MAGNETIC WEDGE, ROTARY ELECTRIC MACHINE, AND METHOD FOR MANUFACTURING MAGNETIC WEDGE
A magnetic wedge has high electrical resistance and bending strength, a rotary electric machine employs the magnetic wedge, and a method is for manufacturing the magnetic wedge. The magnetic wedge includes Fe-based soft magnetic particles, which contain an element M that is more readily oxidized than Fe and are bound by an oxide phase including the element M.
1 . A magnetic wedge comprising:
a plurality of Fe-based soft magnetic particles,
wherein the plurality of Fe-based soft magnetic particles contains an element M that is more easily oxidized than Fe, and are bound to each other by an oxide phase containing the element M.
2 . The magnetic wedge according to claim 1 , wherein the element M is at least one selected from the group consisting of Al, Si, Cr, Zr and Hf.
3 . The magnetic wedge according to claim 2 , wherein the Fe-based soft magnetic particles are Fe—Al—Cr-based alloy particles.
4 . The magnetic wedge according to claim 1 , wherein an electrically insulating coating is provided on a surface thereof.
5 . A rotary electric machine using the magnetic wedge according to claim 1 .
6 . A method for manufacturing a magnetic wedge, the method comprising:
mixing Fe-based soft magnetic particles containing an element M that is more easily oxidized than Fe, and a binder to form a mixture;
pressure-molding the mixture into a molded body; and
heat-treating the molded body to form a consolidated body having a surface oxide phase of the Fe-based soft magnetic particles between the Fe-based soft magnetic particles, wherein the surface oxide phase binds the Fe-based soft magnetic particles.