Claims
- 1. A method of spraying liquid coating material, comprising the steps of .[.providing.]. .Iadd.delivering .Iaddend.liquid coating material to a fluid orifice in a spray head .Iadd.at a substantially constant flow rate.Iaddend.; supplying air to an air supply passage for the spray head; delivering air .Iadd.at low pressure and high volume .Iaddend.from the air supply passage to an atomizing air orifice in the spray head to atomize the coating material into a spray; selectively delivering air from the air supply passage to side port air orifices in the spray head for impingement against and to shape the spray; adjusting the volume flow rate of air delivered to the side port orifices .Iadd.without varying the flow rate of the coating material .Iaddend.to vary the shape of the spray; and, in response to and concurrently with performance of said adjusting step, correspondingly adjustably controlling the volume flow rate of air through the air supply passage in accordance with the volume flow rate of air delivered to the side port orifices for maintaining substantially constant the volume flow rate and pressure of air delivered to the atomizing air orifice. .[.2. A method as in claim 1, wherein said adjusting and correspondingly adjustably controlling steps comprise using a single valve member to simultaneously decrease and increase the volume flow rate of air through the air supply passage by an amount substantially corresponding to decreases and increases in the volume flow rate of air delivered to the
- side port orifices..].3. A method as in claim 1, wherein said air supplying and delivering steps provide air at a pressure no greater than about 10 psi at the atomizing air and side port orifices, and said correspondingly adjustably controlling step decreases the volume flow rate of air through the air supply passage to prevent the pressure of air at the atomizing air orifice from exceeding 10 psi upon a decrease in the
- volume flow rate of air delivered to the side port orifices. 4. A method of spraying liquid coating material with a spray head having a fluid orifice, a first passageway extending between an inlet to the first passageway and an atomizing air orifice, and a second passageway extending between an inlet to the second passageway and side port orifices, comprising the steps of delivering liquid coating material to the fluid orifice; .[.supplying air.]. .Iadd.forming the passageways and the air orifices of large cross-sectional flow area for accommodating passage through and emission therefrom of a high volume of low pressure air; supplying air at low pressure and high volume .Iaddend.through a common passageway to the inlets to the first and second passageways for delivery of air to the atomizing air orifice to atomize the coating material into a spray and to the side port orifices for impingement against and to shape the spray; adjusting the air flow area through the inlet to the second passageway to control the volume flow rate of air delivered to the side port orifices to vary the shape of the spray; and, in response to and concurrently with performance of said adjusting step, correspondingly changing the air flow area through the common passageway to control the volume flow rate of air through the common passageway .[.so.]. .Iadd., said changing step so varying the rate of air flow through the first passageway .Iaddend.that the pressure of air at the atomizing air orifice .Iadd.does not exceed a selected maximum value and .Iaddend.does not change significantly in response to changes in the volume flow rate of air delivered to the side port orifices. .[.5. A method as in claim 4, wherein said adjusting and correspondingly changing steps comprise using a single valve member to change the air flow area through the inlet to the second passageway and to concurrently and correspondingly change the air flow area through the common passageway to prevent the pressure of air at the atomizing air orifice from exceeding a selected maximum value as a result of changes in the volume flow rate of air delivered to the side port
- orifices..].6. A method as in claim 4, wherein said supplying step comprises supplying air through a restriction in the common passageway, and said correspondingly changing step comprises changing the air flow area through the restriction in response to and by an amount correlated to a change in the air flow area through the second passageway inlet.Iadd.; wherein the step of delivering liquid coating material comprises pressurizing a paint cup with air obtained from the common passageway on the downstream side of the restriction to flow coating material from the pressurized cup to the fluid orifice; and including the step of preventing said adjusting step from completely closing the flow area through the second passageway so that some air always flows through the second passageway inlet to limit the pressure of air in the common passageway downstream of the restriction to a value that will not overpressurize the cup.Iaddend.. .[.7. A method as in claim 6, wherein said adjusting and correspondingly changing steps comprise using a single valve member to simultaneously vary the air flow areas through each of the second passageway inlet and the restriction..]