Rare earth magnet
There is provided a rare earth magnet with excellent Br and HcJ values. The rare earth magnet according to a preferred embodiment of the invention is characterized by being composed mainly of R (where R is at least one element selected from among rare earth elements including Y), B, Al, Cu, Zr, Co, O, C and Fe, wherein the content of each element is R: 25-34 wt %, B: 0.85-0.98 wt %, Al: 0.03-0.3 wt %, Cu: 0.01-0.15 wt %, Zr: 0.03-0.25 wt %, Co: ≦3 wt % (but not 0 wt %), O: ≦0.2 wt %, C: 0.03-0.15 wt % and Fe: remainder.
1. A rare earth including a main phase magnet characterized by being composed mainly of R (where R is at least one element selected from among rare earth elements including Y, and R includes Nd and Dy as an essential element), B, Al, Cu, Zr, Co, O, C and Fe,
wherein the content of each element is as follows:
R: 25-34 wt % (where Dy content is 0.1-8 wt %)
B: 0.85-0.98 wt %
Al: 0.03-0.3 wt %
Cu: 0.03-0.11 wt %
Zr: 0.03-0.25 wt %
Co: ≦3 wt % (but not 0 wt %)
O: 0.03-0.1 wt %
C: 0.03-0.15 wt %
Fe: remainder.
2. A rare earth including a main phase magnet characterized by being composed mainly of R (where R is at least one element selected from among rare earth elements including Y, and R includes Nd and Dy as an essential component), B, Al, Cu, Zr, Co, O, C, Fe and Ga,
wherein the content of each element is as follows:
R: 25-34 wt % (where Dy content is 0.1-8 wt %)
B: 0.85-0.98 wt %
Al: 0.03-0.3 wt %
Cu: 0.03-0.11 wt %
Zr: 0.03-0.25 wt %
Co: ≦3 wt % (but not 0 wt %)
O: 0.03-0.1 wt %
C: 0.03-0.15 wt %
Ga: ≦0.2 wt % (but not 0 wt %)
Fe: remainder.
3. A rare earth magnet according to claim 1 , having a core-shell structure wherein the area near the outer periphery of the main phase is a phase with a high Dy content while the interior is a phase with a low Dy content.
4. A rare earth magnet according to claim 2 , having a core-shell structure wherein the area near the outer periphery of the main phase is a phase with a high Dy content while the interior is a phase with a low Dy content.