Claims
- 1. A variable displacement swash-plate type compressor comprising:
- a cylinder block having a plurality of cylinder bores therein;
- a shaft rotatably supported in said cylinder block;
- a swash plate tiltably connected to said shaft and adapted to be rotated together with said shaft;
- pistons slidably received in said cylinder bores and adapted to be reciprocally moved in said cylinder bores in accordance with an oscillatory motion of said swash plate;
- working chambers formed between both ends of each of said pistons and adjacent surfaces of an associated cylinder bore;
- a support portion disposed coaxially with said shaft and supporting a central portion of said swash plate rotatably and tiltably; and
- a spool for driving said support portion axially of said shaft, to move said central portion of said swash plate axially of said shaft to change the angle of tilt of said swash plate, whereby the strokes of reciprocatory movements of said pistons in said cylinder bores are changed, the arrangement being such that each piston can have strokes to a first position in one of the working chambers associated with the piston and to a second position in the other working chamber, the piston stroke to said first position being different from the piston stroke to said second position.
- 2. A variable displacement swash-plate type compressor according to claim 1, wherein said support portion has a spherical support surface which rotatably and slidably engages with a spherical surface portion formed on said central portion of said swash plate.
- 3. A variable displacement swash-plate type compressor according to claim 1, wherein said shaft extends through said swash plate and said spool is slidably mounted on said shaft.
- 4. A variable displacement swash-plate type compressor according to claim 1, wherein said shaft is disposed only on one side of said swash plate.
- 5. A variable displacement swash-plate type compressor according to claim 1, wherein said shaft is provided with a flat web portion while said swash plate has a slit in which said flat web portion is received, whereby said swash plate is tiltably connected to said shaft through the engagement between said flat web portion and said slit.
- 6. A variable displacement swash-plate type compressor according to claim 1, wherein when the strokes of reciprocatory movements of said pistons in said cylinder bores are changed by a change in the angle of tilt of said swash plate, the top dead center of each piston is so positioned in the working chamber on one side of the piston that no dead volume is formed in said working chamber regardless of the change in the angle of tilt of said swash plate.
- 7. A variable displacement swash-plate type compressor according to claim 5, wherein said flat web portion has a slit while portions of said swash plate defining said slit have pin-receiving holes, whereby said swash plate is tiltably connected to said shaft by means of a pin extending through said slot and receive in said pin-receiving holes.
- 8. A variable displacement swash-plate type compressor according to claim 5, wherein said flat web portion has a pin-receiving hole while portions of said swash plate defining said slit have slots, whereby said swash plate is tiltably connected to said shaft by means of a pin extending through said slots and received in said pin-receiving hole.
- 9. A variable displacement swash-plate type compressor according to claim 8, wherein said pin is rotationably held in said pin-receiving hole through the intermediary of a bearing.
- 10. A variable displacement swash-plate type compressor comprising:
- a cylinder block having at least one cylinder bore therein;
- a shaft rotatably supported in said cylinder block;
- a swash plate tiltably connected to said shaft and adapted to be rotated together with said shaft;
- pistons slidably received in said cylinder bores and adapted to reciprocatorily stroke in said cylinder bores in accordance with an oscillatory motion of said swash plate;
- working chambers formed between both ends of each of said pistons and adjacent surfaces of an associated cylinder bore;
- a support portion disposed coaxially with said shaft and supporting a central portion of said swash plate rotatably and tiltably;
- a spool for driving said support portion axially of said shaft;
- a control pressure chamber provided on a side of said spool opposite to said support portion such that said spool is moved axially of said shaft in accordance with an internal pressure of said control pressure chamber; and
- a control valve for controlling a signal pressure to be introduced into said control pressure chamber,
- said spool being driven in accordance with the signal pressure in said control pressure chamber to move a central portion of said swash plate axially of said shaft and vary the angle of tilt of said swash plate.
- 11. A variable displacement swash-plate type compressor according to claim 10, wherein a plurality of such cylinder bores are formed in said cylinder block and extend in parallel with one another
- 12. A variable displacement swash-plate type compressor according to claim 10, wherein said control valve includes a control pressure passage communicating with said control pressure chamber, a high pressure introduction passage for introducing pressure available at the discharge side of said compressor, a low pressure introduction passage for introducing pressure available at the suction side of said compressor and a change-over valve for selectively bringing either one of said high and low pressure introduction passages into communication with said control pressure passage.
- 13. A variable displacement swash-plate type compressor according to claim 10, wherein said control pressure chamber is communicated with the discharge side of said compressor through a flow resistance means, and wherein said control valve includes a control pressure passage communicating with said control pressure chamber, a low pressure introduction passage for introducing pressure available at the suction side of said compressor, and a valve member for selectively connecting and disconnecting said low pressure introduction passage to and from said control pressure chamber.
