Preparation method of high-performance room temperature complex-phase magnetic cooling material
A magnetic refrigeration material and high-performance technology, applied in the field of preparation of high-performance room temperature multi-phase magnetic refrigeration materials, can solve the problems of limited magnetic refrigeration capacity, achieve low hysteresis loss, high corrosion resistance, high magnetic The effect of entropy change
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Embodiment 1
[0024] 1) Amorphous Fe 73.5 Cu 1 Nb 3 Si 13.5 B 9 The alloy is prepared by the melt rapid quenching process, the rapid quenching speed is 45m / s, and the ball milling process is used to make powder after mechanical crushing, and the average particle diameter is 1μm;
[0025] 2) Crystalline LaFe 11.5 Si 1.5 The alloy is prepared by the quick-setting stripping process, the line speed of the copper roller is 2m / s, mechanically crushed after heat treatment, and then powdered by ball milling process, with an average particle diameter of 1μm;
[0026] 3) The amorphous Fe 73.5 Cu 1 Nb 3 Si 13.5 B 9 Alloy powder and crystal LaFe 11.5 Si 1.5 The alloy powder is uniformly mixed in a volume ratio of 9:1 under vacuum;
[0027] 4) The uniformly mixed powder is pressed into shape by a pressure of 300MPa under vacuum;
[0028] 5) The compact is sintered by spark plasma sintering process under vacuum to form amorphous Fe 73.5 Cu 1 Nb 3 Si 13.5 B 9 / Crystal LaFe 11.5 Si 1.5...
Embodiment 2
[0031] 1) Amorphous Fe56 co 7 Ni 7 Zr 8 Nb 2 Mo 5 B 15 The alloy is prepared by the melt rapid quenching process, the rapid quenching speed is 30m / s, after mechanical crushing, the ball milling process is used to make powder, and the average particle diameter is 20μm;
[0032] 2) Crystal Dy 0.9 Ho 0.1 co 2 The alloy is prepared by melting and casting process, mechanically crushed after heat treatment, and then powdered by ball milling process, with an average particle diameter of 20 μm;
[0033] 3) The amorphous Fe 56 co 7 Ni 7 Zr 8 Nb 2 Mo 5 B 15 Alloy powder and crystal Dy 0.9 Ho 0.1 co 2 The alloy powder is uniformly mixed in a volume ratio of 3:1 under an Ar protective atmosphere;
[0034] 4) The uniformly mixed powder is pressed into shape by a pressure of 200MPa under vacuum;
[0035] 5) The compact is sintered by spark plasma sintering process under vacuum to form amorphous Fe 56 co 7 Ni 7 Zr 8 Nb 2 Mo 5 B 15 / Crystal Dy 0.9 Ho 0.1 co 2 Fo...
Embodiment 3
[0038] 1) Amorphous Fe 75 Si 13 B 12 The alloy is prepared by the melt rapid quenching process, the rapid quenching speed is 35m / s, and the ball milling process is used to make powder after mechanical crushing, and the average particle diameter is 20μm;
[0039] 2) Crystalline Gd 5 Si 2 Ge 2 The alloy is prepared by melt rapid quenching process, the rapid quenching speed is 25m / s, mechanically crushed after heat treatment, and then powdered by ball milling process, with an average particle diameter of 1 μm;
[0040] 3) The amorphous Fe 75 Si 13 B 12 Alloy powder and crystal Gd 5 Si 2 Ge 2 The alloy powder is uniformly mixed in a volume ratio of 1:1 under an Ar protective atmosphere;
[0041] 4) The uniformly mixed powder is pressed into shape by a pressure of 100 MPa under an Ar protective atmosphere;
[0042] 5) The compact is sintered by spark plasma sintering process under vacuum to form amorphous Fe 75 Si 13 B 12 / Crystal Gd 5 Si 2 Ge 2 For the multi-phas...
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