..[.8. A method as in claim 6, wherein said supplying step comprises delivering air at a high pressure and low volume to the common passageway on the upstream side of the restriction, and said correspondingly changing step comprises changing the air flow area through the restriction so that air exiting the downstream side of the restriction has, with respect to air on the upstream side, a high volume and low pressure and so that the pressure of air at the atomizing air orifice is no greater than a selected value..]..[.9. A method as in claim 8, wherein the restriction is a venturi and said step of delivering liquid coating material comprises pressurizing a paint cup with air obtained from the common passageway on the downstream side of the venturi to flow coating material from the pressurized cup to the fluid orifice..]..[.10. A method as in claim 9, including the step of preventing said adjusting step from completely closing the flow area through the second passageway inlet so that some air always flows through the second passageway inlet to limit the pressure of air in the common passageway downstream from the venturi to a value that will not overpressurize the cup..]..[.11. A method as in claim 6, wherein said supplying step comprises delivering air at a pressure up to about 100 psi to the common passageway on the upstream side of the restriction, and said correspondingly changing step comprises changing the air flow area through the restriction so that the pressure of air at the atomizing air and side port orifices is no greater than about 10 psi, irrespective of the volume
- flow rate of air delivered to the side port orifices..].12. A method of spraying liquid coating material with an apparatus having a body and a spray head carried by the body, comprising the steps of delivering liquid coating material to a fluid orifice in the spray head; supplying air at a low volume and high pressure to an inlet to a passage in the body; converting the low volume high pressure air at the inlet to the body passage to high volume low pressure air at an outlet from the passage; .Iadd.providing in the spray head at and downstream from the outlet of the passage an atomizing air orifice and side port air orifices of large cross-sectional flow area for accommodating passage through and emission therefrom of the high volume low pressure air, .Iaddend.connecting the outlet from the passage to inlets to an atomizing air orifice and side port orifices in the spray head for flow of .[.high volume low pressure air.]. .Iadd.the high volume of air at the said low pressure .Iaddend.through the atomizing air orifice to atomize the coating material into a spray and through the side port orifices for impingement against and to shape the spray; adjusting the flow rate of air through the inlet to the side port orifices to change the shape of the spray; and, in response to and concurrently with performance of said adjusting step, changing the flow rate of high volume low pressure air at the body passage outlet by an amount correlated to the change in the flow rate of air through the inlet to the side port orifices, so that a change in the flow rate of air through the inlet to the side port orifices does not significantly change the pressure of air at the atomizing air orifice .Iadd.and prevents the pressure of air at the atomizing air orifice from
- exceeding a selected maximum value.Iaddend.. .[.13. A method as in claim 12, wherein said converting step comprises flowing the low volume high pressure air through a restriction in the body passage, and said changing step comprises changing the air flow area through the restriction..]..[.14. A method as in claim 12, wherein said adjusting and changing steps are performed using a single valve member for simultaneously changing the air flow areas through each of the inlet to the side port orifices and the body passage..]..[.15. A method as in claim 12, wherein said converting step comprises flowing the low volume high pressure air through a restriction in the body passage, and said changing step comprises changing the resistance to a flow of air through the restriction..]..[.16. A method as in claim 15, wherein said adjusting and changing steps are performed using a single valve member for simultaneously changing the air flow area through the inlet to the side port orifices and the resistance to a flow of air through the restriction..]..[.17. Apparatus for spray coating, comprising a spray head having a fluid orifice, an atomizing air orifice and an inlet thereto, and side port air orifices and an inlet thereto; means for providing liquid coating material to said fluid orifice; air supply passage means for supplying air to said spray head inlets for delivery to and flow through said atomizing air orifice to atomize coating liquid into a spray and for delivery to and flow through said side port orifices for impingement against and to shape the spray; means for adjusting the volume flow rate of air delivered to said side port orifices to vary the shape of the spray; and means, responsive to operation of said adjusting means, for concurrently and correspondingly adjustably controlling the volume flow rate of air through said air supply passage means..]