Heated and reinforced high-strength cast magnesium alloy and preparation method thereof
A casting magnesium alloy, high-strength technology, applied in the field of metal material magnesium alloy, can solve the problem of high cost, achieve the effect of improving corrosion resistance, reducing the content of oxidized inclusions, and enhancing the ability of aging strengthening
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Embodiment 1
[0029] The alloy composition (weight fraction) is: 8.0% Zn, 3.0% Al, 2.0% Sn, 1.0% Cu, 0.5% Mn, 0.5% Ca, and the rest are Mg and unavoidable impurity elements.
[0030] (1) Preheating pure magnesium, pure zinc, pure aluminum, pure tin and magnesium-manganese master alloy at 100-150°C for 20-30 minutes, and drying;
[0031] (2) Melt pure magnesium under gas protection. After melting, when the melt temperature is 700-720°C, add pure zinc, pure aluminum, pure tin and magnesium-manganese intermediate alloy to the melt, and then stir until the alloy elements are completely Dissolve in the melt, raise the temperature of the melt to 730-750°C and keep it warm for 20-30 minutes, then cool down to 680-730°C;
[0032] (3) Under gas protection, pour the melt into a metal mold for casting to form an ingot.
[0033] (4) The alloy obtained in step (3) is solution treated at 360° C. for 12 hours, cooled in air, and aged at 200° C. for 16 hours to obtain a high-strength cast magnesium alloy....
Embodiment 2
[0038] The alloy composition (weight fraction) is: 10.0% Zn, 1.0% Al, 1.0% Sn, 0.5% Cu, 0.5% Mn, 0.5% Ca, and the rest are Mg and unavoidable impurity elements.
[0039] (1) Preheating pure magnesium, pure zinc, pure aluminum, pure tin and magnesium-manganese master alloy at 100-150°C for 20-30 minutes, and drying;
[0040] (2) Melt pure magnesium under gas protection. After melting, when the melt temperature is 700-720°C, add pure zinc, pure aluminum, pure tin and magnesium-manganese intermediate alloy to the melt, and then stir until the alloy elements are completely Dissolve in the melt, raise the temperature of the melt to 730-750°C and keep it warm for 20-30 minutes, then cool down to 680-730°C;
[0041] (3) Under gas protection, pour the melt into a metal mold for casting to form an ingot.
[0042] (4) The alloy obtained in step (3) was solution treated at 380° C. for 10 hours, cooled in air, and aged at 175° C. for 16 hours to obtain a high-strength cast magnesium allo...
Embodiment 3
[0045]The alloy composition (weight fraction) is: 9.0% Zn, 1.0% Al, 3.0% Sn, 0.5% Cu, 0.5% Mn, 0.3% Ca, and the rest are Mg and unavoidable impurity elements.
[0046] (1) Preheating pure magnesium, pure zinc, pure aluminum, pure tin and magnesium-manganese master alloy at 100-150°C for 20-30 minutes, and drying;
[0047] (2) Melt pure magnesium under gas protection. After melting, when the melt temperature is 700-720°C, add pure zinc, pure aluminum, pure tin and magnesium-manganese intermediate alloy to the melt, and then stir until the alloy elements are completely Dissolve in the melt, raise the temperature of the melt to 730-750°C and keep it warm for 20-30 minutes, then cool down to 680-730°C;
[0048] (3) Under gas protection, pour the melt into a metal mold for casting to form an ingot.
[0049] (4) The alloy obtained in step (3) is solution treated at 360° C. for 12 hours, cooled in air, and aged at 200° C. for 16 hours to obtain a high-strength cast magnesium alloy. ...
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