IP Library › Granted Patent US 10,337,560
Granted Patent B2
US 10,337,560 · App. 15/573,107 · Granted Jul 2, 2019

Sliding component

Inventors: Yuichiro Tokunaga (Tokyo, JP); Hideyuki Inoue (Tokyo, JP); Wataru Kimura (Tokyo, JP); Tetsuya Iguchi (Tokyo, JP); Keiichi Chiba (Tokyo, JP); Masatoshi Itadani (Tokyo, JP); Hikaru Katori (Tokyo, JP)
Assignee: EAGLE INDUSTRY CO., LTD.
F16C33/80F16J15/348F16J15/3416
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Quick Facts
Patent No.
US 10,337,560
App. No.
15/573,107
Granted
Jul 2, 2019
Kind
B2
Abstract

In an embodiment, a sliding face of at least one sliding part of the pair of sliding parts is provided, along its entire circumference, with a trap groove 10 for trapping leakage fluid, located on a leakage side and spaced from the leakage side by a land. A dust entry reduction means 12 for reducing entry of dust from the leakage side while allowing passage of fluid is formed between lands of the pair of sliding parts on the leakage side of the trap groove 10 . At the sliding faces of the pair of sliding parts sliding relatively, entry of dust from the leakage side as well as liquid leakage to the leakage side are suppressed.

Claims (38)

1. A sliding component comprising a pair of sliding parts that relatively slide on each other, one of the sliding parts being a stationary-side seal ring, the other of the sliding parts being a rotating-side seal ring, the seal rings each having a sliding face formed radially for sealing sealed fluid from leaking, wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided, along an entire circumference thereof, with at least one trap groove located close to a leakage side but spaced from the leakage side by a land, for trapping leakage fluid,

a dust entry reduction means is formed between lands of the pair of sliding parts at a position closer to the leakage side than is the at least one trap groove, for reducing entry of dust from the leakage side while allowing passage of fluid, and

the lands of the pair of sliding part have, at edges of the lands, chamfered portions, respectively, wherein the dust entry reduction means is constituted by an extremely small gap zone formed by the chamfered portions facing each other in a manner reducing entry of dust from the leakage side while allowing passage of fluid.

2. The sliding component according to claim 1 , wherein the at least one trap groove comprises a plurality of trap grooves provided in one of the stationary-side seal ring and the rotating-side seal ring and at least one trap groove provided in the other of the stationary-side seal ring and the rotating-side seal ring, and

the trap groove or grooves in the stationary-side seal ring and the trap groove or grooves in the rotating-side seal ring are arranged so as not to radially overlap with one another, and the trap grooves are defined by lands between which dust entry reduction means are formed for reducing entry of dust from the leakage side while allowing passage of fluid.

3. The sliding component according to claim 2 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is further provided with at least one dynamic pressure generation groove that is configured to communicate with the at least one trap groove and not to communicate with a sealed fluid side.

4. The sliding component according to claim 1 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is further provided with at least one dynamic pressure generation groove that is configured to communicate with the at least one trap groove and not to communicate with a sealed fluid side.

5. The sliding component according to claim 4 , wherein

the at least one dynamic pressure generation groove is formed in a spiral shape to suck fluid on the leakage side and pump the fluid to the sealed fluid side.

6. The sliding component according to claim 1 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided with at least one fluid introduction groove that is configured to communicate with the sealed fluid side and not to communicate with the leakage side.

7. A sliding component comprising a pair of sliding parts that relatively slide on each other, one of the sliding parts being a stationary-side seal ring, the other of the sliding parts being a rotating-side seal ring, the seal rings each having a sliding face formed radially for sealing liquid or misty fluid, which is sealed fluid, from leaking, wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided, along an entire circumference thereof, with at least one trap groove located close to a leakage side but spaced from the leakage side by a land, for trapping leakage liquid,

a dust entry reduction means is formed between lands of the pair of sliding parts at a position closer to the leakage side than is the at least one trap groove, for reducing entry of dust from the leakage side, and

the lands of the pair of sliding part have, at edges of the lands, chamfered portions, respectively, wherein the dust entry reduction means is constituted by an extremely small gap zone formed by the chamfered portions facing each other in a manner reducing entry of dust from the leakage side.