..[.18. Apparatus as in claim 17, wherein said air supply passage means delivers air to said atomizing air and side port orifices at a pressure no greater than about 10 psi, and said correspondingly adjustably controlling means decreases the flow rate of air through said air supply passage means to prevent the pressure of air at said atomizing air orifice from exceeding 10 psi in response to said adjusting means decreasing the flow rate of air delivered to said side port orifices..]..[.19. Apparatus for spray coating, comprising a spray head having a fluid orifice, a first passageway extending between an inlet to said first passageway and an atomizing air orifice, and a second passageway extending between an inlet to said second passageway and side port air orifices; means for delivering liquid coating material to said fluid orifice; means for supplying air through a common passageway to said inlets for delivery through said first passageway to said atomizing air orifice to atomize the coating material into a spray and through said second passageway to said side port orifices for impingement against and to shape the spray; means for adjusting the air flow area through said second passageway inlet to control the volume flow rate of air delivered to said side port orifices to vary the shape of the spray; and means, responsive to operation of said adjusting means, for concurrently and correspondingly changing the air flow area through said common passageway so that the pressure of air at said atomizing air orifice does not change significantly in response to changes in the volume flow rate of air delivered to said side port orifices..]..[.20. Apparatus as in claim 19, including a restriction in said common passageway, said supplying means supplying air through said restriction to said spray head inlets, and said correspondingly changing means changing the air flow area through said restriction in response to operation of said adjusting means and by an amount correlated to the change in air flow area through said second passageway inlet..]..[.21. Apparatus as in claim 19, including a valve member common to each of said adjusting means and said correspondingly changing means for simultaneously changing the air flow areas through each of said second passageway inlet and said common passageway..]..[.22. Apparatus as in claim 20, where said restriction comprises a venturi, said supplying means delivers air at a low volume and high pressure to said common passageway on the upstream side of said venturi, and said correspondingly changing means changes the air flow area through said venturi so that air exiting the downstream side of said venturi has, with respect to air on its upstream side, a high volume and low pressure and also so that the pressure of air at said atomizing air orifice is no greater than a selected value..]..[.23. Apparatus as in claim 22, wherein said delivering means includes a paint cup, and means for coupling air on the downstream side of said venturi to said paint cup to pressurize said cup for pressurized delivery of coating material to said fluid orifice..]..[.24. Apparatus as in claim 23, including means for preventing said adjusting means from completely closing the air flow area through said second passageway inlet so that some air always flows through said second passageway inlet to limit the pressure of air in said common passageway on the downstream side of said venturi to prevent overpressurization of said cup..]..[.25. Apparatus as in claim 20, wherein said supplying means delivers air at a pressure up to about 100 psi to said common passageway on the upstream side of said restriction, and said correspondingly changing means adjusts the air flow area through said restriction so that the pressure of air at said atomizing air and side port orifices is no greater than about 10 psi, irrespective of the volume flow rate of air delivered to said side port orifices..]..[.26. Apparatus for spray coating, comprising a body having an air passage therethrough; a spray head carried by said body, said spray head having a fluid orifice, an atomizing air orifice and an inlet thereto, and side port air orifices and an inlet thereto, said inlets being coupled with an outlet from said body passage; means for delivering liquid coating material to said spray head fluid orifice; means for supplying air at a low volume and high pressure to an inlet to said body passage; means for converting the low volume high pressure air at said body passage inlet to high volume low pressure air at said body passage outlet for delivery to said spray head inlets for flow through said atomizing air orifice to atomize coating liquid into a spray and through said side port orifices for impingement against and to shape the spray; means for adjusting the volume flow rate of air through said inlet to said side port orifices to change the shape of the spray; and means, responsive to operation of said adjusting means, for concurrently changing the volume flow rate of high volume low pressure air at said body passage outlet by an amount correlated to the change in the flow rate of air through said inlet to said side port orifices, so that a change in the flow rate of air through said inlet to said side port orifices does not significantly change the pressure of air at said atomizing air orifice..]