Claims
- 1. A compressor having a drive shaft rotatably supported in a cylinder block, a swash plate coupled to said drive shaft for rotation in accordance with rotation of the drive shaft, and a plurality of pistons reciprocating in associated cylinder bores in said cylinder block to compress gas in accordance with rotation of said swash plate, said compressor comprising:
- a first thrust bearing and a second thrust bearing provided in said cylinder block, with said first thrust bearing located on one side of said swash plate and said second thrust bearing located on the opposite side of said swash plate for receiving axial loads applied to said swash plate and said drive shaft upon reciprocation of said pistons;
- said first thrust bearing having a radially inner portion clamped at opposite sides thereof between the swash plate and the cylinder block and a radially outer portion spaced by a clearance gap from at least the swash plate to allow the swash plate to tilt with respect to the first thrust bearing within the clearance gap in response to a force moment applied to the swash plate when the compressor is operating.
- 2. A compressor according to claim 1, wherein said first thrust bearing includes:
- an inner race in engagement with the swash plate;
- an outer race in engagement with the cylinder block;
- an annular orbital path defined between said inner race and said outer race, said orbital path having an outer diameter and an inner diameter; and
- a plurality of rollers disposed for rolling along said orbital path.
- 3. A compressor according to claim 2, wherein said swash plate and cylinder block have surfaces for receiving axial loads, each surface engaging one of the inner race and the outer race at the inner portion of the first thrust bearing.
- 4. A comprssor according to claim 3, wherein said surface of the swash plate has an annular shape around the drive shaft, said surface having an outer diameter substantially equal to the outer diameter of the orbital path.
- 5. A compressor according to claim 3, wherein said surface of the cylinder block had an annular shape around the drive shaft, said surface haivng an outer diameter substantially equal to the outer diameter of the orbital path.
- 6. A compressor according to claim 4, wherein said surface of the swash plate has an inner diameter substantially equal to the inner diameter of the orbital path.
- 7. A comprssor according to claim 3, wherein said surface of the swash plate includes a convex surface making a line contact with the first thrust bearing.
- 8. A compressor according to claim 1, wherein said second thrust bearing functions to buffer the axial loads.
- 9. A compressor according to claim 8, further comprising:
- annular seats formed on the swash plate and the cylinder block and having different diameters from each other, said seats engaging opposite sides of the second thrust bearing and allowing the second thrust bearing to be deformed to buffer the axial loads.
- 10. A compressor according to claim 1 further comprising:
- means for urging the second thrust bearing toward the first thrust bearing.
- 11. A compressor having a drive shaft rotatably supported in a cylinder block, a swash plate coupled to said drive shaft for rotation in accordance with rotation of the drive shaft, and a plurality of pistons reciprocating in associated cylinder bores in said cylinder block to compress gas in accordance with rotation of said swash plate, said compressor comprising:
- a first thrust bearing and a second thrust bearing provided in said cylinder block, with said first thrust baring located on one said of said swash plate and said second thrust bearing located on the opposite side of said swash plate for receiving axial loads applied to said swash plate and said drive shaft upon reciprocation of said pistons;
- said first thrust bearing having:
- a radially inner portion clamped at opposite sides thereof between the swash plate and the cylinder block;
- a radially outer portion spaced by a clearance gap from at least the swash plate to allow the swash plate to tilt with respect to the first thrust bearing within the clearance gap in response to a force moment applied to the swash plate when the compressor is operating;
- an inner engaging the swash plate;
- an outer race engaging the cylinder block;
- an annular orbital path defined between the inner race and outer race, said orbital path having an outer diameter and an inner diameter; and
- a plurality of rollers capable of rolling along the orbital path; and
- wherein said swash plate and cylinder block have surfaces for receiving the axial loads, each surface engaging the respective adjacent inner and outer race at the first portion of the first thrust bearing.
- 12. A compressor according to claim 11, wherein said surface of the swash plate has an annular shape around the drive shaft, said surface having an outer diameter substantially equal to the outer diameter of the orbital path.
- 13. A compressor according to claim 11, wherein said surface of the cylinder block has an annular shape around the drive shaft, said surface having an outer diameter substantially equal to the outer diameter of the orbital path.
- 14. A compressor according to claim 12, wherein said surface of the swash plate has an inner diameter substantially equal to the inner diameter of the orbital path.
- 15. A compressor according to claim 11, wherein said swash plate has an escape section forming a clearance with the inner race of the first thrust bearing at the second portion of the first thrust bearing.
- 16. A compressor according to claim 15, wherein said swash plate has a boss having a front surface, sand said escape portion is formed over substantially one half of said front surface of the boss.
- 17. A compressor according to claim 16, wherein said escape section inclines from the longitudinal central axis of the swash plate toward the periphery of the swash plate.
- 18. A compressor according to claim 11, wherein said second thrust bearing functions to buffer the axial loads.
- 19. A compressor according to claim 18, further comprising:
- annular seats formed on the swash plate and the cylinder block and having different diameters from each other, said seats engaging opposite sides of the second thrust bearing and allowing the second thrust bearing to be deformed to buffer the axial loads.
- 20. A compressor according to claim 11 further comprising:
- means for urging the second thrust bearing toward the first thrust bearing.
- 21. A compressor according to claim 11, wherein said axial load receiving surface of the swash plate has a truncated cone shape with a radially central section engaging said inner race and a peripheral section spaced by a gap from said inner race of the first thrust bearing.
- 22. A compressor according to claim 11, wherein said surface of the swash plate inclines by a predetermined angle with respect to a plane perpendicular to the drive shaft.
- 23. A compressor according to claim 21, wherein said second thrust bearing functions to buffer the axial loads.
- 24. A compressor according to claim 23, further comprising:
- annular seats formed on the swash plate and the cylinder block and having different diameters from each other, said seats engaging opposite sides of the second thrust bearing and allowing the second thrust bearing to be deformed to buffer the axial loads.
- 25. A compressor according to claim 21 further comprising:
- means for urging the second thrust bearing toward the first thrust bearing.
- 26. A compressor having a drive shaft rotatably supported in a cylinder block, a swash plate coupled to said drive shaft for rotation in accordance with rotation of the drive shaft, and a plurality of pistons reciprocating in associated cylinder bores in said cylinder block to compress gas in accordance with rotation of said swash plate, said compressor comprising:
- a first thrust bearing and a second thrust bearing provided in said cylinder block, with said first thrust bearing located on one side of said swash plate and said second thrust bearing located on the opposite side of said swash plate for receiving axial loads applied to said swash plate and drive shaft upon reciprocation of said pistons;
- said first thrust bearing having a radially inner portion clamped at opposite sides thereof continuously around its entire circumference between the swash plate and the cylinder block, and having a radially outer portion spaced by a clearance gap from at least one of the swash plate and the cylinder block to allow the swash plate to tilt with respect to the first thrust bearing within the clearance gap in response to a force moment applied to the swash plate when the compressor is operating.
Priority Claims (3)
Number |
Date |
Country |
Kind |
6-068768 |
Apr 1994 |
JPX |
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6-086542 |
Apr 1994 |
JPX |
|
6-093482 |
May 1994 |
JPX |
|
Parent Case Info
This application is a continuation in part application of U.S. patent application Ser. No. 08/342,713 filed on Nov. 21, 1994, entitled SWASH PLATE TYPE COMPRESSOR now U.S. Pat. No. 5,528,976.
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Number |
Name |
Date |
Kind |
4790727 |
Steele |
Dec 1988 |
|
4950132 |
Brian, Jr. et al. |
Aug 1990 |
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Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
342713 |
Nov 1994 |
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