High-remanence low-coercivity permanent magnetic material and preparation method thereof
A low coercive force, permanent magnetic material technology, applied in the direction of magnetic materials, magnetic objects, electrical components, etc., can solve the problem of high coercive force of permanent magnetic materials
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[0020] Take pure Nd, pure Fe, B-Fe (wherein the atomic percentage of B is 19%), Cu, Al and Si according to the following proportions:
[0021] 1. 4.2at% Nd 73.4at% Fe 18.7at% B 0.8at% Cu 1.5at% Al 1.4at% Si;
[0022] 2. 4.2at% Nd 74at% Fe 18.7at% B 0.6at% Cu 1.3at% Al 1.2at% Si;
[0023] 3. 4.2at% Nd 74.6at% Fe 18.7at% B 0.4at% Cu 1.1at% Al 1.0at% Si;
[0024] The induction melting furnace is used for melting, and the melting vacuum is 5×10 -2 Pa, and filled with Ar gas to a vacuum of 0.06Mpa in the furnace as a protective gas to prevent oxidation of the alloy ingot. After smelting, it is poured on a pouring mold with cold water, and the pouring time is controlled at 2-3 minutes, wherein the embodiment 1 and 2 are 2.5 minutes, and the embodiment 3 is 3 minutes. After cooling for 1 hour, it will be released normally. At this time, the main phase structure in the alloy ingot is Nd 2 Fe 14 B phase, α-Fe phase and Fe 3 Phase B, due to the control of the addition of Cu, Al, S...
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