- 14. A variable displacement swash-plate type compressor comprising:
- a cylinder block having cylinder bores therein;
- a shaft rotatably supported in said cylinder block;
- a swash plate tiltably connected to said shaft and adapted to be rotated together with said shaft;
- pistons slidably received in said cylinder bores and adapted to reciprocatorily stroke in said cylinder bores in accordance with an oscillatory motion of said swash plate;
- working chambers formed between both ends of each of said pistons and adjacent surfaces of said cylinder bores;
- a support portion disposed coaxially with said shaft and adapted to support a central portion of said swash plate rotatably and oscillatably;
- a spool for driving said support portion axially of said shaft;
- control means for driving said spool axially of said shaft between a maximum displacement position in which the angle of tilt of said spool is maximized and a minimum displacement position in which the angle of tilt of said swash plate is minimized; and
- auxiliary loading means operative when said control means has driven said spool more than a predetermined distance from said minimum displacement position to apply to said spool a load which acts to suppress the movement of said spool towards said maximum displacement position more than said predetermined distance from said minimum displacement position;
- the movement of said spool displacing said central portion of said swash plate axially of said shaft and changing the angle of tilt of said swash plate.
- 15. A variable displacement swash-plate type compressor according to claim 14, wherein said auxiliary loading means comprise a spring means.
- 16. A variable displacement swash-plate type compressor according to claim 15, wherein said spring means is disposed between said spool and one end of said shaft in such a manner that the compression of said spring means is commenced when said spool has traveled in excess of said predetermined distance.
- 17. A variable displacement swash-plate type compressor according to claim 15, wherein said spring means is disposed between said spool and said cylinder block in such a manner that the loading by said spring means is commenced when said spool has traveled in excess of said predetermined distance.
- 18. A variable displacement swash-plate type compressor according to claim 15, further including an end plate attached to an end of said cylinder block and covering said working chambers, and wherein said spring means is disposed between said spool and said end plate in such a manner that said spring means becomes effective to produce a resilient load when said spool has traveled in excess of said predetermined distance.
- 19. A variable displacement swash-plate type compressor according to claim 15, wherein said spring means is disposed between said support portion and a retainer portion provided on said shaft so as to oppose said support portion, said spring means becoming effective to produce a resilient load when said support portion has traveled in excess of said predetermined distance.
- 20. A variable displacement swash-plate type compressor comprising:
- a cylinder block having cylinder bores therein;
- a shaft rotatably supported in said cylinder block;
- a swash plate tiltably connected to said shaft and adapted to be rotated together with said shaft;
- pistons slidably received in said cylinder bores and adapted to reciprocally stroke in said cylinder bores in accordance with an oscillatory motion of said swash plate;
- working chambers formed between both ends of each of said pistons and adjacent surfaces of said cylinder bores;
- a support portion disposed coaxially with said shaft and adapted to support a central portion of said swash plate rotatably and oscillatably;
- a spool for driving said support portion axially of said shaft;
- control means for driving said spool axially of said shaft to move said central portion of said swash plate axially of said shaft while changing the angle of tilt of said swash plate, thereby causing the strokes of reciprocatory movements of said pistons in said cylinder bores to vary in such a manner that the position of the stroke end of each piston in a first working chamber on one end thereof id different from the position of the stroke end of said piston in a second, variable volume chamber one the other end of said piston; and
- auxiliary biasing means for applying a biasing force acting in a direction from said first working chamber towards said second, variable volume chamber so as to produce a torque which acts in the direction to reduce the angle of tilt of said swash plate.
- 21. A variable displacement swash-plate type compressor according to claim 20, further including:
- a flat web portion formed on one of said shaft and said swash plate;
- a slit provided in the other of said swash plate and said shaft for receiving said web portion;
- a slot formed in said web portion;
- pin-receiving holes formed in portions which define said slit;
- a pin extending through said slot and received in said pin-receiving holes so as to tiltably connect said swash plate to said shaft;
- said slot being arcuate such that, when the angle of tilt of said swash plate is maximum, an apparent point of hinge between said swash plate and each of the pistons is located substantially at a center of the piston and such that, when the angle of tilt of said swash plate is minimum, said apparent hinge point is offset from said center of each piston towards said support portion.
- 22. A variable displacement swash-plate type compressor according to claim 20, wherein said control means is operative to drive said spool in dependence on a difference between a high compressor discharge pressure and a low compressor suction pressure, and wherein said auxiliary biasing means is operative to subject said control means to one of a low pressure lower than the low compressor suction pressure and a high pressure high than said high compressor discharge pressure.
