IP Library Granted Patent US 9,573,213
Granted Patent B1
US 9,573,213 · App. 14/942,541 · Granted Feb 21, 2017

Apparatus for brazing radial bearings and related methods

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Quick Facts
Patent No.
US 9,573,213
App. No.
14/942,541
Granted
Feb 21, 2017
Kind
B1
Abstract

Apparatuses and methods are provided for manufacturing bearing assemblies. In accordance with one embodiment, a fixture is provided for use in brazing bearing elements to a bearing ring. The fixture comprises a substantially annular body and at least one or more force-applying mechanism associated with the annular body. The force applying mechanisms include a push rod disposed within a channel that is formed in the annular body, the push rod being displaceable within the channel. A biasing member is configured to bias the push rod in a radial direction relative to the annular body. In one embodiment, a plurality of force-applying mechanisms are circumferentially spaced about the substantially annular body. In one embodiment, the push rods extend radially inwardly from a peripheral surface of the body, while in another embodiment the push rods extend radially outwardly from peripheral surface of the body.

Claims (22)

1. A method of a bearing assembly, the method comprising:

providing a bearing assembly, the bearing assembly including a bearing ring and a plurality of bearing elements each being positioned within an associated pocket of a plurality of pockets formed in the bearing ring;

individually and selectively deploying a plurality of force-applying mechanisms to apply force to the plurality of bearing elements;

brazing at least one of the plurality of bearing elements to the bearing ring while maintaining the applied force to the plurality of bearing elements.

2. The method according to claim 1 , applying force to the plurality of bearing elements includes positioning the bearing assembly adjacent a fixture, the fixture comprising a substantially annular ring and the plurality of force-applying mechanisms.

3. The method according to claim 2 , wherein applying force to the plurality of bearing elements includes applying force to each bearing element with a push rod of an associated force-applying mechanism of the plurality of force-applying mechanisms.

4. The method according to claim 3 , wherein applying force to the plurality of bearing elements with the push rod of each associated force-applying mechanism includes selectively positioning each push rod from a retracted state to a deployed state.

5. The method according to claim 4 , further comprising removing the bearing assembly from the fixture subsequent the heating, wherein removing the bearing assembly includes selectively positioning at least some of the push rods of the force applying mechanisms from the deployed state to the retracted state.

6. The method according to claim 5 , wherein selectively positioning at least some of the push rods of the force applying mechanisms from a deployed state to the retracted state further includes maintaining the at least some push rods in the retracted state against a biasing force.

7. The method according to claim 5 , wherein selectively positioning at least some of the push rods of the force applying mechanisms from the deployed state to the retracted state further includes displacing each of the at least some of the push rods in a first direction along a defined axis.

8. The method according to claim 7 , further comprising rotating each the at least some of the push rods about their respective defined axes subsequent to displacing the at least some of the push rods in the first direction.

9. The method according to claim 3 , wherein applying force to the plurality of bearing elements with a push rod of an associated force-applying mechanism comprises compressing a biasing a member.

10. The method according to claim 3 , wherein applying force to each of the plurality of bearing elements with a push rod of each associated force-applying mechanism includes contacting each of the plurality elements with arcuate surface of each associated push rod, respectively.

11. The method according to claim 2 , wherein providing a bearing assembly includes providing the plurality of pockets in an inner radial surface of the bearing ring.

12. The method according to claim 11 , wherein applying force to the plurality of bearing elements includes applying the force in a direction radially outward from an outer peripheral surface of the substantially annular ring.

13. The method according to claim 2 , wherein providing the bearing assembly includes providing the plurality of pockets in an outer peripheral surface of the bearing ring.

14. The method according to claim 13 , wherein applying force to the plurality of bearing elements includes applying the force in a direction radially inward from an inner radial surface of the substantially annular ring.

15. The method according to claim 2 , wherein providing the bearing assembly further includes providing each the plurality of bearing elements with a polycrystalline diamond table bonded to a substrate.

16. The method according to claim 15 , further comprising providing at least one of the plurality of bearing elements with a diamond table having at least a portion of a catalyst material removed from the diamond table.

17. The method according to claim 2 , wherein heating the bearing assembly includes induction heating the bearing ring.

18. The method according to claim 1 , wherein brazing at least one of the plurality of bearing elements to the bearing ring includes causing a braze material to flow between at least one of the plurality of bearing elements and the bearing ring.

19. The method according to claim 18 , wherein brazing at least one of the plurality of bearing elements to the bearing ring includes causing braze material to flow between each of the plurality of bearing elements and the bearing ring.

Assignments (5)
SECURITY INTEREST Recorded Jul 18, 2025
From: US SYNTHETIC CORPORATION
To: KEYBANK NATIONAL ASSOCIATION
Reel/Frame 074973/0089 →
RELEASE OF SECURITY INTEREST IN PATENTS Recorded Jul 17, 2025
From: JPMORGAN CHASE BANK, N.A.
To: CHAMPIONX LLC; APERGY ESP SYSTEMS, LLC; APERGY BMCS ACQUISITION CORP; HARBISON-FISCHER, INC.; NORRIS RODS, INC.,; NORRIS RODS, INC.,; NORRISEAL-WELLMARK, INC.; PCS FERGUSON, INC.; QUARTZDYNE, INC.; US SYNTHETIC CORPORATION
Reel/Frame 072004/0019 →
RELEASE OF SECURITY INTEREST Recorded Jun 7, 2022
From: BANK OF AMERICA, N.A.
To: ACE DOWNHOLE, LLC; HARBISON-FISCHER, INC.; NORRIS RODS, INC.; PCS FERGUSON, INC.; QUARTZDYNE, INC.; SPIRIT GLOBAL ENERGY SOLUTIONS, INC.; THETA OILFIELD SERVICES, INC.; APERGY BMCS ACQUISITION CORP.; NORRISEAL-WELLMARK, INC.; US SYNTHETIC CORPORATION; WINDROCK, INC.
Reel/Frame 060305/0001 →
SECURITY INTEREST Recorded Jun 5, 2020
From: ACE DOWNHOLE, LLC; APERGY BMCS ACQUISITION CORP.; HARBISON-FISCHER, INC.; NORRIS RODS, INC.; NORRISEAL-WELLMARK, INC.; PCS FERGUSON, INC.; QUARTZDYNE, INC.; SPIRIT GLOBAL ENERGY SOLUTIONS, INC.; THETA OILFIELD SERVICES, INC.; US SYNTHETIC CORPORATION; WINDROCK, INC.
To: BANK OF AMERICA, N.A.
Reel/Frame 053790/0001 →
SECURITY AGREEMENT Recorded May 9, 2018
From: APERGY (DELAWARE) FORMATION, INC.; APERGY BMCS ACQUISITION CORP.; APERGY ENERGY AUTOMATION, LLC; HARBISON-FISCHER, INC.; NORRISEAL-WELLMARK, INC.; PCS FERGUSON, INC.; QUARTZDYNE, INC.; SPIRIT GLOBAL ENERGY SOLUTIONS, INC.; US SYNTHETIC CORPORATION; WINDROCK, INC.
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 046117/0015 →