..[.27. Apparatus as in claim 26, said converting means including a restriction in said body passage, the low volume high pressure air at said body passage inlet flowing through said restriction and being converted to high volume low pressure air at said body passage outlet, and said changing means comprising means for changing the flow rate of air through said restriction..]..[.28. Apparatus as in claim 27, including a valve member common to each of said adjusting means and said changing means for simultaneously changing the flow rate of air through each of said inlet to said side port air orifices and said restriction..]..[.29. Apparatus as in claim 28, said valve member comprising a valve stem extended through said body passage and through said restriction and longitudinally movable therein, said valve stem having a forward end for movement toward and away from said inlet to said side port orifices to control the air flow area through said inlet to said side port orifices, said valve stem also having a changed diameter portion cooperable with said restriction, and means for moving said valve stem longitudinally to move said forward end toward and away from said inlet to said side port orifices and to simultaneously move said changed diameter portion relative to said restriction, so that said valve stem simultaneously controls the flow rate of air through each of said inlet to said side port orifices and through said restriction..]..[.30. A spray gun for atomizing liquid coating material, comprising a spray gun body having an air passage extending between an inlet to and an outlet from said passage; a spray head carried on said body, said spray head having a fluid orifice, an atomizing air orifice having an inlet thereto and side port air orifices having an inlet thereto, said inlets being in communication with said body passage outlet; a restriction in said body passage, said restriction having an air flow passage therethrough; a single valve member for simultaneously adjusting the resistance to a flow of air through said restriction and the resistance to a flow of air through said inlet to said side port orifices; means for delivering liquid coating material to said spray head fluid orifice for emission therefrom; means for supplying low volume high pressure air to said body passage inlet for flow through said restriction to said body passage outlet, said restriction converting the low volume high pressure air at said body passage inlet to high volume low pressure air at said body passage outlet for flow through said spray head inlets to said atomizing air orifice to atomize the coating material into a spray and to said side port orifices for impingement against and to shape the spray; and means for operating said valve member to simultaneously adjust the resistance to a flow of air through said restriction and the resistance to a flow of air through said inlet to said side port orifices, such that the resistances either simultaneously increase or decrease by amounts such that, upon a change in the resistance to a flow of air through said inlet to said side port orifices to change the shape of the spray, the volume flow rate of air through said inlet to said atomizing air orifice does not change by an amount that significantly
- changes the pressure of air at said atomizing air orifice..]..[.31. A spray gun as in claim 30, wherein said supplying means supplies air at a pressure of up to about 100 psi at said body passage inlet, and said restriction, valve member and means for operating said valve member limit the pressure of air at said atomizing air and side port orifices to be no greater than about 10 psi, irrespective of changes in the resistance to a flow of air through said inlet to said side port orifices..]..[.32. A spray gun as in claim 30, wherein said restriction comprises a venturi and said valve member comprises a valve stem in said body passage and extending through said venturi, said valve stem having a forward end forming a valve with said inlet to said side port orifices and a body portion of changing diameter whereat said valve stem extends through said venturi, and including means for moving said valve stem to simultaneously change the air flow areas through each of said venturi and said inlet to said side port orifices..]..[.33. A spray gun as in claim 32, wherein said means for delivering coating material comprises a paint cup and means for coupling air in said body passage downstream from said venturi to said cup to pressurize said cup for pressurized delivery of coating material to said fluid orifice..]..[.34. A spray gun as in claim 33, including means for preventing said valve stem forward end from completely closing the air flow area through said inlet to said side port orifices to prevent an excessive pressure of air from being developed in said body passage downstream from said venturi to thereby prevent overpressurization of said
