Scroll type compressor
US-2015198161-A1 · Jul 16, 2015 · US
US9670927B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9670927-B2 |
| Application number | US-201414196546-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 4, 2014 |
| Priority date | Mar 6, 2013 |
| Publication date | Jun 6, 2017 |
| Grant date | Jun 6, 2017 |
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A scroll compressor comprises a housing, a cylindrical rotating shaft, a fixed scroll, a movable scroll, and a drive mechanism. The drive mechanism includes an eccentric pin, and a balancer-integrated bush. The eccentric pin extends in parallel with the rotating shaft from the end part of the rotating shaft. The balancer-integrated bush is disposed between the eccentric pin and the movable scroll, includes an eccentric hole into which the eccentric pin is inserted, and configured to rotate around the eccentric pin, and further includes a balancer in an integrated manner, and is configured to rotatably move relative to the rotating shaft. An elastic member is disposed between the balancer-integrated bush and at least one of the rotating shaft and the eccentric pin, and the elastic member regulates the relatively movable range of the rotating shaft and the balancer-integrated bush.
Opening claim text (preview).
What is claimed is: 1. A scroll compressor comprising: a housing; a cylindrical rotating shaft rotatably supported by the housing; a fixed scroll fixed to the housing; a movable scroll which opposes the fixed scroll to form a compressing chamber; and a drive mechanism disposed in the housing and configured to allow the movable scroll to make an orbital motion by rotation of the rotating shaft, wherein the drive mechanism includes an eccentric pin extending in parallel with the rotating shaft from an end part of the rotating shaft, and a balancer-integrated bush disposed between the eccentric pin and the movable scroll, including an eccentric hole into which the eccentric pin is inserted, configured to rotate around the eccentric pin, further including a balancer in an integrated manner, and configured to rotatably move relative to the rotating shaft, wherein an elastic member is disposed between a concaved portion of the balancer-integrated bush and the end part of the rotating shaft, and the elastic member regulates a relatively movable range in which the balancer-integrated bush rotatably moves around the rotating shaft relative to the rotating shaft, wherein a face of the balancer-integrated bush that regulates rotation of the balancer-integrated bush relative to the rotating shaft is disposed between the concaved portion of the balancer-integrated bush and the end part of the rotating shaft, and wherein the face of the balancer-integrated bush that regulates rotation of the balancer-integrated bush corresponds to a location where the elastic member is disposed. 2. The scroll compressor according to claim 1 , wherein there exists a non-adjacent state in which the elastic member is not in abutment with either the balancer-integrated bush or at least one of the rotating shaft and the eccentric pin within the relatively movable range. 3. The scroll compressor according to claim 2 , wherein the balancer-integrated bush comprises a body and a projecting portion which projects in parallel with the rotating shaft from the body towards the rotating shaft, the projecting portion includes a first opposing surface opposing a peripheral surface of the rotating shaft, the body includes a second opposing surface opposing an end surface of the rotating shaft, and the first opposing surface and the second opposing surface form a concaved portion capable of accommodating the end part of the rotating shaft. 4. The scroll compressor according to claim 3 , wherein the elastic member is attached to a part opposing the first opposing surface within the peripheral surface of the rotating shaft, or to the first opposing surface. 5. The scroll compressor according to claim 4 , wherein the elastic member is a ring shaped elastic member, and the ring shaped elastic member is attached to the rotating shaft, or to the projecting portion. 6. The scroll compressor according to claim 2 , wherein the eccentric pin includes an exposed portion exposed to outside the eccentric hole, a ring shaped elastic member is attached to a peripheral surface of the exposed portion, and the ring shaped elastic member is in abutment with the balancer-integrated bush. 7. The scroll compressor according to claim 1 , wherein the elastic member is always in abutment with at least one of the rotating shaft and the eccentric pin and the balancer-integrated bush within the relatively movable range. 8. The scroll compressor according to claim 7 , wherein the balancer-integrated bush comprises a body and a projecting portion which projects in parallel with the rotating shaft from the body towards the rotating shaft, the projecting portion includes a first opposing surface opposing a peripheral surface of the rotating shaft, the body includes a second opposing surface opposing an end surface of the rotating shaft, and the first opposing surface and the second opposing surface form the concaved portion capable of accommodating the end part of the rotating shaft. 9. The scroll compressor according to claim 8 , wherein the elastic member is attached to a part opposing the first opposing surface within the peripheral surface of the rotating shaft, or to the first opposing surface. 10. The scroll compressor according to claim 9 , wherein the elastic member is a ring shaped elastic member, and the ring shaped elastic member is attached to the rotating shaft, or to the projecting portion. 11. The scroll compressor according to claim 7 , wherein the eccentric pin includes an exposed portion exposed to outside the eccentric hole, a ring shaped elastic member is attached to a peripheral surface of the exposed portion, and the ring shaped elastic member is in abutment with the balancer-integrated bush. 12. The scroll compressor according to claim 1 , wherein the balancer-integrated bush comprises a body and a projecting portion which projects in parallel with the rotating shaft from the body towards the rotating shaft, the projecting portion includes a first opposing surface opposing a peripheral surface of the rotating shaft, the body includes a second opposing surface opposing an end surface of the rotating shaft, and the first opposing surface and the second opposing surface form the concaved portion capable of accommodating the end part of the rotating shaft. 13. The scroll compressor according to claim 12 , wherein the elastic member is attached to a part opposing the first opposing surface within the peripheral surface of the rotating shaft, or to the first opposing surface. 14. The scroll compressor according to claim 13 , wherein the elastic member is a ring shaped elastic member, and the ring shaped elastic member is attached to the rotating shaft, or to the projecting portion. 15. The scroll compressor according to claim 1 , wherein the balancer-integrated bush includes a first opposing surface opposing a peripheral surface of the rotating shaft, and the elastic member is attached to a part opposing the first opposing surface within the peripheral surface of the rotating shaft, or to the first opposing surface. 16. The scroll compressor according to claim 15 , wherein the elastic member is a ring shaped elastic member, and the ring shaped elastic member is attached to the rotating shaft, or to the projecting portion. 17. The scroll compressor according to claim 1 , wherein the eccentric pin includes an exposed portion exposed to outside the eccentric hole, a ring shaped elastic member is attached to a peripheral surface of the exposed portion, and the ring shaped elastic member is in abutment with the balancer-integrated bush. 18. A scroll compressor comprising: a housing; a cylindrical rotating shaft rotatably supported by the housing; a fixed scroll fixed to the housing; a movable scroll which opposes the fixed scroll to form a compressing chamber; and a drive mechanism disposed in the housing and configured to allow the movable scroll to make an orbital motion by rotation of the rotating shaft, wherein the drive mechanism includes an eccentric pin extending in parallel with the rotating shaft from an end part of the rotating shaft, and a balancer-integrated bush disposed between the eccentric pin and the movable scroll, including an eccentric hole into which the eccentric pin is inserted, configured to rotate around the eccentric pin, further including a balancer in an integrated manner, and configured to rotatably move relative to the rotating shaft, wherein an elastic member is disposed between the balancer-integrated bush and at least one of the rotating sha
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