IP Library Patent Application 19293562
Patent Application
App. No. 19/293,562

IRON NITRIDE PERMANENT MAGNET AND TECHNIQUE FOR FORMING IRON NITRIDE PERMANENT MAGNET

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 None
App. No.
19/293,562
Abstract

A permanent magnet may include a Fe 16 N 2 phase constitution. In some examples, the permanent magnet may be formed by a technique that includes straining an iron wire or sheet comprising at least one iron crystal in a direction substantially parallel to a <001> crystal axis of the iron crystal; nitridizing the iron wire or sheet to form a nitridized iron wire or sheet; annealing the nitridized iron wire or sheet to form a Fe 16 N 2 phase constitution in at least a portion of the nitridized iron wire or sheet; and pressing the nitridized iron wires and sheets to form bulk permanent magnet.

Claims (22)

1 . A permanent magnet comprising a Fe 16 N 2 phase constitution, wherein the Fe 16 N 2 phase constitution is throughout the thickness of the magnet, wherein the permanent magnet is thicker than 10 millimeter in its smallest dimension.

2 . The permanent magnet of claim 1 , further comprising at least one magnetic domain wall pinning site.

3 . The permanent magnet of claim 1 , further comprising a phase stabilization dopant element comprising at least one of Ti, Co, Ta, Ni, Mn, Zr, Mo, Nb, Nd, Ga, Ge, C, B, Si, P, Cr, Cu, or Zn.

4 . The permanent magnet of claim 1 , wherein the permanent magnet further comprises a Fe 8 N phase constitution.

5 . The permanent magnet of claim 1 , wherein the permanent magnet consists essentially of the Fe 16 N 2 phase constitution.

6 . A permanent magnet comprising a Fe 16 N 2 phase constitution, wherein the Fe 16 N 2 phase constitution is homogeneous throughout the thickness of the magnet, wherein the permanent magnet is thicker than 0.1 millimeter in its smallest dimension.

7 . The permanent magnet of claim 6 , further comprising at least one magnetic domain wall pinning site.

8 . The permanent magnet of claim 6 , further comprising a phase stabilization dopant element comprising at least one of Ti, Co, Ta, Ni, Mn, Zr, Mo, Nb, Nd, Ga, Ge, C, B, Si, P, Cr, Cu, or Zn.

9 . The permanent magnet of claim 6 , wherein the permanent magnet consists essentially of the Fe 16 N 2 phase constitution.

10 . The permanent magnet of claim 6 , wherein the permanent magnet is thicker than 1 millimeter in its smallest dimension.

11 . The permanent magnet of claim 6 , wherein the permanent magnet is thicker than 10 millimeters in its smallest dimension.

12 . A method of forming a permanent magnet comprising the steps of:

nitridizing an iron wire or sheet comprising at least one iron crystal, to form a nitridized iron wire or sheet;

annealing the nitridized iron wire or sheet to form a Fe 16 N 2 phase constitution in at least a portion of the nitridized iron wire or sheet; and

compressing a plurality of nitridized iron wires or sheets to form the permanent magnet.

13 . The method of claim 12 , wherein during the nitridizing the iron wire or sheet step:

straining the iron wire or sheet in a direction parallel to a <001> crystal axis of the at least one iron crystal to distort a unit cell structure of the at least one iron crystal and form a distorted unit cell structure having an increased length along the <001> crystal axis.

14 . The method of claim 12 , wherein the permanent magnet comprises at least one magnetic domain wall pinning site.

15 . The method of claim 12 , wherein the permanent magnet comprises a phase stabilization dopant element comprising at least one of Ti, Co, Ta, Ni, Mn, Zr, Mo, Nb, Nd, Ga, Ge, C, B, Si, P, Cr, Cu, or Zn.

16 . The method of claim 12 , wherein the permanent magnet consists essentially of the Fe 16 N 2 phase constitution.

17 . The method of claim 12 , wherein the permanent magnet is thicker than 1 millimeter in its smallest dimension.

18 . The method of claim 12 , wherein the permanent magnet is thicker than 10 millimeters in its smallest dimension.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 14, 2025
From: WANG, JIAN-PING; HE, SHIHAI; JIANG, YANFENG
To: REGENTS OF THE UNIVERSITY OF MINNESOTA
Reel/Frame 072906/0020 →