Claims
- 1. A high-pressure pump comprising:
- a pressurization chamber;
- a plunger coupled to the pressurization chamber for reciprocation within the pressurization chamber, the plunger having an intake stroke and a pumping stroke;
- at least one inlet port for introducing a volume of fluid into the pressurization chamber, the plunger drawing fluid into the pressurization chamber during the intake stroke and pressurizing the fluid on the pumping stroke;
- a valve assembly having an inlet check valve and an outlet check valve, the valve assembly being coupled to the pressurization chamber such that pressurized fluid may pass from the pressurization chamber to the outlet check valve, the outlet check valve selectively allowing the pressurized fluid to pass to an outlet chamber; and
- a pressure compensation device including an outlet pin having a first end and a second end, the second end of the outlet pin exerting a force upon a lever when the first end of the outlet pin is acted upon by the pressurized fluid in the outlet chamber, a compensation pin having a first end and a second end, the second end of the compensation pin exerting a control force on the lever when the first end of the compensation pin is acted upon by a control pressure, and an inlet pin having a first end and a second end, the first end of the inlet pin being in contact with the lever, the second end of the inlet pin being in contact with the inlet check valve, wherein the force from the compensation pin acting on the lever is balanced by the force from the outlet pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the outlet pin to exert a force on the lever that overcomes the force exerted by the compensation pin on the lever, thereby causing the lever to pivot and act upon the first end of the inlet pin, such that the second end of the inlet pin holds the inlet check valve open, thereby preventing further pressurization of the fluid in the pressurization chamber.
- 2. The high-pressure pump according to claim 1 wherein the outlet pin passes through a sleeve of a compensator actuator cartridge wherein a tolerance between the outlet pin and the sleeve is no more than three ten-thousandths of an inch.
- 3. The high-pressure pump according to claim 1 wherein the second end of the outlet pin is a first knife-edge bearing and the lever pivots about a second knife-edge bearing, thereby reducing friction.
- 4. The high-pressure pump according to claim 1 wherein the lever is configured such that the compensation pin, the outlet pin, and the inlet pin all act on a common center line of the lever.
- 5. The high-pressure pump according to claim 1 wherein the fluid pressure in the outlet chamber may be set to a user-selected level by adjusting the control pressure.
- 6. The high-pressure pump according to claim 1 wherein the lever is provided with an opening to receive the second end of the compensation pin and a diameter of the second end of the compensation pin is smaller than the opening in the lever and the compensation pin has an ability to flex such that when the lever pivots, the compensation pip does not slide in a lateral direction and friction between the compensation pin and the lever is reduced.
- 7. A high-pressure pump comprising:
- a pressurization chamber;
- a plunger coupled to the pressurization chamber for reciprocation within the pressurization chamber, the plunger having an intake stroke and a pumping stroke;
- at least one inlet port for introducing a volume of fluid into the pressurization chamber, the plunger drawing fluid into the pressurization chamber during the intake stroke and pressurizing the fluid on the pumping stroke;
- a valve assembly having an inlet check valve and an outlet check valve, the valve assembly being coupled to the pressurization chamber such that pressurized fluid may pass from the pressurization chamber to the outlet check valve, the outlet check valve selectively allowing the pressurized fluid to pass to an outlet chamber; and
- a pressure compensation device coupled to the inlet check valve, the pressure compensation device having a first pin provided in direct contact with the pressurized fluid in the outlet chamber and being balanced against a control pressure, the pressure compensation device having a second pin coupled to the inlet check valve and to the first pin, such that when a force generated by the pressurized fluid in the outlet chamber overcomes a force generated by the control pressure, the first pin acts against the second pin such that the second pin holds the inlet check valve open, thereby preventing the passing of fluid from the pressurization chamber to the outlet chamber and the pressurization of fluid.
- 8. The high-pressure pump according to claim 7 wherein the pressure compensation device further comprises:
- a compensation pin and a lever, wherein the compensation pin is provided with a first end and a second end, the second end of the compensation pin exerting a force on the lever when the first end of the compensation pin is acted upon by a control pressure; and
- wherein the first pin is provided with a first end and a second end, the second end of the first pin exerting a force upon the lever when the first end of the first pin is acted upon by the pressurized fluid in the outlet chamber and wherein the second pin is provided with a first end and a second end, the first end of the second pin being in contact with the levers, the second end of the second pin being in contact with the inlet check valve, wherein the force from the compensation pin acting on the lever is balanced by the force from the first pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the first pin to exert a force on the lever that overcomes the force exerted by the compensation pin on the lever, thereby causing the lever to pivot and act upon the first end of the second pin, such that the second end of the second pin holds the inlet check valve open, thereby preventing the further pressurization of the fluid in the pressurization chamber.
