Single-phase alpha-magnesium-lithium alloy with extremely high thermal conductivity and processing technology for alloy
A magnesium-lithium alloy and thermal conductivity technology, applied in the field of alloys, can solve problems such as constraints and insufficient heat transfer performance, and achieve the effects of large calorific value, improved heat transfer coefficient, and easy industrialization of large-scale equipment.
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Embodiment 1
[0016] A very high thermal conductivity single-phase alpha-magnesium-lithium alloy. In terms of weight percentage, the chemical composition of the alloy is: Li: 5.2wt.%, Al: 1.1wt.%, Zn: 1.5wt.%, Cr: 0.2wt.%, Hf: 0.1wt.%, Ce: 0.1wt .%, Gd: 0.1wt.%, Sn: 0.5wt.%. The preparation method of the alloy: add the above-mentioned raw materials into an induction furnace protected by argon gas, and use a silicon carbide crucible. Induction heating to 750 degrees to form an alloy melt, and use the electromagnetic stirring effect to fully stir for about 10 minutes. The alloy melt is kept at 750°C for 10 minutes and then cast into a water glass or graphite mold for casting. The ingot was subjected to deformation treatment at room temperature, and the rolling reduction in each pass was 20%. Every 3 passes of rolling requires an intermediate heat treatment to eliminate work hardening. The process is: 300 degrees for 1 hour. The final heat treatment process after rolling is: vacuum solutio...
Embodiment 2
[0018] A very high thermal conductivity single-phase alpha-magnesium-lithium alloy. In terms of weight percentage, the chemical composition of the alloy is: Li: 4.8wt.%, Al: 1.9wt.%, Zn: 2.1wt.%, Cr: 0.3wt.%, Hf: 0.1wt.%, Ce: 0.1wt .%, Gd: 0.2wt.%, Sn: 0.7wt.%. The preparation method of the alloy: add the above-mentioned raw materials into an induction furnace protected by argon gas, and use a silicon carbide crucible. Induction heating to 750 degrees to form an alloy melt, and use the electromagnetic stirring effect to fully stir for about 10 minutes. The alloy melt is kept at 750°C for 10 minutes and then cast into a water glass or graphite mold for casting. The ingot was subjected to deformation treatment at room temperature, and the rolling reduction in each pass was 20%. Every 3 passes of rolling requires an intermediate heat treatment to eliminate work hardening. The process is: 300 degrees for 1 hour. The final heat treatment process after rolling is: vacuum solutio...
Embodiment 3
[0020] A very high thermal conductivity single-phase alpha-magnesium-lithium alloy. In terms of weight percentage, the chemical composition of the alloy is: Li: 4.9wt.%, Al: 1.6wt.%, Zn: 1.8wt.%, Cr: 0.3wt.%, Hf: 0.2wt.%, Ce: 0.1wt .%, Gd: 0.1wt.%, Sn: 0.8wt.%. The preparation method of the alloy: add the above-mentioned raw materials into an induction furnace protected by argon gas, and use a silicon carbide crucible. Induction heating to 750 degrees to form an alloy melt, and use the electromagnetic stirring effect to fully stir for about 10 minutes. The alloy melt is kept at 750°C for 10 minutes and then cast into a water glass or graphite mold for casting. The ingot was subjected to deformation treatment at room temperature, and the rolling reduction in each pass was 20%. Every 3 passes of rolling requires an intermediate heat treatment to eliminate work hardening. The process is: 300 degrees for 1 hour. The final heat treatment process after rolling is: vacuum solutio...
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