IP Library Granted Patent US 10,030,696
Granted Patent B2
US 10,030,696 · App. 15/506,349 · Granted Jul 24, 2018

Fluid dynamic bearing device, and bearing member and shaft member for use in same

Inventors: Shinji Komatsubara (Mie, JP); Tetsuya Kurimura (Mie, JP); Yasuhiro Yamamoto (Mie, JP)
Assignee: NTN CORPORATION
F16C17/02F16C33/106F16C33/12H02K5/165H02K7/086F16C2380/26
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Quick Facts
Patent No.
US 10,030,696
App. No.
15/506,349
Granted
Jul 24, 2018
Kind
B2
Abstract

A ratio W 1 /W 2 of a circumferential width W 1 of each of inclined hill portions G 2 of a radial dynamic pressure generating portion G and a circumferential width W 2 of each of inclined groove portions G 3 is 1.2 or larger. And when an inner diameter of a bearing member is D, the circumferential width W 2 of each of the inclined groove portions satisfies 0.2D≤W 2 ≤0.4D.

Claims (25)

1. A fluid dynamic bearing device, comprising:

a bearing member;

a shaft member inserted into an inner periphery of the bearing member; and

a radial dynamic pressure generating portion formed on an inner peripheral surface of the bearing member or an outer peripheral surface of the shaft member, the radial dynamic pressure generating portion comprising:

an annular hill portion extending in a circumferential direction,

a plurality of inclined hill portions extending from the annular hill portion to both sides in an axial direction, and

a plurality of inclined groove portions provided between the plurality of inclined hill portions in the circumferential direction,

wherein a ratio W 1 /W 2 of a circumferential width W 1 of each of the inclined hill portions and a circumferential width W 2 of each of the inclined groove portions is 1.2 or larger, and when an inner diameter of the bearing member is D, the circumferential width W 2 of the each of the inclined groove portions satisfies 0.2D≤W 2 ≤0.4D.

2. A fan motor, comprising the fluid dynamic bearing device of claim 1 .

3. The fluid dynamic bearing device according to claim 1 , wherein the bearing member is made of a sintered metal.

4. A fan motor, comprising the fluid dynamic bearing device of claim 3 .

5. The fluid dynamic bearing device according to claim 1 , wherein an angle of each of the inclined hill portions and the inclined groove portions relative to the circumferential direction falls within a range from 10° to 30°.

6. A fan motor, comprising the fluid dynamic bearing device of claim 5 .

7. The fluid dynamic bearing device according to claim 5 , wherein the bearing member is made of a sintered metal.

8. A fan motor, comprising the fluid dynamic bearing device of claim 7 .

9. A bearing member, which is to be incorporated into a fluid dynamic bearing device, and comprises a radial dynamic pressure generating portion formed on an inner peripheral surface of the bearing member, the radial dynamic pressure generating portion comprising:

an annular hill portion extending in a circumferential direction of the bearing member;

a plurality of inclined hill portions extending from the annular hill portion to both sides in an axial direction of the bearing member; and

a plurality of inclined groove portions formed between the plurality of inclined hill portions in the circumferential direction,

wherein a ratio W 1 /W 2 of a circumferential width W 1 of each of the inclined hill portions of the radial dynamic pressure generating portion and a circumferential width W 2 of each of the inclined groove portions is 1.2 or larger, and when an inner diameter of the bearing member is D, the circumferential width W 2 of the each of the inclined groove portions satisfies 0.2D≤W 2 ≤0.4D.

10. A shaft member, which is to be incorporated into a fluid dynamic bearing device and comprises a radial dynamic pressure generating portion formed on an outer peripheral surface of the shaft member, the radial dynamic pressure generating portion comprising:

an annular hill portion extending in a circumferential direction of the shaft member;

a plurality of inclined hill portions extending from the annular hill portion to both sides in an axial direction of the shaft member; and

a plurality of inclined groove portions formed between the plurality of inclined hill portions in the circumferential direction,

wherein a ratio W 1 /W 2 of a circumferential width W 1 of each of the inclined hill portions of the radial dynamic pressure generating portion and a circumferential width W 2 of each of the inclined groove portions is 1.2 or larger, and when an outer diameter of the shaft member is D′, the circumferential width W 2 of the each of the inclined groove portions satisfies 0.2D′≤W 2 ≤0.4D′.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2017
From: KOMATSUBARA, SHINJI; KURIMURA, TETSUYA; YAMAMOTO, YASUHIRO
To: NTN CORPORATION
Reel/Frame 041371/0345 →
Priority Claims (1)
JP 2014-177380 · Sep 1, 2014 · national
Continuity (1)
Related Publication 20170254357A1 · Sep 7, 2017