- 9. The high-pressure pump according to claim 8 wherein the first pin passes through a compensator actuator cartridge that is sealingly engaged with the valve assembly, thereby preventing the leakage of pressurized fluid from the outlet chamber.
- 10. A high-pressure pump comprising:
- a pressurization chamber;
- a plunger coupled to the pressurization chamber for reciprocation within the pressurization chamber, the plunger having an intake stroke and a pumping stroke;
- at least one inlet port for introducing a volume of fluid into the pressurization chamber, the plunger drawing fluid into the pressurization chamber during the intake stroke and pressurizing the fluid on the pumping stroke;
- a valve assembly having an inlet check valve and an outlet check valve, the valve assembly being coupled to the pressurization chamber such that fluid may pass from the pressurization chamber to the outlet check valve, the outlet check valve selectively allowing the pressurized fluid to pass to an outlet chamber; and
- a pressure compensation device coupled to the inlet check valve, the pressure compensation device having a first pin provided in direct contact with the pressurized fluid in the outlet chamber and being balanced against a control force, the pressure compensation device having a second pin, coupled to the inlet check valve and to the first pin, such that when a force generated by the pressurized fluid in the outlet chamber overcomes the control force, the first pin acts against the second pin such that the second pin holds the inlet check valve open, thereby preventing the further pressurization of fluid.
- 11. A high-pressure pump comprising:
- a pressurization chamber;
- a plunger coupled to the pressurization chamber for reciprocation within the pressurization chamber, the plunger having an intake stroke and a pumping stroke;
- at least one inlet port for introducing a volume of fluid into the pressurization chamber, the plunger drawing fluid into the pressurization chamber during the intake stroke and pressurizing the fluid on the pumping stroke;
- a valve assembly having an inlet check valve and an outlet check valve, the valve assembly being coupled to the pressurization chamber such that fluid may pass from the pressurization chamber to the outlet check valve, the outlet check valve selectively allowing the pressurized fluid to pass to an outlet chamber; and
- a pressure compensation device coupled to the inlet check valve, the pressure compensation device having an outlet pin provided with a first end and a second end, the second end of the outlet pin exerting a force upon a lever when the first end of the outlet pin is acted upon by the pressurized fluid in the outlet chamber, the lever being also acted upon by the control force; and
- the pressure compensation device further being provided with an inlet pin having a first end and a second end, the first end of the inlet pin being in contact with the lever, the second end of the inlet pin being in contact with the inlet check valve, wherein the control force acting on the lever is balanced by the force from the outlet pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the outlet pin to exert a force on the lever that overcomes the control force, thereby causing the lever to pivot and act upon the first end of the inlet pin, the inlet pin including means for preventing the further pressurization of fluid.
- 12. The high-pressure pump according to claim 11 wherein the second end of the inlet pin forces the inlet check valve into an open position, such that the fluid in the pressurization chamber flows back out into the inlet area, thereby preventing the further pressurization of fluid.
- 13. A pressure compensation device for use in a high-pressure pump having a check valve assembly that selectively allows a volume of pressurized fluid to pass from a pressurization chamber to an outlet chamber, comprising:
- an outlet pin having a first end and a second end, the second end of the outlet pin exerting a force upon a lever when the first end of the outlet pin is acted upon by the pressurized fluid in the outlet chamber;
- a compensation pin having a first end and a second end, the second end of the compensation pin exerting a force on the lever when the first end of the compensation pin is acted upon by a control pressure; and
- an inlet pin having a first end and a second end, the first end of the inlet pin being in contact with the lever, the second end of the inlet pin being in contact with the inlet check valve, wherein the force from the compensation pin acting on the lever is balanced by the force from the outlet pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the outlet pin to exert a force on the lever that overcomes the force exerted by the compensation pin on the lever, thereby causing the lever to pivot and act upon the first end of the inlet pin, such that the second end of the inlet pin holds the inlet check valve open, thereby preventing the pressurized fluid from passing from the pressurization chamber to the outlet chamber.
