Claims
- 1. A compressor having an internal refrigerant gas passage selectively connected to and disconnected from an external refrigerant circuit separately provided from the compressor, said compressor having a plurality of reciprocable pistons for compressing gas supplied from the external refrigerant circuit to the internal refrigerant gas passage, said compressor comprising:
- a housing having a discharge chamber and a suction chamber;
- a crank chamber defined in the housing;
- a plurality of cylinder bores formed in the housing, each cylinder bore communicating with the discharge chamber and the suction chamber and accommodating each piston respectively;
- a drive shaft rotatably supported by the housing;
- a swash plate supported on the drive shaft for integral rotation with the drive shaft and inclining motion with respect to the drive shaft, said swash plate being movable between a maximum inclined angle and a minimum inclined angle;
- disconnecting means for disconnecting the internal refrigerant gas passage from the external refrigerant circuit when the swash plate is at the minimum inclined angle;
- said internal refrigerant gas passage including a first passage for connecting the crank chamber and the suction chamber to deliver the refrigerant gas from the crank chamber to the suction chamber; and
- a control means for detecting a pressure in the first passage to control the inclined angle of the swash plate.
- 2. A compressor according to claim 1, wherein said control means includes a control valve for selectively opening and closing the first passage.
- 3. A compressor according to claim 2, wherein said disconnecting means is disposed downstream of a position where said control valve detects the pressure in the internal refrigerant gas passage.
- 4. A compressor according to claim 1, wherein said internal refrigerant gas passage further includes:
- a second passage for connecting the discharge chamber and the crank chamber to deliver the refrigerant gas from the discharge chamber to the crank chamber; and
- a circulating path including the first and the second passages, said circulating path being formed upon disconnection of the external refrigerant circuit from the internal refrigerant gas passage.
- 5. A compressor according to claim 4 further comprising:
- a suction passage for connecting the external refrigerant circuit and the internal refrigerant gas passage; and
- an exhaust port for connecting the discharge chamber to the external refrigerant circuit to deliver the refrigerant gas from the discharge chamber to the external refrigerant circuit.
- 6. A compressor according to claim 4 further comprising a restrictor passage for delivering the refrigerant gas from the discharge chamber to the crank chamber.
- 7. A compressor according to claim 4 further comprising a valve for selectively opening and closing the second passage in response to operational conditions of the compressor.
- 8. A compressor according to claim 7, wherein said valve includes an electromagnetic valve.
- 9. A compressor according to claim 8 further comprising a computer for controlling the electromagnetic valve in response to signals indicative of the operational conditions of the compressor.
- 10. A compressor according to claim 1 further comprising:
- a suction passage for connecting the external refrigerant circuit and the internal refrigerant gas passage;
- a connection passage for connecting the suction passage and the suction chamber; and
- said disconnecting means selectively opening and closing the connection passage.
- 11. A chamber according to claim 10, wherein said disconnecting means includes:
- a shutter member movable along the internal refrigerant gas passage between a first position where the shutter member opens the connection passage and a second position where the shutter member closes the connection passage;
- a spring for urging the shutter member toward the first position;
- a first regulating member for regulating the shutter member at the first position in cooperation with the spring when the shutter member moves toward the first position; and
- a second regulating member for regulating the shutter member at the second position when the shutter member moves toward the second position.
- 12. A compressor according to claim 11, wherein said housing has a shutter chamber for accommodating the shutter member, said shutter chamber communicating with the suction passage and the connection passage.
- 13. A compressor to claim 12 further comprising:
- said shutter member having a substantially cylindrical shape and a closed rear end;
- said drive shaft having a front end and a rear end; and
- a front bearing and a rear bearing for respectively supporting the drive shaft at the front end and the rear end, said rear bearing being disposed within the shutter member.
- 14. A compressor according to claim 13 further comprising a pipe movable along the drive shaft, and wherein said pipe transmits the inclining motion of the swash plate to the shutter member via the rear bearing.
- 15. A compressor having an internal refrigerant gas passage selectively connected to and disconnected with an external refrigerant circuit separately provided from the compressor, said compressor having a plurality of reciprocable pistons for compressing gas supplied from the external refrigerant circuit to the internal refrigerant gas passage, said compressor comprising:
- a housing having a discharge chamber and a suction chamber;
- a crank chamber defined in the housing;
- a drive shaft rotatably supported by the housing;
- a plurality of cylinder bores defined in the housing, each cylinder bore communicating with the discharge chamber and the suction chamber and accommodating each piston;
- a swash plate supported on the drive shaft for integral rotation with inclining motion with respect to the drive shaft, said swash plate being movable between a maximum inclined angle and a minimum inclined angle, respectively;
- a suction passage for connecting the external refrigerant circuit and the internal refrigerant gas passage;
- a connection passage for connecting the suction passage and the suction chamber;
- a shutter member being capable of closing the connection passage for disconnecting the external refrigerant circuit from the internal refrigerant gas path when the swash plate is at the minimum inclined angle;
- a first passage for connecting the crank chamber and the suction chamber to deliver the refrigerant gas from the crank chamber to the suction chamber;
- a second passage for connecting the discharge chamber and the crank chamber to deliver the refrigerant gas from the discharge chamber to the crank chamber;
- a circulating passage including the first and the second passages, said circulating passage being formed upon closing the connection passage by the shutter member; and
- a control means for detecting a pressure in the first passage to control the inclined angle of the swash plate.
- 16. A compressor according to claim 15 further comprising:
- said shutter member being movable along the internal refrigerant gas passage between a first position where the shutter member opens the connection passage and a second position where the shutter member closes the connection passage;
- a spring for urging the shutter member toward the first position;
- a first regulating member for regulating the shutter member at the first position in cooperation with the spring when the shutter member moves toward the first position; and
- a second regulating member for regulating the shutter member at the second position when the shutter member moves toward the second position.
- 17. A compressor according to claim 16, wherein said housing has a shutter chamber for accommodating the shutter member, said shutter chamber communicating with the suction passage and the connection passage.
- 18. A compressor according to claim 17 further comprising:
- said shutter member having a substantially cylindrical shape and a closed rear end; and
- said drive shaft having a front end and a rear end;
- a front bearing and a rear bearing for respectively supporting the drive shaft at the front end and the rear end, said rear bearing being disposed within the shutter member.
- 19. A compressor according to claim 18 further comprising a pipe movable along the drive shaft, and wherein said pipe transmits the inclining motion of the swash plate to the shutter member via the rear bearing.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-332145 |
Dec 1993 |
JPX |
|
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of U.S. application Ser. No. 08/255,043 filed on Jun. 7, 1994, now allowed, entitled SWASH PLATE TYPE COMPRESSOR.
US Referenced Citations (11)
Foreign Referenced Citations (8)
Number |
Date |
Country |
0300831 |
Jan 1989 |
EPX |
0297514 |
Jan 1989 |
EPX |
0536989 |
Apr 1993 |
EPX |
362000674A |
Jan 1987 |
JPX |
364056972A |
Mar 1989 |
JPX |
402115576 |
Apr 1990 |
JPX |
337378 |
Feb 1991 |
JPX |
403160162 |
Jul 1991 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
255043 |
Jun 1994 |
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