8. The sliding component according to claim 7 , wherein the at least one trap groove comprises a plurality of trap grooves provided in one of the stationary-side seal ring and the rotating-side seal ring and at least one trap groove provided in the other of the stationary-side seal ring and the rotating-side seal ring, and

the trap groove or grooves in the stationary-side seal ring and the trap groove or grooves in the rotating-side seal ring are arranged so as not to radially overlap with one another, and the trap grooves are defined by lands between which dust entry reduction means are formed for reducing entry of dust from the leakage side while allowing passage of fluid.

9. The sliding component according to claim 7 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is further provided with at least one dynamic pressure generation groove that is configured to communicate with the at least one trap groove and not to communicate with a sealed fluid side.

10. The sliding component according to claim 7 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided with at least one fluid introduction groove that is configured to communicate with the sealed fluid side and not to communicate with the leakage side.

11. A sliding component comprising a pair of sliding parts that relatively slide on each other, one of the sliding parts being a stationary-side seal ring, the other of the sliding parts being a rotating-side seal ring, the seal rings each having a sliding face formed radially for sealing sealed fluid from leaking, wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided, along an entire circumference thereof, with at least one trap groove located close to a leakage side but spaced from the leakage side by a land, for trapping leakage fluid,

a dust entry reduction means is formed between lands of the pair of sliding parts at a position closer to the leakage side than is the at least one trap groove, for reducing entry of dust from the leakage side while allowing passage of fluid, and

the lands of the pair of sliding part have, at edges of the lands, chamfered portions, respectively, wherein the dust entry reduction means is constituted by radial inclined grooves which are formed in a surface of at least one of the lands of the pair of sliding parts and which are open to the at least one trap groove and the leakage side in a manner reducing entry of dust from the leakage side while allowing passage of fluid.

12. The sliding component according to claim 11 , wherein the at least one trap groove comprises a plurality of trap grooves provided in one of the stationary-side seal ring and the rotating-side seal ring and at least one trap groove provided in the other of the stationary-side seal ring and the rotating-side seal ring, and

the trap groove or grooves in the stationary-side seal ring and the trap groove or grooves in the rotating-side seal ring are arranged so as not to radially overlap with one another, and the trap grooves are defined by lands between which dust entry reduction means are formed for reducing entry of dust from the leakage side while allowing passage of fluid.

13. The sliding component according to claim 11 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is further provided with at least one dynamic pressure generation groove that is configured to communicate with the at least one trap groove and not to communicate with a sealed fluid side.

14. The sliding component according to claim 11 , wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided with at least one fluid introduction groove that is configured to communicate with the sealed fluid side and not to communicate with the leakage side.

15. A sliding component comprising a pair of sliding parts that relatively slide on each other, one of the sliding parts being a stationary-side seal ring, the other of the sliding parts being a rotating-side seal ring, the seal rings each having a sliding face formed radially for sealing sealed fluid from leaking, wherein

the sliding face of at least one sliding part of the pair of sliding parts is provided, along an entire circumference thereof, with at least one trap groove located close to a leakage side but spaced from the leakage side by a land, for trapping leakage fluid,

a dust entry reduction means is formed between lands of the pair of sliding parts at a position closer to the leakage side than is the at least one trap groove, for reducing entry of dust from the leakage side, and

the lands of the pair of sliding part have, at edges of the lands, chamfered portions, respectively, wherein the dust entry reduction means is constituted by radial inclined grooves which are formed in a surface of at least one of the lands of the pair of sliding parts and which are open to the at least one trap groove and the leakage side in a manner reducing entry of dust from the leakage side.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2017
From: TOKUNAGA, YUICHIRO; INOUE, HIDEYUKI; KIMURA, WATARU; IGUCHI, TETSUYA; CHIBA, KEIICHI; ITADANI, MASATOSHI; KATORI, HIKARU
To: EAGLE INDUSTRY CO., LTD.
Reel/Frame 044086/0473 →
Priority Claims (1)
JP 2015-102472 · May 20, 2015 · national
Continuity (1)
Related Publication 20180135699A1 · May 17, 2018
Cited By (10)
US 12,247,666 US 12,281,671 US 12,379,031 US 12,385,567 US 12,404,936 US 12,473,946 US 12,516,737 US 12,584,556 US 12,704,151 US 12,729,717