High-strength creep resistant magnesium alloy and method of producing the same
A magnesium alloy and alloy technology, which is applied in the field of high-strength creep-resistant magnesium alloy and its preparation, can solve the problems of affecting the solid solution effect, not being able to fully exert aging strengthening, and being contrary to lightweight design.
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Embodiment 1
[0025] Alloy composition (percentage by weight): 6% Y, 5% Gd, 2% Zn, impurity elements are less than 0.02%, and the rest is Mg.
[0026] The specific steps of the melting process of the alloy are as follows: (1) configure the alloy according to the above components, add pure magnesium into the resistance crucible furnace, and use SF 6 / CO 2 Mixed gas for protection; (2) After the magnesium is completely melted, add industrial pure zinc at 640°C; (3) When the temperature of the magnesium liquid reaches 740°C, directly add the Mg-Gd master alloy into the magnesium liquid, Mg-Gd After melting, the temperature of the molten magnesium rises to 740°C before adding the Mg-Y master alloy; (4) After the temperature of the magnesium liquid rises to 770°C, add the Mg-Zr master alloy and stir for 4 minutes to promote its full melting; (5) The temperature of the high-magnesium liquid is 790°C, keep the temperature for 20 minutes, then cool down to 750°C, refine for 6 minutes, and control ...
Embodiment 2
[0030] Alloy composition (percentage by weight): 6% Y, 5% Gd, 2% Zn, 0.5% Zr, impurity elements are less than 0.02%, and the rest is Mg.
[0031] The specific steps of the melting process of the alloy are as follows: (1) configure the alloy according to the above components, add pure magnesium into the resistance crucible furnace, and use SF 6 / CO 2 Mixed gas for protection; (2) After the magnesium is completely melted, add industrial pure zinc at 690°C; (3) When the temperature of the magnesium liquid reaches 720°C, directly add the Mg-Gd master alloy into the magnesium liquid, Mg-Gd After melting, when the temperature of the magnesium liquid rises to 720°C, add the Mg-Y master alloy; (4) After the temperature of the magnesium liquid rises to 760°C, add the Mg-Zr master alloy, and stir for 2 minutes to promote its full melting; (5) liter The temperature of the high magnesium liquid is 780°C, keep it warm for 20 minutes, then cool down to 750°C, refine for 6 minutes, and cont...
Embodiment 3
[0035] Alloy composition (percentage by weight): 7% Y, 4% Gd, 0.5% Zn, 0.3% Zr, impurity elements are less than 0.02%, and the rest is Mg.
[0036] The specific steps of the melting process of the alloy are as follows: (1) configure the alloy according to the above components, add pure magnesium into the resistance crucible furnace, and use SF 6 / CO 2 Mixed gas for protection; (2) After the magnesium is completely melted, add industrial pure zinc at 690°C; (3) When the temperature of the magnesium liquid reaches 725°C, directly add the Mg-Gd master alloy into the magnesium liquid, Mg-Gd After melting, the temperature of the molten magnesium rises to 725°C before adding the Mg-Y master alloy; (4) After the temperature of the magnesium liquid rises to 760°C, add the Mg-Zr master alloy and stir for 2 minutes to promote its full melting; (5) The temperature of the high magnesium liquid is 780°C, keep it warm for 20 minutes, then cool down to 750°C, refine for 6 minutes, and contr...
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