Claims
- 1. A scroll compressor with a thrust reduction mechanism for compressing gas, said scroll compressor comprising:
- (a) a sealed housing having a discharge port and a suction port;
- (b) scroll compressing means located between the discharge and suction ports, said scroll compressing means including a stationary scroll member and an orbiting scroll member defining a compressing chamber therebetween which communicates with the discharge port, whereby, during operation, a lower pressure fluid is introduced from the suction port into said sealed housing to fill it with the lower pressure fluid and part of the fluid in said sealed housing is introduced into the compression chamber, compressed therein, and discharged from the discharge port through the discharge outlet;
- (c) means arranged in said sealed housing to cause said orbiting scroll member to orbit, thereby compressing the fluid introduced into the compression chamber;
- (d) connecting means penetrating said orbiting scroll member to communicate the compression chamber with the inside of said sealed housing;
- (e) pressure receiving means provided in said sealed housing adjacent said orbiting scroll member in position to be exposed to the lower pressure fluid, said pressure receiving means receiving compressed fluid from the compression chamber through said connecting means, whereby, during operation, the compressed fluid in said pressure receiving means gives a thrust load to said orbiting scroll member, thereby partially compensating for the force exerted on said orbiting scroll member by the compression chamber;
- (f) a frame fixed to said sealed housing to transmit the thrust load to said sealed housing, said frame supporting said pressure receiving means, whereby, during operation, the thrust load applied to said pressure receiving means is transmitted to said sealed housing through said frame; and
- (g) supporting means for preventing said pressure receiving means from orbiting together with said orbiting scroll member.
- 2. A scroll compressor according to claim 1 wherein said supporting means includes a peripheral surface having an inner diameter substantially equal to the outer diameter of said pressure receiving means, thereby permitting said supporting member to be always in contact with the the outer peripheral surface of said pressure receiving surface.
- 3. A scroll compressor with a thrust reduction mechanism for compressing gas, said scroll compressor comprising:
- (a) a sealed housing having a discharge port and a suction port;
- (b) scroll compressing means located between the discharge and suction ports, said scroll compressing means including a stationary scroll member and an orbiting scroll member defining a compression chamber therebetween which communicates with the discharge port, whereby, during operation, a lower pressure fluid is introduced from the suction port into said sealed housing to fill it with the lower pressure fluid and part of the fluid in said sealed housing is introduced into the compression chamber, compressed therein, and discharged from the discharge port through the discharge outlet;
- (c) means arranged in said sealed housing to cause said orbiting scroll member to orbit, thereby compressing the fluid introduced into the compression chamber;
- (d) connecting means penetrating said orbiting scroll member to communicate the compression chamber with the inside of said sealed housing;
- (e) circular pressure receiving means adjacent said orbiting scroll member having a thrust-transmitting surface provided in said sealed housing in position to be exposed to the lower pressure fluid, said circular pressure receiving means receiving compressed fluid from the compression chamber through said connecting means, whereby, during operation, the compressed fluid in said circular pressure receiving means gives a thrust load to said orbiting scroll member, thereby partially compensating for the force exerted on said orbiting scroll member by the compression chamber, said circular pressure receiving means having a outer peripheral surface and a central axis eccentric to the center of said orbiting scroll member; and
- (f) a frame fixed to said sealed housing to transmit the thrust load to said sealed housing, said frame comprising a thrust-receiving surface in surface-to-surface contact with the thrust-transmitting surface of said circular pressure receiving means to therebetween prevent said pressure receiving means from orbiting in spite of the motion of said orbiting scroll member and an inner peripheral surface which is in contact with the outer peripheral surface of sad pressure receiving means, whereby, during operation, the thrust load applied to said circular pressure receiving means is transmitted to said sealed housing through said frame.