- paint cup..].35. A method of spraying liquid coating material, comprising the steps of providing liquid coating material to a fluid orifice in a spray head for emission therefrom; supplying air to an air supply passage for the spray head; .[.delivering air.]. .Iadd.providing in the spray head at and downstream from the outlet of the passage an atomizing air orifice and shaping air orifices of large cross-sectional flow area for accommodating passageway through and emission therefrom of a high volume of low pressure air; delivering air at low pressure and high volume .Iaddend.from the air supply passage to .[.an.]. .Iadd.the .Iaddend.atomizing air orifice in the spray head to atomize the emitted coating material into a spray; selectively delivering air from the air supply passage to .Iadd.the .Iaddend.shaping air orifices in the spray head for impingement against and to shape the spray; adjusting the volume flow rate of air delivered to the shaping air orifices to adjust the shape of the spray; and, in response to and concurrently with performance of said adjusting step, correspondingly adjustably controlling the volume flow rate of air through the air supply passage to prevent the pressure of air at the spray head from exceeding a selected maximum pressure as a result of changes in the volume flow rate of air delivered to the shaping air orifices.Iadd., wherein said delivering step provides air at a pressure no greater than about 10 psi at the atomizing air orifice, and said correspondingly adjustably controlling step decreases the volume flow rate of air through the air supply passage to prevent the pressure of air at the atomizing air orifice from exceeding about 10 psi upon a decrease in the volume flow rate of air delivered to the shaping air orifices.Iaddend.. .[.36. A method as in claim 35, wherein said adjusting and correspondingly adjustably controlling steps comprise using a single valve member to decrease and increase the volume flow rate of air through the air supply passage simultaneously with and by an amount corresponding to decreases and increase in the volume flow rate of air delivered to the shaping air orifices..]..[.37. A method as in claim 35, wherein said supplying and delivering steps provide air at a pressure no greater than about 10 psi at the atomizing air orifice, and said correspondingly adjustably controlling step decreases the volume flow rate of air through the air supply passage to prevent the pressure of air at the atomizing air orifice from exceeding 10 psi upon a decrease in the volume flow rate of
- air delivered to the shaping air orifices..].38. A method of spraying liquid coating material with a spray head having a fluid orifice, a first passageway extending to an atomizing air orifice and a second passageway extending to shaping air orifices, comprising the steps of delivering liquid coating material to the fluid orifice for emission therefrom; supplying air through a common passageway to the spray head; .[.delivering air supplied to the spray head.]. .Iadd.providing in the spray head at and downstream from the outlet of the passage an atomizing air orifice and shaping air orifices of large cross-sectional flow area for accommodating passage through and emission therefrom of a high volume of low pressure air; delivering air at high pressure and low volume to the common passageway on the upstream side of a restriction therein so that air exiting the downstream side of the restriction has a high volume and a low pressure no greater than about 10 psi; delivering the high volume low pressure air .Iaddend.through the first passageway to the atomizing air orifice to atomize the emitted coating material into a spray; selectively delivering .[.air supplied to the spray head.]. .Iadd.the high volume low pressure air .Iaddend.through the second passageway to the shaping air orifices for impingement against and to shape the spray; adjusting the air flow area through the second passageway to control the volume flow rate of air delivered to the shaping air orifices to adjust the shape of the spray; and, in response to and concurrently with performance of said adjusting step, correspondingly varying the air flow area through the common passageway to change the volume flow rate of air supplied to the spray head to prevent the pressure of air at the spray head from exceeding .[.a selected maximum pressure.]. .Iadd.about 10 psi .Iaddend.as a result of changes in the volume flow rate of air delivered to the shaping air