- 23. A variable displacement swash-plate type compressor according to claim 20, wherein said auxiliary biasing means comprises a spring which applies a load to said spool in a direction to reduce the amount of movement of said spool towards said support portion.
- 24. A variable displacement swash-plate type compressor according to claim 23, wherein said spring is disposed to contact at its ends with said spool and with said shaft.
- 25. A variable displacement swash-plate type compressor according to claim 20, wherein said first working chamber has a dead space formed therein when the angle of tilt of said swash plate is reduced and wherein said auxiliary biasing means comprises a boosting passage means which introduces the discharge pressure of said compressor into said first working chamber.
- 26. A variable displacement swash-plate type compressor according to claim 25, wherein said auxiliary biasing means comprises a communication means which provides communication between said first working chamber and a discharge chamber, said discharge chamber communicating with said second, variable volume chamber through a discharge port, and a discharge valve.
- 27. A variable displacement swash-plate type compressor according to claim 26, further including a side plate provided on one end surface of said cylinder block, said side plate having said first working chamber and said discharge port through which said second, variable volume chamber communicates with said discharge chamber, said communicating means being provided in said side plate.
- 28. A variable displacement swash-plate type compressor according to claim 26, wherein said communicating means comprises a relief port formed in said discharge valve.
- 29. A variable displacement swash-plate type compressor according to claim 20, wherein said auxiliary biasing means comprises a dead volume generating means for changing the position of stroke end of said piston in said second, variable volume chamber and establishing a dead volume on the end of said piston in said second, variable volume chamber.
- 30. A variable displacement swash-plate type compressor according to claim 29, further including:
- a flat web portion formed on one of said shaft and said swash plate;
- a slit provided in the other of said swash plate and said shaft for receiving said web portion;
- a slot formed in said flat web portion;
- pin-receiving holes formed in portions which define said slit; and
- a pin extending through said slot and received in said pin-receiving holes so as to tiltably connect said swash plate to said shaft;
- said slot being so designed that, when the angle of tilt of said swash plate is decreased as a result of movement of said spool, a dead volume is formed in said second variable volume chamber.
- 31. A variable displacement swash-plate type compressor according to claim 20, wherein, in accordance with the angle of tilt of said swash plate, a dead space is formed in said first working chamber adjacent to one end of an associated piston, while the piston is movable in said second working chamber to positions predetermined for the suction, compression and discharge of a fluid regardless of the angle of tilt of said swash plate, and wherein said auxiliary biasing means comprises a restriction formed in a suction passage means through which the fluid is sucked into the second working chamber.
- 32. A variable displacement swash-plate type compressor according to claim 31, wherein said restriction is formed in said spool and variable by the movement of said spool to vary the rate of suction through said suction passage.
- 33. A variable displacement swash-plate type compressor according to claim 31, wherein said restriction is arranged such that the rate of restriction of the flow of the fluid through said suction passage is low when the angle of tilt of said swash-plate is great and such that the rate of restriction is high when the angle of tilt is small.
- 34. A variable displacement swash-plate type compressor according to claim 10, wherein said control valve is operative to selectively introduce a suction pressure of the compressor and a discharge pressure thereof into said control pressure chamber to change over the signal pressure in said control pressure chamber between said suction pressure and said discharge pressure;
- the arrangement being such that, when the discharge pressure is introduced into said control pressure chamber, said spool is driven by the signal pressure in said control pressure chamber to move said support portion in a direction to increase the angle of tilt of said swash plate, such that, when the suction pressure is introduced into said control pressure chamber, said support portion and said spool are moved in a direction to decrease the angle of tilt of said swash plate by the compression reactional force acting on said pistons, and such that, in the working chamber adjacent to one end of each piston, the piston can always stroke to positions predetermined for suction, compression and discharge of a fluid regardless of the change in the angle of tilt of said swash plate and, in the working chamber adjacent to the other end of the piston, a dead space is formed in accordance with the angle of tilt of said swash plate.
Priority Claims (4)
Number |
Date |
Country |
Kind |
61-206229 |
Sep 1986 |
JPX |
|
61-302296 |
Dec 1986 |
JPX |
|
62-154139 |
Jun 1987 |
JPX |
|
62-218548 |
Sep 1987 |
JPX |
|
Parent Case Info
This is a continuation-in-part of application Ser. No. 091,982, filed Sept. 1, 1987, which was abandoned upon the filing hereof.
US Referenced Citations (8)
Foreign Referenced Citations (5)
Number |
Date |
Country |
968435 |
Jan 1958 |
DEX |
58-162780 |
Sep 1983 |
JPX |
58-162781 |
Sep 1983 |
JPX |
58-162782 |
Sep 1983 |
JPX |
58-162783 |
Sep 1983 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
91982 |
Sep 1987 |
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