- 14. The pressure compensation device according to claim 13, further comprising a compensator actuator cartridge having a sleeve provided with means for allowing the outlet pin to pass through it, wherein a tolerance between the outlet pin and the sleeve is minimized to prevent leakage of pressurized fluid from the outlet chamber.
- 15. The pressure compensation device according to claim 13 wherein the second end of the outlet pin is a first knife-edge bearing and the lever pivots about a second knife-edge bearing, thereby reducing friction.
- 16. The pressure compensation device according to claim 13 wherein the lever is configured such that the compensation pin, the outlet pin, and the inlet pin all act on a common center line of the lever.
- 17. The pressure compensation device according to claim 13 wherein the fluid pressure in the outlet chamber may be set to a user-selected level by adjusting the control pressure.
- 18. The pressure compensation device according to claim 13 wherein the lever is provided with an opening to receive the second end of the compensation pin and a diameter of the second end of the compensation pin is smaller than the opening in the lever and the compensation pin has an ability to flex such that when the lever pivots, the compensation pin does not slide in a lateral direction and friction between the compensation pin and the lever is reduced.
- 19. A method for controlling the output pressure of a positive displacement fluid pump, comprising:
- drawing a volume of fluid into a pressurization chamber;
- pressurizing the fluid by acting on the fluid with a reciprocating plunger;
- selectively allowing the pressurized fluid to pass from the pressurization chamber to an outlet chamber;
- balancing a force generated by the pressurized fluid in the outlet chamber against a control force via a pressure compensation device having a first pin positioned at least in part within the outlet chamber and a second pin coupled to the first pin and to an inlet check valve; and
- holding the inlet check valve open via the second pin when the force generated by the pressurized fluid overcomes the control force, thereby preventing the further pressurization of fluid.
- 20. A pressure compensation device for use in a high-pressure pump having a check valve assembly that selectively allows a volume of pressurized fluid to pass from a pressurization chamber to an outlet chamber via an inlet check valve and an outlet check valve, comprising:
- a first pin positioned at least in part within the outlet chamber to sense a force generated by the pressurized fluid in the outlet chamber;
- means for sensing a control force;
- means for balancing the force generated by the pressurized fluid against the control force; and
- a second pin coupled to the inlet check valve and to the first pin such that the second pin holds the inlet check valve open when the force generated by the pressurized fluid overcomes the control force.
- 21. The pressure compensation device according to claim 20 wherein the control force is generated by a fluid control pressure.
- 22. The pressure compensation device according to claim 20, further comprising:
- a lever that is acted upon by the force generated by the pressurized fluid in the outlet chamber via the first pin and that is acted upon by the control force, such that the lever is balanced when the pressure in the outlet chamber has not exceeded a desired level;
- an inlet area via which fluid is introduced into the pressurization chamber; and
- wherein the lever rotates and acts upon the second pin which acts upon the inlet check valve when the pressure in the outlet chamber exceeds the desired level, thereby preventing the pressurization of the fluid.
- 23. A high-pressure pump comprising:
- a pressurization chamber;
- a plunger coupled to the pressurization chamber for reciprocation within the pressurization chamber, the plunger having an intake stroke and a pumping stroke;
- at least one inlet port for introducing a volume of fluid into the pressurization chamber, the plunger drawing fluid into the pressurization chamber during the intake stroke and pressurizing the fluid on the pumping stroke;
- a valve assembly having an inlet check valve and an outlet check valve, the valve assembly being coupled to the pressurization chamber such that pressurized fluid may pass from the pressurization chamber to the outlet check valve, the outlet check valve selectively allowing the pressurized fluid to pass to an outlet chamber; and
- a pressure compensation device including an outlet pin having a first end and a second end, the second end of the outlet pin exerting a force upon a lever when the first end of the outlet pin is acted upon by the pressurized fluid in the outlet chamber, a compensation pin having a first end and a second end, the second end of the compensation pin exerting a control force on the lever when the first end of the compensation pin is acted upon by a control force, and an inlet pin having a first end and a second end, the first end of the inlet pin being in contact with the lever, the second end of the inlet pin being in contact with the inlet check valve, wherein the force from the compensation pin acting on the lever is balanced by the force from the outlet pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the outlet pin to exert a force on the lever that overcomes the force exerted by the compensation pin on the lever, thereby causing the lever to pivot and act upon the first end of the inlet pin, such that the second end of the inlet pin holds the inlet check valve open such that the fluid in the pressurization chamber flows back out of the pressurization chamber during the pumping stroke, thereby-preventing further pressurization of the fluid in the pressurization chamber.