- orifices. .[.39. A method as in claim 38, wherein said adjusting and correspondingly varying steps comprise using a single valve member to simultaneously change the air flow area through the second passageway and vary the air flow area through the common passageway..]..[.40. A method as in claim 38, wherein said supplying step comprises supplying air through a restriction in the common passageway, and said varying step comprises changing the air flow area through the restriction by an amount correlated to a change in the air flow area through the second passageway..]..[.41. A method as in claim 38, wherein said adjusting and correspondingly varying steps comprise using a single valve member to simultaneously change the air flow area through the second passageway and vary the air flow area through the restriction..]..[.42. A method as in claim 40, wherein said supplying step comprises delivering air at a high pressure and low volume to the common passageway on the upstream side of the restriction, and said correspondingly varying step comprises varying the air flow area through the restriction so that air exiting the downstream side of the restriction has, with respect to air on its upstream side, a high volume and low pressure and so that the pressure of air at the spray head is no greater than the selected maximum pressure..]..[.43. A method as in claim 42, wherein the restriction is a venturi an said step of delivering liquid coating material comprises pressurizing a paint cup with air obtained from the common passageway on the downstream side of the venturi, and flowing the paint from the pressurized cup to the fluid orifice..]..[.44. A method as in claim 40, wherein said supplying step comprises delivering air at a pressure up to about 100 psi to the common passageway on the upstream side of the restriction, and said correspondingly varying step comprises varying the air flow area through the restriction so that the pressure of air at the spray head is no greater than about 10 psi, irrespective of the
- volume flow rate of air delivered to the shaping air orifices..].45. A method of spraying liquid coating material with an apparatus having a body and a spray head carried by the body, comprising the steps of delivering liquid coating material .Iadd.at a substantially constant flow rate .Iaddend.to a fluid orifice in the spray head for emission therefrom; supplying air at a low volume and high pressure to an inlet to a passage in the body; converting the low volume high pressure air at the body passage inlet to high volume low pressure air at an outlet from the body passage; connecting the air at the outlet from the body passage to the spray head; .Iadd.providing in the spray head at and downstream from the outlet of the passageway an atomizing air orifice and shaping air orifices of large cross-sectional flow area for accommodating passage through and emission therefrom of a high volume of low pressure air; .Iaddend.delivering the air connected to the spray head to .[.an.]. .Iadd.the .Iaddend.atomizing air orifice and shaping air orifices in the spray head for flow of high volume low pressure air through the atomizing air orifice to atomize the emitted coating material into a spray and through the shaping air orifices for impingement against and to shape the spray; adjusting the volume flow rate of air delivered to the shaping air orifices to adjust the shape of the spray; and, in response to and concurrently with performance of said adjusting step, correspondingly changing the volume flow rate of high volume low pressure air connected to the spray head from the body passage outlet to prevent the pressure of air at the spray head from exceeding .[.a selected maximum pressure.]. .Iadd.about 10 psi .Iaddend.as a result of changes in the flow rate of air
- delivered to the shaping air orifices. 46. A method as in claim 45, wherein said correspondingly changing step decreases and increases the volume flow rate of high volume low pressure air connected to the spray head by an amount correlated to respective decreases and increases in the volume flow rate of air delivered to the shaping air orifices. .[.47. A method as in claim 45, wherein said converting step comprises flowing the low volume high pressure air through a restriction in the body passage, and said correspondingly changing step comprises changing the resistance to a flow of air through the restriction..]..[.48. A method as in claim 45, wherein air connected to the spray head is delivered to the shaping air orifices through an air flow path and said adjusting and correspondingly changing steps are performed using a common valve member for simultaneously changing the resistance to a flow of air through each of the air flow path and the body passage..]..[.49. Apparatus for spray coating, comprising a spray head having a fluid orifice, an atomizing air orifice and shaping air orifices; means for providing liquid coating material to said fluid orifice for emission therefrom; air supply passage means for supplying air to said spray head; means for delivering air from said air supply passage means to said atomizing air orifice to atomize emitted coating liquid into a spray; means for selectively delivering air from said air supply passage means to said shaping air orifices for impingement against and to shape the spray; means for adjusting the volume flow rate of air delivered to said shaping air orifices to adjust the shape of the spray; and means, responsive to operation of said adjusting means, for concurrently and correspondingly adjustably controlling the volume flow rate of air through said air supply passage means to prevent the pressure of air at said spray head from exceeding a selected maximum pressure as a result of changes in the volume flow rate of air delivered to said shaping air orifices..]..