61. The reciprocating air compressor unit of claim 58 wherein said valve piston assembly includes a valve stem, said vent passageway is included within said valve piston assembly and extends through said valve stem, said vent orifice being located at a position in said piston assembly to enable said vent orifice to restrict the flow of air from said valve control chamber to said compression cylinder inlet as said piston assembly reciprocates within said inlet control mechanism.
- 62. The reciprocating air compressor unit of claim 58 wherein said valve outlet includes a valve outlet hole having a tapered portion, said tapered portion having at least a first inner diameter and a second inner diameter, said first inner diameter of said tapered portion being larger than said second inner diameter and being located at a position that is closer to said valve inlet chamber than said second inner diameter, said second inner diameter being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet and said valve piston assembly when said valve piston assembly is at a position within said inlet control mechanism which allows air to flow from said valve inlet chamber through said valve outlet.
- 63. The reciprocating air compressor unit of claim 58 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 64. The reciprocating air compressor unit of claim 58 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 65. The reciprocating air compressor unit of claim 58 wherein said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 66. The reciprocating air compressor unit of claim 58 wherein said compression cylinder inlet includes a cylinder inlet chamber for receiving air from said compression cylinder inlet before the air enters said compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and said cylinder inlet chamber.
- 67. The reciprocating air compressor unit of claim 58 wherein:
said compression cylinder inlet includes a cylinder inlet chamber for receiving air from said compression cylinder inlet before the air enters said compression cylinder, said vent passageway being positioned to allow for air to flow, outside said valve piston assembly, directly between said valve control chamber and said cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when said compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 68. The reciprocating air compressor unit of claim 58 wherein said compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from said compression cylinder inlet enters said compression cylinder, said automatic inlet control mechanism being located at least partially within said cylinder inlet chamber.
- 69. The reciprocating air compressor unit of claim 58 wherein:
said compression cylinder inlet includes a cylinder inlet chamber for receiving air before the air from said compression cylinder inlet enters said compression cylinder, said automatic inlet control mechanism being located at least partially within said cylinder inlet chamber; and said valve piston assembly includes a valve stem and a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when the compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to the compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 70. The reciprocating air compressor unit of claim 58 further comprising:
a cylinder inlet chamber for receiving air before the air from said compression cylinder inlet enters said compression cylinder, an inlet hole being positioned between said cylinder inlet chamber and said compression cylinder to channel air from said compression cylinder inlet to said compression cylinder, said inlet hole having an inlet valve to prevent the movement of air from said compression cylinder back through said inlet hole when the piston compresses air with a compression stroke; a compression cylinder outlet for receiving air that has been compressed by said compression cylinder and an outlet hole for channeling air from said compression cylinder into said outlet chamber, said outlet hole having an outlet valve to prevent the movement of air from said outlet chamber back through said outlet hole when said piston draws air through said inlet hole with an intake stroke; a vent valve extending between said cylinder inlet chamber and said compressor outlet chamber, said vent valve having a closed position and an open position, said vent valve being biased to said closed position, said vent valve allowing air to pass between said cylinder inlet chamber and said compressor outlet chamber when said vent valve is in said open position; and said valve stem extends into said cylinder inlet chamber, said valve stem being constructed and positioned to engage and move said vent valve to the open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said valve stem being positioned to disengage said vent valve and allow said vent valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 71. The reciprocating air compressor unit of claim 58 further comprising:
a cylinder inlet chamber in said compression cylinder inlet for receiving air before the air from said compression cylinder inlet enters said compression cylinder; an inlet hole being positioned between said cylinder inlet chamber and said compression cylinder to channel air from said compression cylinder inlet to said compression cylinder, said inlet hole having an inlet valve to prevent the movement of air from said compression cylinder back through said inlet hole when the piston compresses air with a compression stroke; a compression cylinder outlet for receiving air that has been compressed in said compression cylinder, said compression cylinder outlet having an outlet hole for channeling air from said compression cylinder outlet; an air reservoir to receive and store compressed air that has been channeled through said outlet hole of said compression cylinder outlet; a pilot valve responsive to the pressure of air that is stored within said air reservoir; and an inlet unloader responsive to said pilot valve and configured to keep said inlet valve in an open position when the pressure of air stored within said air reservoir is greater than a predetermined magnitude, thereby preventing said piston from compressing air in said compression cylinder.
