High-plasticity and low-anisotropism deformed magnesium alloy plate and preparation method thereof
A wrought magnesium alloy, anisotropic technology, applied in the field of light metal materials, can solve the problems of reducing the oxidation resistance of the alloy at room temperature, unable to apply a higher temperature environment, and the alloy cannot meet the basic requirements, etc., and achieves obvious and excellent fine-grain strengthening effect. Comprehensive mechanical properties, the effect of inhibiting the growth of grains
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Embodiment 1
[0039] Get each raw material by following mass ratio:
[0040] 3.0% Al, 0.3% Mn, 0.1% Y, 0.1% Ca, 0.1% Zn, the rest is Mg and unavoidable impurities, the total impurity content is ≤0.3%.
[0041] 1. Melting:
[0042] ①Put the crucible in a resistance furnace, heat up to 400°C, pass in protective gas for 10 minutes, and then add pure magnesium; heat the resistance furnace to 720°C, keep it warm for 40 minutes, and after the pure magnesium is completely melted, add preheated to 200°C Pure aluminum, keep warm for 20 minutes, after the pure aluminum is completely melted, stir and remove slag;
[0043] ②Raise the temperature of the resistance furnace to 740°C, add Mg-Mn, Mg-Ca and Mg-Y master alloys preheated at 200°C, keep it warm for 10 minutes, and stir and remove slag after the master alloy is completely melted;
[0044] ③Reduce the temperature of the resistance furnace to 720°C, add pure zinc preheated at 200°C, keep it warm for 5 minutes, and stir and remove slag after the ...
Embodiment 2
[0055] Get each raw material by following mass ratio:
[0056] 4.0Al, 0.5% Mn, 0.9% Y, 0.5% Ca, 0.3% Zn, the rest are Mg and unavoidable impurities, the total impurity content is ≤0.3%.
[0057] 1. Melting:
[0058] ① Place the crucible in a resistance furnace, raise the temperature to 450°C, pass in protective gas for 20 minutes, and then add pure magnesium; raise the temperature of the resistance furnace to 740°C, and keep it warm for 20 minutes. Aluminum, keep warm for 10 minutes, after the pure aluminum is completely melted, stir and remove slag;
[0059] ②Raise the temperature of the resistance furnace to 760°C, add Mg-Mn, Mg-Ca and Mg-Y master alloys preheated at 250°C, keep it warm for 10 minutes, and stir and remove slag after the master alloy is completely melted;
[0060] ③Reduce the temperature of the resistance furnace to 720°C, add pure zinc preheated at 250°C, keep it warm for 10 minutes, and stir and remove slag after the pure zinc is completely melted;
[00...
Embodiment 3
[0070] Get each raw material by following mass ratio:
[0071] 5.0% Al, 0.6% Mn, 0.6% Y, 0.8% Ca, 0.5% Zn, the rest is Mg and unavoidable impurities, the total content of impurities is ≤0.3%.
[0072] 1. Melting:
[0073] ①Put the crucible in a resistance furnace, heat up to 500°C, pass through the protective gas for 30 minutes, and then add pure magnesium; heat the resistance furnace to 700°C, keep it warm for 60 minutes, and after the pure magnesium is completely melted, add preheated 300°C Pure aluminum, keep warm for 15 minutes, after the pure aluminum is completely melted, stir and remove slag;
[0074] ②Raise the temperature of the resistance furnace to 750°C, add Mg-Mn, Mg-Ca and Mg-Y master alloys preheated to 300°C, keep it warm for 20 minutes, and stir and remove slag after the master alloy is completely melted;
[0075] ③Reduce the temperature of the resistance furnace to 710°C, add pure zinc preheated at 300°C, keep it warm for 20 minutes, and stir and remove sla...
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