High-strength and tough heat-resistant die-casting mg-gd-er alloy and its preparation method
A mg-gd-er, hot die-casting technology, applied in the field of industrial magnesium alloy and manufacturing, can solve the problems of incomplete replacement and insufficient heat resistance, and achieve the effect of high efficiency and simple process
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Embodiment 1
[0039] The weight percent of a high-strength and tough heat-resistant die-casting Mg-Gd-Er alloy is: according to the theoretical ratio, 0.6% Er, 2.4% Gd, 1.2% Zn, 1.2% Al, 0.3% Mn, 0.08% Ti, 0.01% B , the balance being Mg and other unavoidable impurities.
[0040] Its preparation method is:
[0041] (1) Calculate the amount of required raw materials according to the above-mentioned Mg-Gd-Er alloy composition and stoichiometric ratio; remove the oxide layer from industrial pure magnesium ingots, industrial pure zinc, industrial pure aluminum ingots, and MgGd25, MgEr25 and MgMn10 intermediate alloys And dry and preheat to 200°C; calculate the amount of raw materials required according to the composition and stoichiometric ratio of the alloy;
[0042] (2) After melting the commercially pure magnesium ingots accounting for 25% of the height of the crucible into a molten pool at 680 ° C, the protective gas argon is introduced, and the remaining magnesium ingots are added;
[004...
Embodiment 2
[0048] The weight percentage of a kind of high-strength and toughness heat-resistant die-casting Mg-Gd-Er alloy is: according to the theoretical ratio, 2.0% Er, 4.0% Gd, 3.6% Zn, 0.6% Al, 0.1% Mn, 0.06% Ti, the balance is Mg and other unavoidable impurities.
[0049] Its preparation method is:
[0050] (1) Calculate the amount of required raw materials according to the above-mentioned Mg-Gd-Er alloy composition and stoichiometric ratio; remove the oxide layer from industrial pure magnesium ingots, industrial pure zinc, industrial pure aluminum ingots, and MgGd25, MgEr30 and MgMn10 intermediate alloys And dry and preheat to 200°C; calculate the amount of raw materials required according to the composition and stoichiometric ratio of the alloy;
[0051] (2) After melting the commercially pure magnesium ingot accounting for 25% of the height of the crucible into a molten pool at 680 ° C, pass through a protective gas containing 0.2% volume fraction of SF 6 and CO 2 The mixed g...
Embodiment 3
[0057] The weight percent of a high-strength and tough heat-resistant die-casting Mg-Gd-Er alloy is: according to the theoretical ratio, 3.0% Gd, 3.0% Er, 1.2% Zn, 0.6% Al, 0.2% Mn, 0.01% Ti, 0.03% B , the balance being Mg and other unavoidable impurities.
[0058] Its preparation method is:
[0059] (1) Calculate the amount of required raw materials according to the above-mentioned Mg-Gd-Er alloy composition and stoichiometric ratio; remove the oxide layer from industrial pure magnesium ingots, industrial pure zinc, industrial pure aluminum ingots, and MgGd30, MgEr30 and MgMn10 intermediate alloys And dry and preheat to 200°C; calculate the amount of raw materials required according to the composition and stoichiometric ratio of the alloy;
[0060] (2) After melting the commercially pure magnesium ingots accounting for 25% of the height of the crucible into a molten pool at 680 ° C, the protective gas argon is introduced, and the remaining magnesium ingots are added;
[006...
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