High-rolling-capacity magnesium-rare earth alloy and preparation method thereof
A rare earth alloy and magnesium alloy technology, applied in the field of high rolling formability magnesium-rare earth alloy and its preparation, can solve the problems of affecting the hot working formability of the alloy, reducing the alloy elongation, unfavorable general application and the like, and achieving easy operation. , Conducive to hot rolling processing, high elongation effect
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Embodiment 1
[0023] The chemical composition (mass percentage) of the alloy is: 5.1% Gd, 2.6% Y, 2.1% Zn, 1.0Al, the total amount of impurity elements Fe, Cu, Ni, Si is less than 0.03%, and the balance is Mg.
[0024] The casting and rolling process for preparing the alloy is as follows: first, weigh the material according to the proportion, preheat the Mg, Zn, Al, Mg-Gd master alloy, and Mg-Y master alloy to 200°C, and then put Mg into the preheated to 100°C In the crucible, and into the SF 6 :CO 2 Protective gas with a volume ratio of 1:100, add Zn after the Mg is completely melted, add Mg-Y master alloy and Mg-Gd master alloy when the melt temperature reaches 740°C, and pass in argon after the added master alloy is melted Refining and stirring for 10 minutes, after removing the slag, let it stand at 740°C for 25 minutes, and after the temperature drops to 700°C, cast it into a flat ingot with a metal mold. The resulting slab was air-cooled after homogenization treatment at 450°C for 1...
Embodiment 2
[0026] The chemical composition (mass percentage) of the alloy is: 5.0% Gd, 2.8% Y, 2.0% Zn, 0.9Al, the total amount of impurity elements Fe, Cu, Ni, Si is less than 0.03%, and the balance is Mg.
[0027] The casting and rolling process for preparing the alloy is as follows: first, weigh the materials according to the proportion, preheat Mg, Zn, Al, Mg-Gd master alloy, and Mg-Y master alloy to 200°C, and then put Mg into the In the melting furnace, add Zn and Al after the Mg is completely melted, and add Mg-Gd master alloy and Mg-Y master alloy when the melt temperature reaches 750°C. After the added master alloy is melted, pass in argon gas for refining and stirring for 15 minutes. After removing the slag, let it stand at 740°C for 30 minutes, and after the temperature drops to 720°C, use the electromagnetic continuous casting method to obtain a cylindrical billet. Electromagnetic continuous casting process parameters are: power supply 10kW, power frequency 2000Hz, stable cas...
Embodiment 3
[0029] The chemical composition (mass percentage) of the alloy is: 5.0% Gd, 2.7% Y, 2.0% Zn, 1.0Al, the total amount of impurity elements Fe, Cu, Ni, Si is less than 0.03%, and the balance is Mg.
[0030] The casting and rolling process for preparing the alloy is as follows: first, weigh the materials according to the proportion, preheat Mg, Zn, Al, Mg-Gd master alloy, and Mg-Y master alloy to 200°C, and then put Mg into the In the melting furnace, add Zn and Al after the Mg is completely melted, and add Mg-Gd master alloy and Mg-Y master alloy when the melt temperature reaches 750°C. After the added master alloy is melted, pass in argon gas for refining and stirring for 15 minutes. After removing the slag, let it stand at 740°C for 30 minutes, and after the temperature drops to 720°C, adopt the ordinary continuous casting method to obtain a cylindrical billet. The continuous casting process parameters are: stable casting speed is 8cm / min, cooling water volume is 1.5m 3 / h, S...
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