[.50. Apparatus as in claim 49, wherein said air supply passage means and said delivering means deliver air to said atomizing air orifice at a pressure no greater than about 10 psi, and said correspondingly adjustably controlling means decreases the volume flow rate of air through said air supply passage means to prevent the pressure of air at said atomizing air orifice from exceeding 10 psi in response to said adjusting means decreasing the volume flow rate of air delivered to said shaping air orifices..]..[.51. Apparatus for spray coating, comprising a spray head having a fluid orifice, first passageway means extending to an atomizing air orifice and second passageway means extending to shaping air orifices; means for delivering liquid coating material to said fluid orifice for emission therefrom; means for supplying air through a common air passageway means to said spray head for delivery through said first passageway means to said atomizing air orifice to atomize emitted coating material into a spray and through said second passageway means to said shaping air orifices for impingement against and to shape the spray; means for adjusting the air flow area through said second passageway means to control the volume flow rate of air to said shaping air orifices to adjust the shape of the spray; and means, responsive to operation of said adjusting means, for concurrently and correspondingly changing the air flow area through said common passageway means to change the volume flow rate of air supplied to said spray head so that the pressure of air at said spray head does not exceed a selected maximum pressure as a result of changes in the volume flow rate of air delivered to said shaping air orifices..]..[.52. Apparatus as in claim 51, including a restriction in said common passageway means, and wherein said supplying means supplies air through said restriction to said spray head and said correspondingly changing means changes the air flow area through said restriction by an amount correlated to a change in the air flow area through said second passageway means..]..[.53. Apparatus as in claim 51, including valve means common to each of said adjusting means and said correspondingly changing means for simultaneously changing the air flow areas through each of said second passageway means and said common passageway means..]..[.54. Apparatus as in claim 52, wherein said restriction comprises a venturi, said supplying means delivers air at a low volume and high pressure to said common passageway means on the upstream side of said venturi, and said correspondingly changing means changes the air flow area through said venturi so that air exiting the downstream side of said venturi has, with respect to air on its upstream side, a high volume and low pressure and also so that the pressure of air at said spray head is no greater than said selected maximum pressure..]..[.55. Apparatus as in claim 52, wherein said delivering means includes a paint cup and means for coupling air on the downstream side of said restriction to said paint cup to pressurize said cup for pressurized delivery of coating material to said fluid orifice..]..[.56. Apparatus as in claim 52, wherein said supplying means delivers air at a pressure up to about 100 psi to said common passageway means on the upstream side of said restriction, and said correspondingly changing means changes the air flow area through said restriction so that the pressure of air at said spray head is no greater than about 10 psi, irrespective of the volume flow rate of air to said shaping air orifices..]..[.57. Apparatus for spray coating, comprising a body having an air passage therethrough; a spray head carried by said body, said spray head having a fluid orifice, an atomizing air orifice and shaping air orifices; means for delivering liquid coating material to said spray head fluid orifice for emission therefrom; means for supplying air at a low volume and high pressure to an inlet to said body air passage; means for converting the low volume high pressure air at said body passage inlet to high volume low pressure air at an outlet from said body passage; means for connecting the high volume low pressure air at said body passage outlet to said spray head; means for delivering high volume low pressure air connected to said spray head to said atomizing air orifice and to said shaping air orifices for flow through said atomizing air orifice to atomize emitted coating liquid into a spray and through said shaping air orifices for impingement against and to shape the spray; means for adjusting the volume flow rate of air delivered to said shaping air orifices to adjust the shape of the spray; and means, responsive to operation of said adjusting means, for concurrently and correspondingly changing the volume flow rate of high volume low pressure air at said body air passage outlet to prevent the pressure of air at said spray head from exceeding a selected maximum pressure as a result of changes in the volume flow rate of air delivered to said shaping air orifices..]..