IP Library › Granted Patent US 11,614,078
Granted Patent B2
US 11,614,078 · App. 17/079,616 · Granted Mar 28, 2023

Spherical journal bearing for a wind turbine drivetrain

Inventor: Luke Frank Moughon (Simpsonville, SC)
Assignee: General Electric Company
F03D80/70F16C33/103F16C35/02F05B2240/53F16C2360/31
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,614,078
App. No.
17/079,616
Granted
Mar 28, 2023
Kind
B2
Abstract

A hydrodynamic journal bearing assembly for a drivetrain of a wind turbine includes a shaft and a semispherical convex surface provided on an outer surface of the shaft, the convex surface extending circumferentially around the shaft and having a convex cross-sectional profile oriented along a longitudinal axis of the shaft. A bearing housing is arranged circumferentially around the semispherical convex surface, the bearing housing having s a reservoir in a bottom portion thereof for a bearing fluid. A static semispherical concave bearing surface in the bearing housing defines a bearing interface with the semispherical convex surface on the shaft, wherein a layer of the fluid is provided in the bearing interface as the shaft and rotates through the reservoir.

Claims (30)

1. A hydrodynamic bearing assembly for a drivetrain of a wind turbine, comprising:

a shaft;

a semispherical convex surface provided on an outer surface of the shaft so as to rotate with the shaft, the semispherical convex surface extending circumferentially around the shaft and having a convex cross-sectional profile oriented along a longitudinal axis of the shaft;

a bearing housing arranged circumferentially around the semispherical convex surface, the bearing housing comprising a reservoir in a bottom portion thereof for a bearing fluid;

a static semispherical concave bearing surface in the bearing housing that defines a bearing interface with the rotatable semi spherical convex surface on the shaft; wherein a layer of the fluid is provided in the bearing interface as the shaft and rotates through the reservoir;

wherein the static semispherical concave bearing surface comprises a plurality of static bearing pads mounted in the bearing housing between a cover member and an axial stop, the bearing members disposed circumferentially outboard of the semispherical convex surface; and

wherein the bearing pads comprise inclined axial end faces, and the cover member and the axial stop comprise inclined engagement surfaces that contact the inclined axial end faces.

2. The hydrodynamic bearing assembly as in claim 1 , wherein the semispherical convex surface provided on the outer surface of the shaft is continuous around the shaft.

3. The hydrodynamic bearing assembly as in claim 2 , wherein the semispherical convex surface comprises a ring-shaped journal fitted onto the outer surface of the shaft, the semispherical surface formed on the journal.

4. The hydrodynamic bearing assembly as in claim 3 , wherein the journal is a continuous member having a press-fitted interference fit with the outer surface of the shaft.

5. The hydrodynamic bearing assembly as in claim 1 , wherein the bearing housing comprises a first member extending circumferentially around the shaft and comprising a flange at a first axial end thereof, the bearing pads mounted within a cavity defined by the first member, the flange providing the axial stop for the bearing pads.

6. The hydrodynamic bearing assembly as in claim 5 , wherein the bearing housing comprises a cover member mounted to a second axial end of the first member, the reservoir defined by a portion of the cavity sealed by the cover member.

7. The hydrodynamic bearing assembly as in claim 6 , further comprising a spacer member between each of the bearing pads and the first member.

8. The hydrodynamic bearing assembly as in claim 7 , wherein the bearing pads are sandwiched in position between the cover member and the axial stop, the cover member bolted to the first member.

9. A wind turbine drivetrain assembly, comprising:

a rotor;

a main shaft rotatably coupled to the rotor;

a bearing assembly supporting the main shaft, the bearing assembly comprising:

a semispherical convex surface provided on an outer surface of the shaft so as to rotate with the shaft, the semispherical convex surface extending circumferentially around the shaft and having a convex cross-sectional profile oriented along a longitudinal axis of the shaft;

a bearing housing arranged circumferentially around the semispherical convex surface, the bearing housing comprising a reservoir in a bottom portion thereof for a bearing fluid; and

a static semispherical concave bearing surface in the bearing housing that defines a bearing interface with the semispherical convex surface on the shaft, wherein a layer of the fluid is provided in the bearing interface as the shaft and rotates through the reservoir;

wherein the static semispherical concave bearing surface comprises a plurality of static bearing pads mounted in the bearing housing and disposed circumferentially outboard of the semispherical convex surface; and

wherein the bearing pads are sandwiched in position between a cover member and an axial stop of the bearing housing, the bearing pads comprising inclined axial end faces and the cover member and the axial stop comprising inclined engagement surfaces that contact the inclined axial end faces.

10. The wind turbine drivetrain assembly as in claim 9 , wherein the semispherical convex surface provided on the outer surface of the shaft is continuous around the shaft.

11. The wind turbine drivetrain assembly as in claim 10 , wherein the semi spherical convex surface comprises a ring-shaped journal fitted onto the outer surface of the shaft, the semispherical surface formed on the journal.

12. The wind turbine drivetrain assembly as in claim 11 , wherein the journal is a continuous member having a press-fitted interference fit with the outer surface of the shaft.

13. The wind turbine drivetrain assembly as in claim 9 , wherein the bearing housing comprises a first member extending circumferentially around the shaft and comprising a flange at a first axial end thereof, the bearing pads mounted within a cavity defined by the first member, the flange providing the axial stop for the bearing pads.

14. The wind turbine drivetrain assembly as in claim 13 , wherein the bearing housing comprises a cover member mounted to a second axial end of the first member, the reservoir defined by a portion of the cavity sealed by the cover member.

15. The wind turbine drivetrain assembly as in claim 14 , further comprising a spacer member between each of the bearing pads and the first member.

16. A wind turbine, comprising the drivetrain assembly as in claim 9 .

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2023
From: GENERAL ELECTRIC COMPANY
To: GE INFRASTRUCTURE TECHNOLOGY LLC
Reel/Frame 065727/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 26, 2020
From: MOUGHON, LUKE FRANK
To: GENERAL ELECTRIC COMPANY
Reel/Frame 054161/0562 →
Continuity (1)
Related Publication 20220128043A1 · Apr 28, 2022