Silicon-containing heat-resistant rare earth magnesium alloy and preparation method thereof
A rare-earth magnesium and heat-resistant technology, which is applied in the field of magnesium alloy and its preparation, silicon-containing heat-resistant rare-earth magnesium alloy and its preparation, can solve the problems of poor plasticity and other performance constraints, increased cost, and high rare-earth composition, so as to improve the resistance Abrasiveness, improved alloy strength, and low rare earth content
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Embodiment 1
[0035] This embodiment relates to a silicon-containing heat-resistant rare earth magnesium alloy, which contains the following components by weight percentage:
[0036] 9%Gd, 2%Y, 0.5%Si and 0.35%Zr, the rest is Mg and unavoidable impurities (less than 0.02% by weight). Among them, the content of impurity elements is: Fe<0.005%, Cu<0.005%, Ni<0.002%, Ca<0.01%.
[0037] This embodiment also relates to the preparation method of the aforementioned silicon-containing heat-resistant rare earth magnesium alloy. The method includes: raw material preheating, smelting and subsequent heat treatment:
[0038] Step 1, raw material preheating: preheating the raw material magnesium ingot, Mg-Si, Mg-Gd, Mg-Y and Mg-Zr master alloy to 200°C;
[0039] Step 2, Smelt: In SF 6 and CO 2 Mixed gas (SF 6 The volume percentage is 0.2%) under protection, including the following steps: (1) adding magnesium: adding pure magnesium to the resistance crucible furnace for smelting; (2) adding Si: after ...
Embodiment 2
[0043] This embodiment relates to a silicon-containing heat-resistant rare earth magnesium alloy, which contains the following components by weight percentage: 8% Gd, 3% Y, 1% Si and 0.6% Zr, and the rest is Mg and unavoidable impurities (weight percentage is less than 0.02%), wherein the content of impurity elements is: Fe<0.005%, Cu<0.005%, Ni<0.002%, Ca<0.01%.
[0044] This embodiment also relates to the preparation method of the aforementioned silicon-containing heat-resistant rare earth magnesium alloy. The method includes: the method includes: raw material preheating, smelting and subsequent heat treatment:
[0045] Step 1, raw material preheating: preheat raw material magnesium ingot, Mg-Si, Mg-Gd, Mg-Y and Mg-Zr master alloy to 220°C;
[0046] Step 2, Smelt: In SF 6 and CO 2 Mixed gas (SF 6 The volume percentage is 0.2%) under protection, including the following steps: (1) adding magnesium: adding pure magnesium to the resistance crucible furnace for smelting; (2) a...
Embodiment 3
[0050] This embodiment relates to a silicon-containing heat-resistant rare earth magnesium alloy, which contains the following components by weight percentage: 10% Gd, 3% Y, 2% Si and 0.5% Zr, and the rest is Mg and unavoidable impurities (weight percentage is less than 0.02%), wherein the content of impurity elements is: Fe<0.005%, Cu<0.005%, Ni<0.002%, Ca<0.01%.
[0051] This embodiment also relates to the preparation method of the aforementioned silicon-containing heat-resistant rare earth magnesium alloy. The method includes: the method includes: raw material preheating, smelting and subsequent heat treatment:
[0052] Step 1, raw material preheating: preheat raw material magnesium ingot, Mg-Si, Mg-Gd, Mg-Y and Mg-Zr master alloy to 210°C;
[0053] Step 2, Smelt: In SF 6 and CO 2 Mixed gas (SF 6 The volume percentage is 0.2%) under protection, including the following steps: (1) adding magnesium: adding pure magnesium to the resistance crucible furnace for smelting; (2) ...
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