Method for preparing high-capacity long-life rare earth and magnesium-based hydrogen storage alloy
A hydrogen storage alloy, long-life technology, applied in the direction of electrical components, circuits, battery electrodes, etc., can solve the difficulty of stably realizing the pilot-scale industrial preparation of rare earth magnesium-based hydrogen storage alloys, poor safety of positive pressure smelting equipment, and poor composition uniformity And other problems, to achieve the effect of precise control, shorten residence time, and reduce volatilization
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Embodiment 1
[0031] According to the designed composition La 0.63 Y 0.1 Nd 0.1 Mg 0.17 (Ni 0.90 Al 0.05 co 0.05 ) 3.6 , the preparation of La (purity > 99.5%, polished), Y (purity > 99.5%), Nd (purity > 99.5%, polished), nickel-magnesium master alloy (Mg content 30%, Ni+Mg total content > 99% ), Ni (purity > 99.5%, dried), Al (purity > 99.5%), Co (purity > 99.5%, dried) totaling 50kg, of which the Mg content is designed to exceed 5%. Put the raw metals into the crucible according to Al, Ni, Co, La, Nd, Y from bottom to top, and put the nickel-magnesium master alloy into the secondary feeding device. First evacuate to 5Pa, then bake and wash the furnace, fill it with argon to 0.05MPa, adjust the power to start melting, the temperature of the alloy melt is 1773K and keep it for 5 minutes, and then refine for 2 minutes. Reduce the melt temperature to 1573K through the "melt temperature online monitoring and control system", start the secondary feeding device to add nickel-magnesium ma...
Embodiment 2
[0035] Design composition is the same as embodiment 1
[0036] The ingredients are 500kg
[0037] The heat-treated alloy is pulverized by high-energy airflow crushing, rotary vibration screening, batching, and vacuum packaging to obtain rare earth magnesium-based hydrogen storage alloy powder products.
Embodiment 3
[0039] The design composition is La 0.7 Mg 0.3 (Ni 0.83 co 0.15 Al 0.02 ) 3.5
[0040] The ingredients are 50kg
[0041] Carry out heat treatment at 1123K for 10 hours
[0042] Then, it is pulverized by a mill and sieve machine and passed through a 150-mesh sieve to obtain rare earth magnesium-based hydrogen storage alloy powder.
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