Mg-Li-Zn alloy with flame resistance and processing technology thereof
A magnesium-lithium alloy and alloy technology, applied in the field of alloys, can solve problems such as the inability to meet the requirements of combustion resistance, and achieve the effects of simple smelting and processing methods, low high-temperature strength, and low production costs
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Embodiment 1
[0017] A Mg-Li-Zn magnesium-lithium alloy with combustion resistance when smelting at 710 degrees. In terms of weight percentage, the chemical composition of the alloy is: Li: 12.8wt.%, Zn: 4.6wt.%, Ca: 2.4wt.%, Mn: 0.2wt.%, Hf: 0.2wt.%, Y: 0.2wt .%, Nd: 0.1wt.%, Eu: 0.2wt.%, and the balance is magnesium. The preparation method of the alloy: add the above-mentioned raw materials into the induction furnace under the atmospheric environment, and use a silicon carbide crucible. Induction heating to 710 degrees to form an alloy solution, and use the electromagnetic effect to fully stir for about 10 minutes. The alloy liquid is poured into a water glass mold at 710°C for 10 minutes for casting. The ingot was deformed at room temperature, and the rolling reduction in each pass was 16%. Every 3 passes of rolling requires an intermediate heat treatment to eliminate work hardening, the process is: 260 degrees, 1.5 hours. The final heat treatment process after rolling is: vacuum sol...
Embodiment 2
[0019]A Mg-Li-Zn magnesium-lithium alloy with combustion resistance when smelting at 760 degrees. In terms of weight percentage, the chemical composition of the alloy is: Li: 17.3wt.%, Zn: 4.8wt.%, Ca: 2.4wt.%, Mn: 0.2wt.%, Hf: 0.3wt.%, Y: 0.1wt .%, Nd: 0.1wt.%, Eu: 0.2wt.%, and the balance is magnesium. The preparation method of the alloy: add the above-mentioned raw materials into the induction furnace under the atmospheric environment, and use a silicon carbide crucible. Induction heating to 760 degrees to form an alloy solution, and use the electromagnetic effect to fully stir for about 10 minutes. The alloy liquid is poured into a water glass mold at 760°C for 10 minutes for casting. The ingot was subjected to deformation treatment at room temperature, and the rolling reduction in each pass was 19%. Every 3 passes of rolling requires an intermediate heat treatment to eliminate work hardening, the process is: 260 degrees, 1.5 hours. The final heat treatment process aft...
Embodiment 3
[0021] A Mg-Li-Zn magnesium-lithium alloy with combustion resistance when smelted at 700 degrees. In terms of weight percentage, the chemical composition of the alloy is: Li: 14.6wt.%, Zn: 6.4wt.%, Ca: 2.8wt.%, Mn: 0.3wt.%, Hf: 0.3wt.%, Y:0.2wt .%, Nd: 0.1wt.%, Eu: 0.2wt.%, and the balance is magnesium. The preparation method of the alloy: add the above-mentioned raw materials into the induction furnace under the protection of the atmosphere, and use a silicon carbide crucible. Induction heating to 700 degrees to form an alloy solution, and use the electromagnetic effect to fully stir for about 10 minutes. The alloy liquid is poured into a water glass mold at 700 degrees for 10 minutes for casting. The ingot was subjected to deformation treatment at room temperature, and the rolling reduction in each pass was 19%. Every 3 passes of rolling requires an intermediate heat treatment to eliminate work hardening, the process is: 260 degrees, 1.5 hours. The final heat treatment p...
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