IP Library Granted Patent US 10,229,777
Granted Patent B2
US 10,229,777 · App. 15/078,516 · Granted Mar 12, 2019

Graded magnetic component and method of forming

Inventors: Min Zou (Niskayuna, NY); Francis Johnson (Clifton Park, NY); Patel Bhageerath Reddy (Niskayuna, NY); James Pellegrino Alexander (Ballston Lake, NY); Ayman Mohamed Fawzi EL-Refaie (Niskayuna, NY); Wanming Zhang (Niskayuna, NY)
Assignee: General Electric Company
H01F7/021B05D7/14C22C38/04C22C38/30C22C38/38C23C8/04C23C8/26H01F1/147H01F41/0253H02K1/02H02K1/246H02K19/02C21D1/26C21D2221/00
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Quick Facts
Patent No.
US 10,229,777
App. No.
15/078,516
Granted
Mar 12, 2019
Kind
B2
Abstract

A magnetic component including at least one region is disclosed. The at least one region includes nitrogen and a concentration of the nitrogen in the at least one region is graded across a dimension of the at least one region. Further, a saturation magnetization in the at least one region is graded across the dimension of the at least one region. Further, a method of varying the magnetization values in at least one region of the magnetic component is disclosed.

Claims (8)

1. A method for varying magnetization values in at least one region of a magnetic component, comprising:

disposing a coating on at least a portion of the magnetic component to form a mask, wherein the coating comprises a chemical composition that discourages nitrogen diffusion into the magnetic component; and

heat-treating the magnetic component in a nitrogen-rich atmosphere at a temperature greater than 700° C. to form the at least one region in the magnetic component, wherein the at least one region is characterized by a gradient in nitrogen content and a gradient in saturation magnetization across a dimension of the at least one region, wherein the gradient in nitrogen content in the at least one region is achieved by varying a coating thickness.

2. The method of claim 1 , wherein the coating thickness is varied by controlling a deposition parameter used for disposing the coating.

3. The method of claim 1 , wherein the variation in the coating thickness in the at least one region is achieved by selectively removing portions of the coating before the step of heat-treating.

4. The method of claim 1 , wherein a concentration of carbon in the at least one region is controlled to be less than about 0.05 weight % of the at least one region.

5. The method of claim 1 , further comprising forming a first region and a second region in the magnetic component wherein the at least one region is interposed between the first region and the second region, and wherein the first region has a saturation magnetization greater than the saturation magnetization of the at least one region, and the at least one region has the saturation magnetization greater than a saturation magnetization of the second region.

6. The method of claim 5 , wherein the first region has a nitrogen content less than the nitrogen content of the at least one region, and the at least one region has the nitrogen content less than a nitrogen content of the second region.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jul 6, 2016
From: GENERAL ELECTRIC GLOBAL RESEARCH
To: ENERGY, UNITED STATES DEPARTMENT OF
Reel/Frame 039278/0078 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2016
From: ZOU, MIN; JOHNSON, FRANCIS; REDDY, PATEL BHAGEERATH; ALEXANDER, JAMES PELLEGRINO; EL-REFAIE, AYMAN MOHAMED FAWZI; ZHANG, WANMING
To: GENERAL ELECTRIC COMPANY
Reel/Frame 038084/0151 →
Continuity (2)
Continuation In Part 14068937 · Oct 31, 2013
Related Publication 20160203899A1 · Jul 14, 2016
Cited By (1)
US 12,347,593