IP Library Granted Patent US 8,245,661
Granted Patent B2
US 8,245,661 · App. 11/595,056 · Granted Aug 21, 2012

Magnetic separation of devitrified particles from corrosion-resistant iron-based amorphous metal powders

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Quick Facts
Patent No.
US 8,245,661
App. No.
11/595,056
Granted
Aug 21, 2012
Kind
B2
Abstract

A system for coating a surface comprising providing a source of iron-based amorphous metal, the iron-based amorphous metal including devitrified ferrite; directing the iron-based amorphous metal toward the surface by a spray for coating the surface; and separating at least a portion of the devitrified ferrite from the spray before the spray reaches the surface. Also an apparatus for coating a surface comprising a source of iron-based amorphous metal, the iron-based amorphous metal including devitrified ferrite; an application system for directing the iron-based amorphous metal toward the surface by a spray for coating the surface, and a system for separating at least a portion of the devitrified ferrite from the spray before the spray reaches the surface.

Claims (30)

1. An apparatus for applying a coating to a surface of a structure, comprising:

an iron-based amorphous metal material that will be applied as the coating to the surface,

devitrified ferrite with said iron-based amorphous metal material which is considered an undesirable devitrified ferrite,

a source unit of said iron-based amorphous metal material including said undesirable devitrified ferrite;

an application system for directing said iron-based amorphous metal material including said undesirable devitrified ferrite located between said source unit and the surface of the structure,

a spray stream of said iron-based amorphous metal material including said undesirable devitrified ferrite located between said application system and the structure, wherein said spray stream is used for coating the surface of the structure with said iron-based amorphous metal material; and

a devitrified ferrite removal system operatively connected to said spray stream and located between said application system and the structure, said devitrified ferrite removal system including

a magnetic field system for producing a magnetic field on said iron-based amorphous metal material in said spray stream between said application system and the structure,

a diverted portion of said undesirable devitrified ferrite separated from said iron-based amorphous metal material in said spray stream,

a collector positioned to receive said diverted portion of said undesirable devitrified ferrite that is separated from said iron-based amorphous metal material in said spray stream removing said diverted portion of said undesirable devitrified ferrite from said iron-based amorphous metal material in said spray stream, and

a remaining portion of said spray stream with said diverted portion of said undesirable devitrified ferrite removed, wherein said remaining portion of said spray stream with said diverted portion of said undesirable devitrified ferrite removed is directed to the surface of the structure thereby providing the coating of said iron-based amorphous metal material on the surface of the structure wherein the coating is made of said iron-based amorphous metal with said diverted portion of said undesirable devitrified ferrite removed.

2. The apparatus for applying coating to a surface of claim 1 wherein said devitrified ferrite removal system comprises a magnet system for creating said magnetic field for magnetically separating said diverted portion of said undesirable devitrified ferrite from said iron-based amorphous metal material.

3. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises a natural magnet for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

4. The apparatus for applying coating to a surface of claim 1 wherein said devitrified ferrite removal system includes an electro-magnet for creating said magnetic field for magnetically separating said diverted portion of said undesirable devitrified ferrite from said iron-based amorphous metal material in said spray stream before said spray stream reaches the surface.

5. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises a bar magnet for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

6. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises at least one bar magnet in a rotating drum for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

7. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises parallel troughs with a strong magnetic field for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

8. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises magnetic-field assisted centrifuge for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

9. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises a magnetic-field assisted sieving and filtration system for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

10. The apparatus for coating a surface of claim 1 wherein said system for separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface comprises a magnetic-field assisted settling system for magnetically separating at least a portion of said devitrified ferrite from said spray before said spray reaches the surface.

11. The apparatus for applying coating to a surface of claim 1 wherein said iron-based amorphous metal material comprises iron-based amorphous metal powder.

12. The apparatus for applying coating to a surface of claim 1 wherein said iron-based amorphous metal material comprises gas-atomized iron-based amorphous metal powders.

13. The apparatus for applying coating to a surface of claim 1 wherein said devitrified ferrite removal system includes a rotating drum with a multiplicity of magnetic bars.

14. The apparatus for coating a surface of claim 1 wherein said system for directing said iron-based amorphous metal toward the surface by a spray comprises a high-velocity oxy-fuel sprayer.

15. The apparatus for coating a surface of claim 1 wherein said system for directing said iron-based amorphous metal toward the surface by a spray comprises a plasma sprayer.

16. The apparatus for coating a surface of claim 1 wherein said system for directing said iron-based amorphous metal toward the surface by a spray comprises a high-velocity air-sprayer.

17. The apparatus for coating a surface of claim 1 wherein said system for directing said iron-based amorphous metal toward the surface by a spray comprises a detonation gun.

18. The apparatus for coating a surface of claim 1 wherein said system for directing said iron-based amorphous metal toward the surface by a spray comprises a thermal sprayer.

19. The apparatus for coating a surface of claim 1 wherein said system for directing said iron-based amorphous metal toward the surface by a spray comprises a flame sprayer.

20. The apparatus for applying coating to a surface of claim 1 wherein said application system for directing said iron-based amorphous metal material including said undesirable devitrified ferrite comprises a cold sprayer.

Assignments (7)
CHANGE OF NAME Recorded May 17, 2018
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 046183/0802 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 6, 2016
From: YANG, NANCY
To: SANDIA CORPORATION
Reel/Frame 038208/0563 →
CONFIRMATORY LICENSE Recorded Oct 3, 2014
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 033878/0249 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 19, 2014
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 032478/0321 →
50% UNDIVIDED INTEREST Recorded Oct 4, 2007
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 020012/0178 →
CONFIRMATORY LICENSE Recorded Apr 13, 2007
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: ENERGY, U.S. DEPARTMENT OF
Reel/Frame 019163/0228 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2006
From: HAILEY, PHILLIP D.; DAY, SUMMER D.; FARMER, JOSEPH C.; DEVINE, JR., THOMAS M.
To: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
Reel/Frame 018593/0497 →