[.58. Apparatus as in claim 57, wherein said converting means includes a restriction in said body air passage, the low volume high pressure air supplied at said body passage inlet flows through said restriction and is converted to high volume low pressure air at said body passage outlet, and said correspondingly changing means changes the resistance to a flow of air through said restriction..]..[.59. Apparatus as in claim 57, including valve means common to each of said adjusting means and said correspondingly changing means for simultaneously changing the volume flow rates of air delivereed to said shaping air orifices and from said body passage outlet..]..[.60. Apparatus as in claim 58, wherein said spray head includes inlet means to said shaping air orifices, and including a valve stem extended through said body air passage and through said restriction and longitudinally movable therein, said valve stem having a forward end that is movable relative to said inlet means to control the resistance to a flow of air through said inlet means, said valve stem also having a portion cooperable with said restriction for controlling the resistance to a flow of air through said restriction, and including means for moving said valve stem to move said forward end relative to said inlet means and to simultaneously move said portion relative to said restriction, whereby said valve stem simultaneously controls the resistance to a flow of air through each of said inlet means and said restriction..]..[.61. A spray gun for atomizing liquid coating material, comprising a spray gun body having an air passage extending between an inlet to and an outlet from said passage; a spray head carried on said body, said spray head having a fluid orifice, an atomizing air orifice having inlet means thereto and shaping air orifices having inlet means thereto, each said inlet means being in communication with said body passage outlet; a restriction in said body passage, said restriction having an air flow passage therethrough; valve means for simultaneously adjusting the resistance to a flow of air through each of said air flow passage in said restriction and said inlet means to said shaping air orifices; means for delivering liquid coating material to said spray head fluid orifice for emission therefrom; means for supplying low volume high pressure air to said body air passage inlet for flow through said restriction to said air passage outlet, said restriction converting the low volume high pressure air at said body air passage inlet to high volume low pressure air at said body air passage outlet for flow through each of said spray head inlet means to and through said atomizing air orifice to atomize emitted coating material into a spray and to and through said shaping air orifices for impingement against and to shape the spray; and means for operating said valve means to simultaneously adjust the resistance to a flow of air through each of said restriction air flow passage and said inlet means to said shaping air orifices, such that the resistances to a flow of air simultaneously either increases or decreases..]..[.62. A spray gun as in claim 61, wherein said supplying means supplies air at a pressure up to about 100 psi at said body passage inlet, and said restriction and valve means limit the pressure of air at said spray head to be no greater than about 10 psi, irrespective of changes in the resistance to a flow of air through said inlet means to said shaping air orifices..]..[.63. A spray gun as in claim 61, wherein said restriction comprises a venturi and said valve means comprises a valve stem in said body air passage and extending through said venturi, said valve stem having a forward end forming a valve with said inlet means to said shaping air orifices and a body portion of changing diameter within said venturi, and including means for moving said valve stem to simultaneously change the air flow areas through each of said venturi and said inlet means to said shaping air orifices..]..[.64. A spray gun as in claim 61, wherein said means for delivering coating material comprises a paint cup and means for coupling air in said body passage downstream from said restriction to said cup to pressurize said cup for pressurized delivery of coating material to said fluid orifice..].
Parent Case Info
This is .Iadd.a continuation of application Ser. No. 08/152,835 filed on Nov. 12, 1993, now abandoned, which .Iaddend.is a continuation of application(s) Ser. No. 07/529,498 filed on May 22, 1990, now abandoned which in turn is a continuation of U.S. Ser. No. 07/306,517 filed Feb. 3, 1989, now abandoned.
US Referenced Citations (13)
Foreign Referenced Citations (1)
Number |
Date |
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0766088 |
Jan 1957 |
GBX |
Continuations (3)
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Number |
Date |
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Parent |
152835 |
Nov 1993 |
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Parent |
529498 |
May 1990 |
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Parent |
306517 |
Feb 1989 |
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Reissues (1)
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Number |
Date |
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Parent |
668732 |
Mar 1991 |
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