IP Library Granted Patent US 7,540,664
Granted Patent B2
US 7,540,664 · App. 11/061,245 · Granted Jun 2, 2009

Grooves on both the moving and the stationary mating fluid dynamic bearing surfaces for performance enhancement

Assignee: Seagate Technology LLC
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Quick Facts
Patent No.
US 7,540,664
App. No.
11/061,245
Granted
Jun 2, 2009
Kind
B2
Abstract

A fluid dynamic bearing is provided having a first surface having at least a first groove pattern formed therein; and the second surface having at least a second groove pattern formed therein; wherein one of the surfaces is configured to be rotated relative to the other surface. The groove patterns may be conventional patterns or patterns described herein. Further, the patterns discussed herein may be disposed wholly on each surface or may be divided between the two surfaces. The groove design is intended to be useable in either a journal, thrust or other fluid bearing design.

Claims (23)

1. A fluid dynamic bearing, comprising:

a first surface having at least a first groove pattern; and

a second surface having at least a second groove pattern; wherein one of the surfaces is configured to be rotated relative to the other surface and the first and second groove patterns are located on their respective surfaces to cooperate in rotation to establish a pressure to support the relative rotation of the surfaces; wherein the first groove pattern and the second groove pattern are oppositely oriented in the context of relative rotation; wherein during rotation the first groove pattern creates a bearing pressure change at the first groove pattern, and the second groove pattern creates a bearing pressure change at the second groove pattern; wherein the first groove pattern comprises at least one set of first groove segments and the second groove pattern comprises at least one set of second groove segments; wherein each of the surfaces is a substantially flat surface, wherein the first segment extends radially from at or near an inner diameter of the first surface to at or near a portion of a radius of the first surface, and wherein the second segment extends radially from at or near a radial portion of the second surface corresponding to the radius of the first surface to at or near an outer diameter of the second surface.

2. The fluid dynamic bearing of claim 1 , wherein each groove pattern comprises a plurality of substantially spiral shaped grooves.

3. The fluid dynamic bearing of claim 1 , wherein each groove pattern comprises a plurality of substantially chevron shaped grooves.

4. The fluid dynamic bearing of claim 1 , wherein each segment has a constant groove angle along at least part of the length of the segment.

5. The fluid dynamic bearing of claim 1 , wherein each segment has a continuously varying groove angle along at least part of the length of the segment.

6. The fluid dynamic bearing of claim 1 , wherein the first segment and the second segment overlap along the direction of rotation.

7. The fluid dynamic bearing of claim 1 , wherein the first segment and the second segment are spatially separated along the axis of rotation.

8. The fluid dynamic bearing of claim 1 , wherein the first segment has a constant groove angle along at least part of the length of the first segment and the second segment has a continuously varying groove angle along at least part of the length of the second segment.

9. A fluid dynamic bearing comprising:

a first surface having at least a first groove pattern; and

a second surface having at least a second groove pattern; wherein one of the first surface and the second surface is configured to be rotated relative to the other surface; wherein the first groove pattern and the second groove pattern cooperate in rotation to establish a pressure to support the relative rotation of the surfaces; wherein each groove pattern comprises at least one first segment and at least one second segment, the first segment being offset along a direction of rotation relative to the second segment; wherein the first segment and the second segment are interrupted so that they are not continuous; and wherein during rotation the first groove pattern creates a bearing pressure change at the first groove pattern and the second groove pattern creates a bearing pressure change at the second groove pattern.

10. The fluid dynamic bearing of claim 9 , wherein the segments of each groove pattern have constant groove angles along at least part of the length of each segment.

11. The fluid dynamic bearing of claim 9 , wherein the segments of each groove pattern have a continuously varying groove angle along at least part of the length of each segment.

12. The fluid dynamic bearing of claim 9 , wherein each groove pattern comprises a first set of segments and a second set of segments and the segments of the groove patterns have an offset δ in the direction of rotation, where 0<δ≦0.5*pitch.

13. The fluid dynamic bearing of claim 9 , wherein the first segment of each groove pattern has a constant groove angle along at least part of the length of the first segment and the second segment of each groove pattern has a continuously varying groove angle along at least part of the length of the second segment.

14. The fluid dynamic bearing of claim 9 , wherein the segments of each groove pattern overlap along the direction of rotation.

15. The fluid dynamic bearing of claim 9 , wherein the segments of each groove pattern are spatially separated along the axis of rotation.

16. The fluid dynamic bearing of claim 9 , wherein the first groove pattern and the second groove pattern are oppositely oriented in the context of relative rotation.

17. A fluid dynamic bearing comprising:

a first surface having at least a first groove pattern; and

a second surface having at least a second groove pattern; wherein one of the surfaces is configured to be rotated relative to the other surface, and the first and second groove patterns are located on their respective surfaces to cooperate in rotation to establish a pressure to support the relative rotation of the surfaces; wherein each of the surfaces is a substantially flat surface; wherein the first groove pattern extends radially from at or near an inner diameter of the first surface to at or near a portion of a radius of the first surface; and wherein the second groove pattern extends radially from at or near a radial portion of the second surface corresponding to the radius of the first surface to at or near an outer diameter of the second surface.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Jul 23, 2025
From: THE BANK OF NOVA SCOTIA
To: SEAGATE TECHNOLOGY PUBLIC LIMITED COMPANY; SEAGATE TECHNOLOGY; SEAGATE TECHNOLOGY HDD HOLDINGS; I365 INC.; SEAGATE TECHNOLOGY LLC; SEAGATE TECHNOLOGY INTERNATIONAL; SEAGATE HDD CAYMAN; SEAGATE TECHNOLOGY (US) HOLDINGS, INC.
Reel/Frame 072193/0001 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT RIGHTS Recorded Jul 19, 2013
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT AND SECOND PRIORITY REPRESENTATIVE
To: SEAGATE TECHNOLOGY LLC; EVAULT INC. (F/K/A I365 INC.); SEAGATE TECHNOLOGY INTERNATIONAL; SEAGATE TECHNOLOGY US HOLDINGS, INC.
Reel/Frame 030833/0001 →
SECURITY AGREEMENT Recorded Mar 24, 2011
From: SEAGATE TECHNOLOGY LLC
To: THE BANK OF NOVA SCOTIA, AS ADMINISTRATIVE AGENT
Reel/Frame 026010/0350 →
RELEASE Recorded Jan 19, 2011
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: SEAGATE TECHNOLOGY HDD HOLDINGS; MAXTOR CORPORATION; SEAGATE TECHNOLOGY LLC; SEAGATE TECHNOLOGY INTERNATIONAL
Reel/Frame 025662/0001 →
SECURITY AGREEMENT Recorded May 15, 2009
From: MAXTOR CORPORATION; SEAGATE TECHNOLOGY LLC; SEAGATE TECHNOLOGY INTERNATIONAL
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT AND FIRST PRIORITY REPRESENTATIVE; WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT AND SECOND PRIORITY REPRESENTATIVE
Reel/Frame 022757/0017 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 18, 2005
From: RAHMAN, MOHAMED MIZANUR; KLOEPPEL, KLAUS DIETER; COCHRAN, DUSTIN A.
To: SEAGATE TECHNOLOGY LLC
Reel/Frame 016312/0868 →
Continuity (3)
Continuation In Part 1041772100 · Apr 16, 2003
Provisional Application 6044167500 · Jan 21, 2003
Related Publication 20050135714A1 · Jun 23, 2005