- 4. A scroll compressor for compressing refrigerant, said scroll compressor comprising:
- (a) a housing having a discharge port and a suction port;
- (b) scroll compressing means located between said discharge and suction ports, said scroll compressing means including:
- (i) a stationary scroll member having an end plate, a stationary wrap extending vertically to said end plate, and a discharge outlet opened at a starting end of said stationary wrap and communicating with said discharge port and
- (ii) an orbiting scroll member having an end plate and an orbiting wrap extending vertically to the end plate of said orbiting scroll member and meshing with the stationary wrap of said stationary scroll member,
- (iii) the stationary wrap and the end plate of said stationary scroll member together with the orbiting wrap and the end plate of said orbiting scroll member defining a compression chamber therebetween,
- whereby, during operation, a lower pressure gas is introduced from the periphery of said stationary and orbiting wraps to said compression chamber and discharged from said discharge outlet and a side of the end plate of said orbiting scroll member opposed to said compression chamber is subjected to a low pressure atmosphere;
- (c) drive means arranged in the low pressure atmosphere inside said housing, said drive means including a drive shaft attached to said housing for rotation about an axis fixed with respect to said housing, said drive shaft having an axial end adjacent to but spaced from said end plate of said orbiting scroll member;
- (d) means for communicating the lower pressure gas to the space between said drive shaft and said end plate of said orbiting scroll member;
- (e) rotation transmission means for transmitting rotation of said drive shaft to said orbiting scroll member to cause said orbiting scroll member to orbit;
- (f) a frame fastened to said housing and to the periphery of the end plate of said stationary scroll member on the surface on which said stationary wrap extends, said frame having a bearing hole in which said drive shaft is fitted and further comprising a thrust-receiving surface;
- (g) Oldham coupling means provided between said frame and said orbiting scroll member for supporting said orbiting scroll member;
- (h) connecting means provided in said orbiting scroll member, said connecting means connecting said compression chamber and said low pressure atmosphere within said housing;
- (i) pressure receiving means having an annular channel formed therein, said annular channel being disposed between said frame and said orbiting scroll member radially outwardly of said drive shaft for receiving the pressure of said compression chamber via said connecting means, said pressure receiving means comprising a thrust-transmitting surface in surface-to-surface contact with said thrust-receiving surface of said frame to thereby prevent said pressure receiving means from orbiting in spite of the motion of said orbiting scroll member; and
- (j) lubrication oil connecting means provided inside said drive shaft for connecting the bottom of said housing with the space between said drive shaft and said frame and with the space between said rotation transmission means and said orbiting scroll member.
- 5. A scroll compressor for compressing refrigerant according to claim 4, wherein said rotation transmission means includes:
- (a) a cylindrical portion which projects from the surface of the end plate of said orbiting scroll member opposed to the surface on which said orbiting scroll extends and
- (b) a small diameter shaft carried by said drive shaft at a position offset from the axis of rotation of said drive shaft, said small diameter shaft fitting into the inside of said cylindrical portion of said orbiting scroll member.
- 6. A scroll compressor for compressing refrigerant according to claim 5, wherein said pressure receiving means is arranged on an imaginary circle, the center of the imaginary circle being concentric with the axis of rotation of said drive means.
- 7. A scroll compressor for compressing refrigerant according to claim 6, wherein:
- (a) said pressure receiving means includes an annular body provided between said frame and said orbiting scroll member;
- (b) said annular channel comprises a groove formed on a surface of said annular body which abuts against said surface of said orbiting scroll member; and
- (c) said groove is connected with said compression chamber via said connecting means.
- 8. A scroll compressor for compressing gas according to claim 7, wherein each seal ring of each pair of seal rings includes a cut out portion, the ends of said seal rings are concave or convex, said concave and convex ends coupling, and leaving a space.
- 9. A scroll compressor for compressing refrigerant according to claim 7, wherein:
- (a) said pressure receiving means further includes a pair of seal rings;
- (b) the ends of said seal rings abut against the end plate of said orbiting scroll member;
- (c) one of said seal rings is in contact with the inner surface of said groove;
- (d) the other of said seal rings is in contact with the outer surface of said groove; and
- (e) the height of said pair of seal rings is less than the depth of said groove.
- 10. A scroll compressor for compressing refrigerant according to claim 9, wherein:
- (a) each seal ring of said pair of seal rings includes a cut out portion;
- (b) the ends of said cut out portions are concave or convex; and
- (c) said concave and convex ends couple, leaving a space.
- 11. A scroll compressor for compressing refrigerant according to claim 10, wherein said pressure receiving means further includes a spring member attached between the bottom of said groove and said pair of seal rings, said spring member pressing said pair of seal rings against the lower surface of said orbiting scroll member.
- 12. A scroll compressor with a thrust reduction mechanism for compressing gas, said scroll compressor comprising:
- (a) a housing having a discharge port and a suction port;
- (b) scroll compressing means located between the discharge and suction ports, said scroll compressing means including:
- (i) a stationary scroll member having an end plate, a stationary wrap extending vertically to the end plate, and a discharge outlet formed in the end plate and communicating with said discharge port and
- (ii) an orbiting scroll member having an end plate and an orbiting wrap extending vertically to the end plate of said orbiting scroll member and meshing with the stationary wrap of said stationary scroll member,
- (iii) the stationary wrap and the end plate of said stationary scroll member together with the orbiting wrap and end plate of said orbiting scroll member defining a compression chamber therebetween,
- whereby, during operation, a lower pressure gas is introduced from said suction port in to said housing to fill it with the lower pressure gas and part of the gas in said housing is introduced into said compression chamber from the periphery of said stationary and orbiting wraps, compressed, and discharged from said discharge port through said discharge outlet;
- (c) driving means including a drive shaft arranged in said housing, said drive shaft having an axial end adjacent to but spaced from the end plate of said orbiting scroll member;
- (d) means for communicating the lower pressure gas to the space between said drive shaft and the end plate of said orbiting scroll member;
- (e) rotation transmission means for transmitting rotation of said drive shaft to said orbiting scroll member to cause said orbiting scroll member to orbit;
- (f) connecting means penetrating said orbiting scroll member from a first side thereof which defines said compression chamber to a second side thereof which, during operation, is exposed to the lower pressure gas;
- (g) a pressure receiving means having an annular channel formed therein, said annular channel being radially outwardly spaced from said drive shaft and facing the second side of said orbiting scroll member, said pressure receiving means comprising a thrust-transmitting surface, said pressure receiving means receiving the compressed gas in said compression chamber through said connecting means, whereby, during operation, the compressed gas in said pressure receiving means gives a thrust load to the end plate of said orbiting scroll member and to said pressure receiving means to separate them; and
- (h) a frame fixed to said housing to transmit the thrust load to it, said frame comprising a thrust-receiving surface in surface-to-surface contact with the thrust-transmitting surface of said pressure receiving means to thereby prevent said pressure receiving means from orbiting in spite of the motion of said orbiting scroll member, whereby, during operation, the thrust load applied to said pressure receiving means is transmitted to said housing through said frame.
