IP Library Granted Patent US 7,608,296
Granted Patent B2
US 7,608,296 · App. 11/374,667 · Granted Oct 27, 2009

Anvil for friction stir welding high temperature materials

Assignees: Brigham Young University; SII MegaDiamond, Inc.; Advanced Metal Products
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Quick Facts
Patent No.
US 7,608,296
App. No.
11/374,667
Granted
Oct 27, 2009
Kind
B2
Abstract

A friction stir welding anvil and method of producing a friction stir welding anvil that precludes diffusion or mechanical bonding of the anvil to the work pieces are provided. The alternatives for producing such an anvil comprise coating the anvil with diffusion barriers such as oxides, nitrides, intermetallics, and/or refractory metals; manufacturing an anvil either completely or partially from the same; or placing a coating of such materials in the form of a thin sheet or a powder between the anvil and the work pieces. The anvil disclosed herein exhibits high strength and hardness even at elevated temperatures, such as those greater than 800° C., so as to prevent the anvil from mechanically or diffusion bonding to the work pieces and so as to minimize, or eliminate altogether, anvil deformation.

Claims (8)

1. A method for manufacturing a friction stir welding anvil that is capable of friction stir welding high temperature materials, the method comprising the steps of:

providing an anvil core that is configured to support materials being welded together by a friction stir welding process; and

coating a chemically inert material onto the at least a portion of the core using a powder coating process, wherein the chemically inert material is in a powder form.

2. A method as recited in claim 1 , wherein the step of coating the chemically inert material on at least a portion of the core further comprises the step of using a metal and oxygen as the chemically inert material.

3. A method as recited in claim 1 , wherein the step of coating the chemically inert material on at least a portion of the core further comprises the step of using a metal and nitrogen as the chemically inert material.

4. A method as recited in claim 1 , wherein the step of coating the chemically inert material on at least a portion of the core further comprises the step of using a metal and carbon as the chemically inert material.

5. A method as recited in claim 1 , wherein the step of coating the chemically inert material on at least a portion of the core further comprises the step of using a metal and silicon as the chemically inert material.

6. A method as recited in claim 1 , wherein the method further comprises the step of selecting the core from the group of core shapes consisting of a flat plate and a rotating wheel.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 25, 2019
From: MEGASTIR TECHNOLOGIES LLC
To: MAZAK CORPORATION
Reel/Frame 049091/0426 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2010
From: SII MEGADIAMOND, INC.
To: MEGASTIR TECHNOLOGIES LLC
Reel/Frame 024953/0381 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2010
From: ADVANCED METAL PRODUCTS, INC.
To: MEGASTIR TECHNOLOGIES LLC
Reel/Frame 024953/0430 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2007
From: NELSON, TRACY W.; SORENSEN, CARL D.
To: BRIGHAM YOUNG UNIVERSITY
Reel/Frame 019554/0375 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 14, 2007
From: PACKER, SCOTT M.
To: SII MEGADIAMOND, INC.; ADVANCED METAL PRODUCTS, INC.
Reel/Frame 019429/0615 →
Continuity (4)
Division 1084320800 · May 11, 2004
Continuation 1017127200 · Jun 11, 2002
Provisional Application 6029773800 · Jun 12, 2001
Related Publication 20060208034A1 · Sep 21, 2006