Claims
- 1. A compressor having a crank chamber a cylinder bore, a suction chamber and a discharge chamber, the compressor comprising a drive shaft extending into the crank chamber, a cam plate mounted on a drive shaft within the crank chamber and a piston coupled to the cam plate and located in the cylinder bore, wherein said cam plate converts rotation of the drive shaft to reciprocating movement of the piston in the cylinder bore, said piston compressing gas supplied to the cylinder bore from a separate external circuit by way of the suction chamber and discharging the compressed gas to the external circuit by way of the discharge chamber;said cam plate being tiltable between a maximum inclined angle position and a minimum inclined angle position with respect to a plane perpendicular to an axis of the drive shaft according to a difference between the pressure in the crank chamber and the pressure in the cylinder bore, wherein said piston moves by a stroke based on the inclination of the cam plate to control the displacement of the compressor; the compressor further comprising: a discharge passage for connecting the discharge chamber with the external circuit; a valve located in the discharge passage, said valve having an upstream side and a downstream side, said valve selectively connecting and disconnecting the discharge chamber with the external circuit based on a difference between the pressure acting on the upstream side of the valve and the pressure acting on the downstream side of the valve; and a discharge muffler for preventing pulsation caused by the flow of the gas discharged from the cylinder bore to the discharge chamber, wherein said discharge passage is defined in the discharge muffler.
- 2. The compressor according to claim 1, wherein said valve disconnects the discharge chamber from the external circuit when the cam plate is at the minimum inclined angle position to minimize the displacement of the compressor.
- 3. The compressor according to claim 2, wherein said valve connects the discharge chamber with the external circuit when the inclination of the cam plate is greater than the minimum inclined angle position.
- 4. The compressor according to claim 1, wherein said valve includes a check valve that allows only the compressed gas to be discharged from the discharge chamber to the external circuit.
- 5. The compressor according to claim 4, wherein said valve includes:a valve body movable between a first position and a second position, said valve body connecting the discharge chamber with the external circuit at the first position, and said valve body disconnecting the discharge chamber from the external circuit at the second position; and means for urging the valve body toward the second position.
- 6. The compressor according to claim 5, wherein said valve includes a member for accommodating said valve body and said urging means, and said valve is an integrated component including the accommodating member, the valve body and the urging means.
- 7. The compressor according to claim 6 further comprising:a pair of housings respectively having end faces secured to one another; and wherein said valve has a flange clamped by the end faces of the housings to secure the valve to the housings.
- 8. The compressor according to claim 6, wherein said accommodating member includes a casing having a shape of a hollow cylinder with an open end and a spacer fitted in the open end of the casing, said casing having a through hole for providing communication from the interior of the casing to the external circuit, and said spacer having a valve hole for providing communication from the interior of the casing of the discharge chamber and an inner end surface inserted in the casing so as to face the valve body, and wherein said valve body abuts against the inner end surface for closing the valve hole to block the communication of the valve hole with the through hole via the interior of the casing when the valve body is at the second position.
- 9. The compressor according to claim 1 further comprising:a supply passage for connecting the discharge chamber with the crank chamber to deliver the gas from the discharge chamber to the crank chamber; a release passage for connecting the crank chamber with the suction chamber to deliver the gas from the crank chamber to the suction chamber; and control means disposed midway along the supply passage for adjusting the amount of the gas introduced into the crank chamber from the discharge chamber through the supply passage to control the pressure in the crank chamber.
- 10. The compressor according to claim 9 further comprising a shutter member movable between a first position and a second position in response to the inclination of the cam plate, said shutter member connecting the external circuit with the suction chamber at the first position and disconnecting the external circuit from the suction chamber at the second position, wherein said cam plate moves the shutter member to the second position when the cam plate is at the minimum inclined angle position to minimize the displacement of the compressor.
- 11. The compressor according to claim 10 further comprising:a positioning surface facing the shutter member; and wherein said shutter member has an end surface abutting against the positioning surface when the shutter member is positioned in the second position; and said cam plate is held at the minimum inclined angle position when the shutter member is positioned in the second position.
- 12. The compressor according to claim 10 further comprising a gas circulating passage including said release passage and said supply passage, said circulating passage being defined upon disconnection of the external circuit from the suction chamber.
- 13. The compressor according to claim 1 further comprising an external driving source coupled directly to the drive shaft to operate the compressor.