- 13. A scroll compressor for compressing gas according to claim 2, wherein said pressure receiving means is arranged on an imaginary circle, the center of the imaginary circle being concentric with the axis of rotation of said driving means.
- 14. A scroll compressor for compressing gas according to claim 13, wherein said pressure receiving means includes an annular member provided between said frame and said orbiting scroll member and said annular channel comprising an annular groove formed in said annular member, said annular groove abutting against the second side of said orbiting scroll member and being connected to said compression chamber via said connector means.
- 15. A scroll compressor for compressing gas according to claim 14, wherein said said annular channel further includes a pair of seal rings, the ends of said seal rings abutting against the end plate of said orbiting scroll member, a pair of annular grooves is formed inside and outside of said annular groove, said pair of seal rings being partially housed inside said pair of annular grooves, the depth of said pair of said annular grooves being less than that of said annular groove, and said pair of annular grooves connecting, at their bottoms, with the periphery of said annular groove at a plurality of locations.
- 16. A scroll compressor for compressing gas according to claim 14, wherein said annular member includes an annular body and a pair of seal rings projecting from said annular body to form said annular channel therebetween, the projecting ends of said pair of said seal rings abuting against the end plate of said orbiting scroll member.
- 17. A scroll compressor for compressing refrigerant according to claim 16, wherein:
- (a) said pressure receiving means further includes a pair of seal rings;
- (b) the ends of said seal rings abut against the end plate of said orbiting scroll member;
- (c) a pair of annular grooves is formed inside and outside of said groove;
- (d) said pair of seal rings is partially housed inside said pair of annular grooves;
- (e) the depth of said pair of grooves is less than that of said groove; and
- (f) said pair of grooves are connected, at their bottoms, with the periphery of said groove at a plurality of locations.
- 18. A scroll compressor for compressing gas according to claim 8, wherein said pressure receiving means further includes a spring member attached between the bottom of said annular groove and said pair of seal rings, said spring member pressing said pair of seal rings against the second surface of said orbiting scroll member.
- 19. A scroll compressor with a thrust reduction mechanism for compressing gas, said scroll compressor comprising:
- (a) a sealed housing having a discharge port and a suction port;
- (b) scroll compressing means located between the discharge and suction ports, said scroll compressing means including a stationary scroll member and an orbiting scroll member defining a compression chamber therebetween which communicates with the discharge port, whereby, during operation, a lower pressure fluid is introduced from the suction port into said sealed housing to fill it with the lower pressure fluid and part of the fluid in said sealed housing is introduced into the compression chamber, compressed therein, and discharged from the discharge port through the discharge outlet;
- (c) means arranged in said sealed housing to cause said orbiting scroll member to orbit, thereby compressing the fluid introduced into the compression chamber;
- (d) connecting means penetrating said orbiting scroll member to communicate the compression chamber with the inside of said sealed housing;
- (e) pressure receiving means comprising a thrust-transmitting surface provided in said sealed housing in position to be exposed to the lower pressure fluid, said pressure receiving means adjacent said orbiting scroll member receiving compressed fluid from the compression chamber through said connecting means, whereby, during operation, the compressed fluid in said pressure receiving means gives a thrust load to said orbiting scroll member, thereby partially compensating for the force exerted on said orbiting scroll member by the compression chamber; and
- (f) a frame fixed to said sealed housing to transmit the thrust load to said sealed housing, said frame comprising a thrust-receiving surface in surface-to-surface contact with the thrust-transmitting surface of said pressure receiving means to thereby prevent said pressure receiving means from orbiting in spite of the motion of said orbiting scroll member, whereby, during operation, the thrust load applied to said pressure receiving means is transmitted to said sealed housing through said frame.
Priority Claims (1)
Number |
Date |
Country |
Kind |
58-180499 |
Sep 1983 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 655,429, filed Sept. 28, 1984, now abandoned.
US Referenced Citations (7)
Continuations (1)
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Number |
Date |
Country |
Parent |
655429 |
Sep 1984 |
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