- 72. The reciprocating air compressor unit of claim 58 further comprising an adjustment mechanism, said adjustment mechanism having a plurality of adjustment positions, each said adjustment position allowing said valve piston assembly to move to one of a plurality of open positions within said inlet control mechanism, each of said plurality of open positions of allows a predetermined amount of air to flow from said valve inlet chamber through said valve outlet during each piston reciprocation of said air compressor unit.
- 73. The reciprocating air compressor unit of claim 58 wherein said compressor unit includes an air reservoir, said automatic inlet control mechanism further comprising:
an equalization passage extending from the atmosphere surrounding said automatic inlet control to said valve control chamber; and an equalization valve having an open position and a closed position, said equalization valve being responsive to the air pressure contained within said air reservoir and allowing air to flow through said equalization passage between the atmosphere and said valve control chamber when said equalization valve is in said open position, said equalization preventing air from flowing between the atmosphere surrounding said inlet control and said valve control chamber when said equalization valve is in said closed position, said equalization valve moving to said closed position when the air pressure within said air reservoir falls below a predetermined minimum magnitude, said equalization valve moving to said open position when the air pressure within said air reservoir rises above a predetermined maximum magnitude.
- 74. The reciprocating air compressor unit of claim 58 further comprising:
an air reservoir to receive and store air that has been compressed in said compression cylinder; a discharge tube to channel air from said compression cylinder to said air reservoir; an outlet valve to prevent air from flowing from said discharge tube back into said compression cylinder; a check valve to prevent air from flowing from said air reservoir back into said discharge tube; a bleed passage extending between said discharge tube and said valve inlet chamber; a bleed valve having an open position and a closed position, said bleed valve being biased to said closed position, said bleed valve allowing air to flow between said discharge tube and said valve inlet chamber when said bleed valve is in said open position, said bleed valve preventing air from flowing between said discharge tube and said valve inlet chamber when said bleed valve is in said closed position; and a bleed pin mounted on said valve piston assembly, said bleed pin being positioned to reciprocate with said valve piston assembly within said inlet control mechanism, said bleed pin being configured to engage and move said bleed valve to said open position when said valve piston assembly is in a position within said inlet control mechanism that prevents air from flowing from said valve inlet chamber through said valve outlet, said bleed pin being positioned to disengage said bleed valve and allow said bleed valve to move to said closed position when said valve piston assembly is in a position within said inlet control mechanism that allows air to flow from said valve inlet chamber through said valve outlet.
- 75. A reciprocating air compressor unit which produces compressed air at a predetermined rate of production, said reciprocating air compressor unit comprising:
a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said valve piston assembly including a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding said compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to said compression cylinder inlet, said valve outlet hole having a size sufficient to enable said compressor unit to produce compressed air at its predetermined rate of production; a valve piston and a valve stem included in said valve piston assembly, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said mechanism body which prevents air from flowing from said valve inlet chamber to said valve outlet when the compressor unit is not drawing air through said valve outlet; a vent passageway included in said valve piston assembly, said vent passageway allowing air to flow between said valve control chamber and said compression cylinder inlet, said vent passageway comprising at least one source of air to the compression cylinder inlet for a period of time after the compressor unit begins to draw air through said compression cylinder inlet following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet; a valve outlet hole having a tapered portion included in said valve outlet, said tapered portion having a first inner diameter and a second inner diameter, said first inner diameter being larger than said second inner diameter, said first inner diameter of said tapered portion being located at a position that is closer to said valve inlet chamber than said second inner diameter of said tapered portion, said second inner diameter of said tapered portion being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said mechanism body which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet hole and said valve piston assembly when said valve piston assembly is at a position within said mechanism body which allows air to flow from said valve inlet chamber through said valve outlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn by said compressor unit from said valve control chamber to said compression cylinder at a preselected rate which causes the compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by said compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on the valve piston assembly from within said valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber through said valve outlet to enable said compressor unit to produce compressed air at its predetermined rate of production.