- 24. A pressure compensation device for use in a high-pressure pump having a check valve assembly that selectively allows a volume of pressurized fluid to pass from a pressurization chamber to an outlet chamber, comprising:
- an outlet pin having a first end and a second end, the second end of the outlet pin exerting a force upon a lever when the first end of the outlet pin is acted upon by the pressurized fluid in the outlet chamber;
- a compensation pin having a first end and a second end, the second end of the compensation pin exerting a force on the lever when the first end of the compensation pin is acted upon by a control force; and
- an inlet pin having a first end and a second end, the first end of the inlet pin being in contact with the lever, the second end of the inlet pin being in contact with the inlet check valve, wherein the force from the compensation pin acting on the lever is balanced by the force from the outlet pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the outlet pin to exert a force on the lever that overcomes the force exerted by the compensation pin on the lever, thereby causing the lever to pivot and act upon the first end of the inlet pin, such that the second end of the inlet pin holds the inlet check valve open, thereby preventing the pressurized fluid from passing from the pressurization chamber to the outlet chamber.
- 25. The high-pressure pump according to claim 23 wherein the outlet pin passes through a compensator actuator cartridge that is sealingly engaged with the valve assembly, thereby preventing the leakage of pressurized fluid from the outlet chamber.
- 26. A high-pressure pump comprising:
- a pressurization chamber;
- a plunger coupled to the pressurization chamber for reciprocation within the pressurization chamber, the plunger having an intake stroke and a pumping stroke; at least one inlet port for introducing a volume of fluid into the pressurization chamber, the plunger drawing fluid into the pressurization chamber during the intake stroke and pressurizing the fluid on the pumping stroke;
- a valve assembly having an inlet check valve and an outlet check valve, the valve assembly being coupled to the pressurization chamber such that pressurized fluid may pass from the pressurization chamber to the outlet check valve, the outlet check valve selectively allowing the pressurized fluid to pass to an outlet chamber; and
- a pressure compensation device coupled to the inlet check valve, the pressure compensation device comprising an outlet pin having a first end and a second end, the second end of the outlet pin exerting a force upon a lever when the first end of the outlet pin is acted upon by the pressurized fluid in the outlet chamber, a compensation pin having a first end and a second end, the second end of the compensation pin exerting a force on the lever when the first end of the compensation pin is acted upon by a control pressure, and an inlet pin having a first end and a second end, the first end of the inlet pin being in contact with the lever, the second end of the inlet pin being in contact with the inlet check valve, wherein the force from the compensation pin acting on the lever is balanced by the force from the outlet pin acting on the lever, and wherein an increase in pressure of the pressurized fluid in the outlet chamber above a preset level causes the outlet pin to exert a force on the lever that overcomes the force exerted by the compensation pin on the lever, thereby causing the lever to pivot and act upon the first end of the inlet pin, such that the second end of the inlet pin holds the inlet check valve open, thereby preventing the further pressurization of the fluid in the pressurization chamber.
- 27. The high-pressure pump according to claim 26 wherein the outlet pin passes through a compensator actuator cartridge that is sealingly engaged with the valve assembly, thereby preventing the leakage of pressurized fluid from the outlet chamber.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of U.S. patent application Ser. No. 08/073,584, filed Jun. 7, 1993, now abandoned, which is a continuation-in-part of U.S. patent application Ser. No. 07/931,780, filed Aug. 17, 1992, now abandoned.
US Referenced Citations (15)
Foreign Referenced Citations (2)
Number |
Date |
Country |
484762A1 |
May 1992 |
EPX |
WO8203337 |
Oct 1982 |
WOX |
Continuations (1)
|
Number |
Date |
Country |
Parent |
73584 |
Jun 1993 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
931780 |
Aug 1992 |
|