IP Library Granted Patent US 12,723,656
Granted Patent B2
US 12,723,656 · App. 18/855,281 · Granted Sep 1, 2026

Sliding component

Inventors: Hiroshi Suzuki (Tokyo, JP); Yuichiro Tokunaga (Tokyo, JP); Yuta Negishi (Tokyo, JP); Hiroki Aizawa (Tokyo, JP); Akihiro Takahashi (Tokyo, JP); Nobuo Nakahara (Tokyo, JP); Tetsuzo Okada (Tokyo, JP)
Assignee: EAGLE INDUSTRY CO., LTD.
F16J15/34F16C17/045F16C33/1015F16C33/107F16C33/741F16J15/342F16J15/40
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Quick Facts
Patent No.
US 12,723,656
App. No.
18/855,281
Granted
Sep 1, 2026
Kind
B2
Abstract

An annular sliding component is one of two sliding rings that rotate relative to each other and partition a sealed fluid space and a leakage space, the sliding component includes a dynamic pressure generating groove that generates a dynamic pressure, and includes an inclined groove which extends from the leakage space toward the sealed fluid space with an inclination in a forward rotation direction and has a first dynamic pressure generating end portion and a reverse groove which extends from a backward rotation direction side of the inclined groove in a backward rotation direction and has a second dynamic pressure generating end portion.

Claims (37)

1 . A sliding component which is one of two sliding rings that rotate relative to each other and partition a sealed fluid space and a leakage space,

wherein the sliding component includes a plurality of dynamic pressure generating grooves each configured to generate a dynamic pressure, the dynamic pressure generating groove includes a plurality of inclined grooves and a plurality of reverse grooves,

each of the inclined grooves extends from the leakage space toward the sealed fluid space with an inclination in a forward rotation direction which is a relative rotation direction of a remaining one of the two sliding rings, and has a first dynamic pressure generating end portion,

each of the reverse grooves extends from a backward rotation direction side of each of the inclined grooves in a backward rotation direction which is a relative rotation direction of the remaining one of the two sliding rings, and has a second dynamic pressure generating end portion, and

sealed-fluid-space-side wall portions of the inclined grooves on a side of the sealed fluid space extend on a circumferential line.

2 . The sliding component according to claim 1 ,

wherein the second dynamic pressure generating end portion extends from a closed end portion of the inclined groove, and

the first dynamic pressure generating end portion and the second dynamic pressure generating end portion are aligned in a circumferential line.

3 . The sliding component according to claim 2 ,

wherein wall surfaces of the first dynamic pressure generating end portion and the second dynamic pressure generating end portion on a side of the sealed fluid space are continuous to collectively form a smoothly continuous surface.

4 . The sliding component according to claim 1 ,

wherein the first dynamic pressure generating end portion is disposed on a side of the leakage space in relation to the second dynamic pressure generating end portion.

5 . The sliding component according to claim 4 ,

wherein wall surfaces of the first dynamic pressure generating end portion and the second dynamic pressure generating end portion on a side of the sealed fluid space are continuous to collectively form a smoothly continuous surface.

6 . The sliding component according to claim 1 ,

wherein wall surfaces of the first dynamic pressure generating end portion and the second dynamic pressure generating end portion on a side of the sealed fluid space are continuous to collectively form a smoothly continuous surface.

7 . The sliding component according to claim 1 ,

wherein wall surfaces of the first dynamic pressure generating end portion and the second dynamic pressure generating end portion on a side of the sealed fluid space are continuous to collectively form an arc-shaped surface.

8 . The sliding component according to claim 1 ,

wherein the first dynamic pressure generating end portion is defined by lines crossing each other at an acute angle when viewed from an axial direction.

9 . The sliding component according to claim 1 ,

wherein the first dynamic pressure generating end portion is tapered in the forward rotation direction and has a curved tip.

10 . The sliding component according to claim 1 ,

wherein the second dynamic pressure generating end portion is defined by lines crossing each other at an acute angle when viewed from an axial direction.

11 . The sliding component according to claim 1 ,

wherein the second dynamic pressure generating end portion is tapered in the backward rotation direction and has a curved tip.

12 . The sliding component according to claim 1 , further comprising:

a fluid input/output groove which communicates with the sealed fluid space.

13 . The sliding component according to claim 12 ,

wherein the fluid input/output groove includes a dynamic pressure generating portion.

14 . A sliding component which is one of two sliding rings that rotate relative to each other and partition a sealed fluid space and a leakage space,

wherein the sliding component includes a plurality of dynamic pressure generating grooves each configured to generate a dynamic pressure, the dynamic pressure generating groove includes a plurality of inclined grooves and a plurality of reverse grooves,

each of the inclined grooves extends from the leakage space toward the sealed fluid space with an inclination in a forward rotation direction which is a relative rotation direction of a remaining one of the two sliding rings, and has a first dynamic pressure generating end portion,

each of the reverse grooves extends from a backward rotation direction side of each of the inclined grooves in a backward rotation direction which is a relative rotation direction of the remaining one of the two sliding rings, and has a second dynamic pressure generating end portion, and

the first dynamic pressure generating end portion is disposed on a side of the sealed fluid space in relation to the second dynamic pressure generating end portion.

15 . The sliding component according to claim 14 ,

wherein wall surfaces of the first dynamic pressure generating end portion and the second dynamic pressure generating end portion on a side of the sealed fluid space are continuous to collectively form a smoothly continuous surface.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2025
From: SUZUKI, HIROSHI; TOKUNAGA, YUICHIRO; NEGISHI, YUTA; AIZAWA, HIROKI; TAKAHASHI, AKIHIRO; NAKAHARA, NOBUO; OKADA, TETSUZO
To: EAGLE INDUSTRY CO., LTD.
Reel/Frame 069759/0885 →
Priority Claims (1)
JP 2022-064988 · Apr 11, 2022 · national
Continuity (1)
Related Publication 20250243903A1 · Jul 31, 2025
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