- 76. The reciprocating air compressor unit of claim 75 wherein said valve piston assembly includes a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when said compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 77. The reciprocating air compressor unit of claim 75 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 78. The reciprocating air compressor unit of claim 75 wherein said valve piston assembly includes a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when said air compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 79. A reciprocating air compressor unit which produces compressed air at a predetermined rate of production, said reciprocating air compressor unit comprising:
a mechanism body having a valve cavity, said valve cavity having a valve control chamber and a valve inlet chamber, a valve piston assembly positioned between said valve control chamber and said valve inlet chamber and constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said valve piston assembly including a diaphragm positioned between said valve control chamber and said valve inlet chamber, said diaphragm being constructed to prevent air flow between said valve control chamber and said valve inlet chamber, said diaphragm being positioned to move toward said valve control chamber when air pressure within said valve inlet chamber is greater than air pressure within said valve control chamber, said diaphragm being positioned to move toward said valve inlet chamber when air pressure within said valve control chamber is greater than the air pressure within said valve inlet chamber; a valve inlet positioned to allow air to flow from the atmosphere surrounding said compressor unit and into said valve inlet chamber; a valve outlet having a valve outlet hole positioned to allow air to flow from said valve inlet chamber to said compression cylinder inlet, said valve outlet hole having a size sufficient to enable said compressor unit to produce compressed air at its predetermined rate of production; a valve piston and a valve stem included in said valve piston assembly, said valve piston assembly being positioned to reciprocate within said valve cavity, a biasing member having a force which moves said valve piston assembly to a position within said mechanism body which prevents air from flowing from said valve inlet chamber to said valve outlet when the compressor unit is not drawing air through said valve outlet; a vent passageway included in said valve piston assembly, said vent passageway allowing air to flow between said valve control chamber and said compression cylinder inlet; said vent passageway comprising the primary source of air to the compression cylinder inlet for a period of time after the compressor unit begins to draw air through said compression cylinder inlet following the movement of said valve piston assembly to a position which prevents air from flowing from said valve inlet chamber through said valve outlet; a valve outlet hole having a tapered portion included in said valve outlet, said tapered portion having a first inner diameter and a second inner diameter, said first inner diameter being larger than said second inner diameter, said first inner diameter of said tapered portion being located at a position that is closer to said valve inlet chamber than said second inner diameter of said tapered portion, said second inner diameter of said tapered portion being sufficiently small to form an air restriction against said valve piston assembly when said valve piston assembly is at a position within said mechanism body which prevents air from flowing from said valve inlet chamber through said valve outlet, said first inner diameter of said tapered portion being sufficiently large to allow air to pass between said tapered portion of said valve outlet hole and said valve piston assembly when said valve piston assembly is at a position within said mechanism body which allows air to flow from said valve inlet chamber through said valve outlet; said vent passageway including a vent orifice which restricts the flow of air from said valve control chamber to said compression cylinder inlet; and said vent orifice having an orifice size which allows air to be drawn by said compressor unit from said valve control chamber to said compression cylinder at a preselected rate which causes the compressor unit to produce compressed air at less than its predetermined rate of production, said valve control chamber having a volume which enables air to be drawn through said orifice from said valve control chamber by said compressor unit over a preselected time period until air within said valve control chamber is at a reduced pressure level which enables atmospheric pressure on the valve piston assembly from within said valve inlet chamber to overcome the force of said biasing member sufficiently to move said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber through said valve outlet to enable said compressor unit to produce compressed air at its predetermined rate of production.
- 80. The reciprocating air compressor unit of claim 79 wherein said valve piston assembly includes a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when said compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet.
- 81. The reciprocating air compressor unit of claim 79 wherein said valve inlet includes a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
- 82. The reciprocating air compressor unit of claim 79 wherein said valve piston assembly includes a sliding seal mounted to reciprocate along at least a portion of said valve stem to contact said valve outlet to cause said valve piston assembly to prevent air from flowing from said valve inlet chamber through said valve outlet when said air compressor unit is not drawing air through said valve outlet, the movement of said valve piston assembly away from the position at which said valve piston assembly prevents air from flowing from said valve inlet chamber and through said valve outlet to said compression cylinder inlet causing said sliding seal to move away from said valve outlet to allow air to flow to said compression cylinder inlet, said valve inlet including a filter to remove impurities from air that passes through said valve inlet and enters said valve inlet chamber.
Parent Case Info
[0001] This application takes priority from U.S. provisional application No. 60/464,466 filed Apr. 22, 2003, which is incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60464466 |
Apr 2003 |
US |