- 14. A compressor having a crank chamber, a cylinder bore, a suction chamber and a discharge chamber, the compressor comprising a drive shaft extending into the crank chamber, a cam plate mounted on the drive shaft within the crank chamber and a piston coupled to the cam plate and located in the cylinder bore, wherein said cam plate converts rotation of the drive shaft to reciprocating movement of the piston in the cylinder bore, said piston compressing gas supplied to the cylinder bore from a separate external circuit by way of the suction chamber and discharging the compressed gas to the external circuit by way of the discharge chamber, said;said cam plate being tiltable between a maximum inclined angle position and a minimum inclined angle position with respect to a plane perpendicular to an axis of the drive shaft according to a difference between the pressure in the crank chamber and the pressure in the cylinder bore, wherein said piston moves by a stroke based on the inclination of the cam plate to control the displacement of the compressor; the compressor further comprising: a supply passage for connecting the discharge chamber with the crank chamber to deliver the gas from the discharge chamber to the crank chamber; a release passage for connecting the crank chamber with the suction chamber to deliver the gas from the crank chamber to the suction chamber; control means disposed midway along the supply passage for adjusting the amount of the gas introduced into the crank chamber from the discharge chamber through the supply passage to control the pressure in the crank chamber; a discharge passage for connecting the discharge chamber with the external circuit; a valve located in the discharge passage, said valve having an upstream side and a downstream side, said valve selectively connecting and disconnecting the discharge chamber with the external circuit based on a difference between the pressure acting on the upstream side of the valve and the pressure acting on the downstream side of the valve, said valve disconnecting the discharge chamber from the external circuit when the cam plate is at the minimum inclined angle position to minimize the displacement of the compressor; and a discharge muffler for preventing pulsation caused by the flow of the gas discharged from the cylinder bore to the discharge chamber, wherein said discharge passage is defined in the discharge muffler.
- 15. The compressor according to claim 14, wherein said valve includes a check valve that allows only the compressed gas to be discharged from the discharge chamber to the external circuit.
- 16. The compressor according to claim 15, wherein said valve includes:a valve body movable between a first position and a second position, said valve body connecting the discharge chamber with the external circuit at the first position, and said valve body disconnecting the discharge chamber from the external circuit at the second position; and means for urging the valve body toward the second position.
- 17. The compressor according to claim 16, wherein said valve includes a member for accommodating said valve body and said urging means, and said valve is an integrated component including the accommodating member, the valve body and the urging means.
- 18. The compressor according to claim 17 further comprising:a pair of housings respectively having end faces secured to one another; wherein said valve has a flange clamped by the end faces of the housing to secure the valve to the housings.
- 19. The compressor according to claim 17, wherein said accommodating member includes a casing having a shape of a hollow cylinder with an open end and a spacer fitted in the open end of the casing, said casing having a through hole for providing communication from the interior of the casing to the external circuit, and said spacer having a valve hole for providing communication from the interior of the casing to the discharge chamber and an inner end surface inserted in the casing so as to face the valve body, and wherein said valve body abuts against the inner end surface for closing the valve hole to block the communication of the valve hole with the through hole via the interior of the casing when the valve body is at the second position.
- 20. The compressor according to claim 16 further comprising a shutter member movable between a first position and a second position in response to the inclination of the cam plate, said shutter member connecting the external circuit with the suction chamber at the first position and disconnecting the external circuit from the suction chamber at the second position, wherein said cam plate moves the shutter member to the second position when the cam plate is at the minimum inclined angle position to minimize the displacement of the compressor.
- 21. The compressor according to claim 20 further comprising:a positioning surface facing the shutter member; said shutter member having an end surface abutting against the positioning surface when positioned in the second position; and said cam plate being held at the minimum inclined angle position when the shutter member is positioned in the second position.
- 22. The compressor according to claim 20 further comprising a gas circulating passage including said release passage and said supply passage, said circulating passage being defined upon disconnection of the external circuit from the suction chamber.
- 23. The compressor according to claim 20 further comprising an external driving source coupled directly to the drive shaft to operate the compressor.
- 24. The compressor according to claim 14, wherein said valve connects the discharge chamber with the external circuit when the inclination of the cam plate is greater than the minimum inclined angle position.
- 25. A compressor for compressing gas supplied from an external circuit and discharging the compressed gas to the external circuit, the compressor comprising:a pair of housings having respective end faces secured to one another; a crank chamber, a cylinder bore and a discharge chamber defined by the housings; a drive shaft supported by the housings; a cam plate located in the crank chamber and mounted on the drive shaft, wherein the cam plate is inclined with respect to a plane perpendicular to an axis of the drive shaft according to the pressure in the crank chamber; a piston coupled to the cam plate and located in the cylinder bore, wherein the cam plate converts rotation of the drive shaft to reciprocating movement of the piston within the cylinder bore, whereby the piston compresses gas supplied from the external circuit and discharges the compressed gas to the discharge chamber, and the piston moves by a stroke based on the inclination of the cam plate to control the displacement of the compressor; and a valve between the discharge chamber and the external circuit, the valve having a flange clamped by the end faces of the housings to secure the valve to the housings, the valve having an upstream side and a downstream side, wherein the valve selectively connects and disconnects the discharge chamber with the external circuit based on a difference between the pressure acting on the upstream side of the valve and the pressure acting on the downstream side of the valve.
Priority Claims (3)
Number |
Date |
Country |
Kind |
7-279338 |
Oct 1995 |
JP |
|
8-054866 |
Mar 1996 |
JP |
|
8-312308 |
Nov 1996 |
JP |
|
Parent Case Info
This application is a continuation-in-part of application Ser. No. 08/735,671, filed Oct. 23, 1996, U.S. Pat. No. 5,871,337.
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5529461 |
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Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/735671 |
Oct 1996 |
US |
Child |
08/810409 |
|
US |