Multi-phase magnetic component and method of forming
A magnetic component including first and second regions, and a method of varying the magnetization values in different regions of the magnetic component are disclosed. The first and the second regions are characterized by a nitrogen content that is different from each other. At least one of the first region and the second region is partially-magnetic and has a nitrogen content in a range from about 0.1 weight % to about 0.4 weight % of that region. A concentration of carbon, if present, of both the first and second regions is less than about 0.05 weight % of the respective regions.
1. A magnetic component, comprising:
a first region, a second region, and a third region, wherein
the first region comprises a magnetic phase, the second region comprises a saturation magnetization in a region from about 0.01 Tesla to about 1.5 Tesla, and the third region comprises a non-magnetic phase;
the first region has a nitrogen content less than 0.1 weight % of the first region, the second region has a nitrogen content in a range from about 0.1 weight % to about 0.4 weight % of the second region, and the third region has a nitrogen content greater than 0.4 weight % of the third region; and
a concentration of carbon in the first, second, and third regions is less than 0.05 weight % of the respective regions.
2. The magnetic component of claim 1 , wherein the first region, the second region, and the third region comprise an iron-based alloy.
3. The magnetic component of claim 2 , wherein the iron-based alloy further comprises chromium, manganese, or a combination thereof.
4. The magnetic component of claim 1 , wherein the magnetic component is in a monolithic form.
5. An electric machine, comprising the magnetic component of claim 1 .