High strength and toughness heat-resistant mg-er alloy suitable for gravity casting and preparation method thereof
A gravity casting and mg-er technology, which is applied in the preparation of high-strength, toughness, and heat-resistant Mg-Er alloys, and in the field of high-strength, toughness, and heat-resistant Mg-Er alloys, can solve the problems of inability to achieve the performance of cast aluminum alloys, insufficient heat resistance, etc. High efficiency and simple process effect
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Embodiment 1
[0030] The weight percentage of the high-strength, toughness and heat-resistant Mg-Er alloy suitable for gravity casting is: according to the theoretical ratio, 6.0% Er, 4.2% Zn, 0.6% Al, 0.1% Mn, 0.08% Ti, the balance is Mg and others Avoid impurities.
[0031]Preparation method: (1) After proper consideration of burning loss, calculate the amount of required raw materials according to the above-mentioned Mg-Er alloy composition and stoichiometric ratio; mix industrial pure magnesium ingots, industrial pure zinc, industrial pure aluminum ingots and MgEr30 and MgMn10 intermediate All alloys were deoxidized and preheated to 200°C.
[0032] (2) After melting the commercially pure magnesium ingots accounting for 25% of the height of the crucible into a molten pool at 680 ° C, pass through SF containing 0.2% volume fraction 6 and CO 2 The mixed gas, add the remaining magnesium ingots.
[0033] (3) After the magnesium ingots are completely melted, raise the temperature to 700°C,...
Embodiment 2
[0040] The weight percent of the high-strength and tough heat-resistant Mg-Er alloy suitable for gravity casting is: according to the theoretical ratio, 4.0% Er, 2.0% Zn, 0.6% Al, 0.3% Mn, 0.01% Ti, 0.01% B, and the balance is Mg and other unavoidable impurities.
[0041] Preparation method: (1) After proper consideration of burning loss, calculate the amount of required raw materials according to the above-mentioned Mg-Er alloy composition and stoichiometric ratio; mix industrial pure magnesium ingots, industrial pure zinc, industrial pure aluminum ingots and MgEr30 and MgMn10 intermediate All alloys were deoxidized and preheated to 200°C.
[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.
[0043] (3) After the magnesium ingots are completely melted, raise the temperature to 700°C, add industrial...
Embodiment 3
[0050] The weight percent of the high-strength, toughness and heat-resistant Mg-Er alloy suitable for gravity casting is: according to the theoretical ratio, 10.0% Er, 2.0% Zn, 1.0% Al, 0.2% Mn, 0.05% Ti, 0.03% B, and the balance is Mg and other unavoidable impurities.
[0051] Preparation method: (1) After proper consideration of burning loss, calculate the amount of required raw materials according to the above-mentioned Mg-Er alloy composition and stoichiometric ratio; mix industrial pure magnesium ingots, industrial pure zinc, industrial pure aluminum ingots and MgEr30 and MgMn10 intermediate All alloys were deoxidized and preheated to 200°C.
[0052] (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.
[0053] (3) After the magnesium ingots are completely melted, raise the temperature to 700°C, add indu...
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