Claims
- 1. A variable displacement compressor, comprising:
- a) a housing having a plurality of cylinder bores disposed therein;
- b) a plurality of pistons reciprocatively disposed in said cylinder bores;
- c) a drive shaft rotatively supported in said housing along an axis thereof;
- d) a lug plate having a support arm disposed along an arc centered on said axis of said drive shaft, said lug plate being in rotative communication with said drive shaft;
- e) a swash plate member slidably and tiltably mounted on said drive shaft and operatively connected with said pistons, said swash plate member including a swash plate and a rotary journal having at least one bracket; and
- f) a hinge mechanism for rotatively coupling said lug plate with said swash plate member, said hinge mechanism including a pin having first and second end portions, said first end portion being connected to the rotary journal bracket and said second end portion being connected to said support arm of the lug plate.
- 2. The compressor according to claim 1, wherein said hinge mechanism is provided by first and second pins, brackets and support arms respectively, all disposed symmetrically with respect to said drive shaft.
- 3. The compressor according to claim 1, wherein said first end portion of said pin has a bar shape, and said second end portion thereof has a spherical shape for rotational engagement with said support arm.
- 4. The compressor according to claim 3 wherein said support arm includes a bush disposed therein for sliding spherical engagement with said spherical shaped second end portion of said pin.
- 5. The compressor according to claim 4, wherein the point of support of the compression reaction force is disposed between said second end portion of said pin and said bush when each piston is on the compression stroke and the compression reaction force is transferred to the swash plate and the hinge mechanism.
- 6. The compressor according to claim 5, wherein the points of application of the compression reaction forces on said swash plate and said hinge mechanism when each said piston is at the top dead center position of the compression stroke are designed to lay on a hypothetical plane that includes the central longitudinal axis of said piston.
- 7. The compressor according to claim 3 wherein said first end portion of said pin is slidably inserted into the rotary journal bracket.
- 8. The compressor according to claim 4, wherein said bush is generally cylindrically shaped, said bush includes a spherical recess disposed therein, and a groove disposed in the circumferential wall thereof for communicating with a complementary groove disposed in said support arm.
- 9. The compressor according to claim 4, wherein said bush is generally cylindrically shaped, said bush includes a spherical recess disposed therein, and said bush is divided into generally two equal portions at the center with respect to its height.
- 10. The compressor according to claim 8, wherein said bush is secured to said support arm by means of a clip disposed within said grooves.
- 11. A variable displacement compressor, comprising:
- a) a housing including a closed crankcase and having a plurality of cylinder bores disposed therein;
- b) a plurality of pistons reciprocatively disposed in said cylinder bores;
- c) a drive shaft rotatively supported in said housing along an axis thereof;
- d) a lug plate in rotative communication with said drive shaft and having at least one support arm disposed thereon;
- e) a swash plate member operatively connected with said pistons; said swash plate member including a spherical bushing mounted for sliding engagement on said drive shaft, a rotary journal, with at least one bracket disposed thereon, mounted for tilting engagement on said spherical bushing, and a swash plate disposed in rigid mechanical communication with said rotary journal;
- f) an inclination means for changing the inclination angle of the swash plate with respect to said drive shaft axis, said inclination means including biasing means disposed between the spherical bushing and the lug plate, and control means for changing the pressure within said crankcase, said inclination means responding to change in crankcase pressure for causing said swash plate member to change its angle of inclination with respect to said drive shaft axis by rotating about said spherical bushing and causing said spherical bushing to adjust its axial position against said biasing means such that the top dead center clearance between said cylinder bores and said pistons remains constant; and
- g) a support means for supporting said swash plate member in a manner that does not interfere with said inclination means to provide support for said swash plate member as it moves through a selected range of inclination angles without creating any rotational moment forces due to the reaction forces of the pistons, said support means including a hinge mechanism for rotatively coupling said rotary journal with said lug plate, said hinge mechanism including a pin having first and second end portions, said first end portion being connected to the rotary journal bracket and said second end portion being connected to said support arm of the lug plate.
- 12. The variable displacement compressor according to claim 11, wherein said first end portion of said pin has a bar shape, and said second end portion thereof has a spherical shape for rotational engagement with said support arm.
- 13. The variable displacement compressor according to claim 12, wherein said support arm includes a bush disposed therein for sliding spherical engagement with said spherical shaped second end portion of said pin.
- 14. The compressor according to claim 13, wherein said bush is generally cylindrically shaped, said bush includes a spherical recess disposed therein, and a groove is disposed in the circumferential wall thereof for communicating with a complementary groove disposed in said support arm.
- 15. The compressor according to claim 14, wherein said bush is secured to said support arm by means of a clip disposed within said grooves.
- 16. The compressor according to claim 12, wherein the point of support of the compression reaction force is disposed between said second end portion of said pin and said bush when each piston is on the compression stroke and the compression reaction force is transferred to the swash plate and the hinge mechanism.
- 17. The compressor according to claim 16, wherein the point of application of the compression reaction force on said swash plate and said hinge mechanism when each said piston is at the top dead center position of the compression stroke are designed to lay on a hypothetical plane that includes the central longitudinal axis of said piston.
- 18. The compressor according to claim 12 wherein said first end portion of said pin is slidably inserted into the rotary journal bracket.
- 19. The compressor according to claim 13, wherein said bush is generally cylindrically shaped, said bush includes a spherical recess disposed therein, and said bush is divided into generally two equal portions at the center with respect to its height.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-91106 |
Apr 1992 |
JPX |
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CROSS REFERENCE TO RELATED APPLICATIONS
This is a continuation-in-part application of the U.S. application Ser. No. 07/939,116 filed on Sep. 2, 1992, now issued, entitled VARIABLE DISPLACEMENT COMPRESSOR, which is incorporated by reference.
US Referenced Citations (15)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
939116 |
Sep 1992 |
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