Preparation process of a nanocrystalline NdFeB magnet
A preparation process, NdFeB technology, applied in the direction of magnetic objects, inductance/transformer/magnet manufacturing, magnetic materials, etc., can solve the problems of low utilization rate and less utilization, so as to reduce the cost of magnets, increase coercive force, and avoid The effect of wasting rare earth resources
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Embodiment 1
[0033] A preparation process for a nanocrystalline NdFeB magnet, the preparation process comprising the following preparation steps:
[0034] 1) Mix the raw material HRE 100-y-x LRE x m y Placed in a smelting furnace, its mass composition is 95.8% La (HRE) and 4% Al (M), and the atomic percentage is La 82 al 18 , evacuated to 3×10 -3 Pa, then clean the furnace cavity with high-purity argon, then use high-purity argon to pressurize to 0.08MPa, make the mixed raw materials undergo argon arc melting under the protection of argon, and melt for 1 minute each time, turn over after melting, and repeat 8 times, cooling to obtain a master alloy with uniform composition;
[0035] 2) Break the master alloy obtained in step 1), and put it into a quartz tube with a small hole at the lower end in 8×10 -4 Under the condition of Pa, carry out vacuum stripping, fill the pressure difference of 0.05MPa, use high-frequency induction heating to melt the master alloy fragments and blow them, ...
Embodiment 2
[0040] A preparation process for a nanocrystalline NdFeB magnet, the preparation process comprising the following preparation steps:
[0041] 1) Mix the raw material HRE 100-y-x LRE x m y Placed in a smelting furnace, its mass composition is 81% Ce (HRE), 11% Y (HRE), 0.4% Pr (LRE), 0.9% Dy (LRE) and 6.7% Cu (M), vacuumize to 7 ×10 -3 Pa, then clean the furnace chamber with high-purity argon, then use high-purity argon to pressurize to 0.13MPa, make the mixed raw materials undergo argon arc melting under the protection of argon, each melting for 3 minutes, turn over after melting, repeat 3 times, cooling to obtain a master alloy with uniform composition;
[0042] 2) Break the master alloy obtained in step 1), and put it into a quartz tube with a small hole at the lower end of 1.3×10 -4 Under the condition of Pa, vacuumize the strip, fill it with a pressure difference of 0.1MPa, use high-frequency induction heating to melt the master alloy fragments and start blowing, and ...
Embodiment 3
[0047] A preparation process for a nanocrystalline NdFeB magnet, the preparation process comprising the following preparation steps:
[0048] 1) Mix the raw material HRE 100-y-x LRE x m y Placed in a smelting furnace, its mass composition is 13.5% La (HRE), 21% Ce (HRE), 42% Nd (LRE), 11% Y (LRE), 8.5% Ga (M) and 4% Al ( M), vacuumize to 5×10 -3 Pa, then clean the furnace chamber with high-purity argon, then use high-purity argon to pressurize to 0.1MPa, make the mixed raw materials carry out argon arc melting under the protection of argon, smelting for 3 minutes each time, turn over after melting, repeat 5 times, cooling to obtain a master alloy with uniform composition;
[0049] 2) Break the master alloy obtained in step 1), and put it into a quartz tube with a small hole at the lower end at 1×10 -4 Under the condition of Pa, vacuumize the strip, fill it with a pressure difference of 0.09MPa, use high-frequency induction heating to melt the master alloy fragments and bl...
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