A kind of high-strength and high-plastic magnesium alloy and preparation method thereof
A technology for strengthening magnesium alloys and magnesium alloys, applied in the field of high-strength and high-plastic magnesium alloys and their preparation, can solve problems such as low strength, and achieve the effects of increasing strength, refining grains, and increasing volume fraction
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Embodiment 1
[0033] (1) Prepare raw materials: prepare more than 99.9% high-purity magnesium and high-purity zinc, and nano-SiC with an average particle size of 110;
[0034] (2) Smelting alloy: mix high-purity magnesium and zinc according to the atomic ratio of 5:1, in CO 2 with SF 6 Melting in a mixed gas, where CO 2 with SF 6 The volume ratio is 100:1; during the smelting process, add nano-SiC accounting for 3.2% of the alloy mass fraction, keep the temperature at 700 ° C, and disperse by ultrasonic method;
[0035] (3) Slowly cool the alloy ingot at a cooling rate of 0.2K per second; maintain a vacuum state during the cooling process with a vacuum degree of 4torr;
[0036] (4) After cooling, the alloy ingot is processed into a disc shape;
[0037] (5) Put the coarse-grained alloy disc processed in step (4) into the space formed by the grooves in the upper and lower anvils, apply a high pressure of 5GPa to the alloy, and rotate the anvil at a speed of 2 revolutions per minute Twist...
Embodiment 2
[0043] (1) Prepare raw materials: prepare more than 99.9% high-purity magnesium and high-purity zinc, and SiC with an average particle size of 80 nanometers;
[0044] (2) Smelting alloy: mix high-purity magnesium and zinc according to the atomic ratio of 4:1, in CO 2 with SF 6 Melting in a mixed gas, where CO 2 with SF 6 The volume ratio is 80:1; during the smelting process, add nano-SiC accounting for 5% of the alloy mass fraction, keep the temperature at 700 ° C, and disperse by ultrasonic method;
[0045] (3) Slowly cool the alloy ingot at a cooling rate of 0.4K per second; maintain a vacuum state during the cooling process with a vacuum degree of 5 torr;
[0046] (4) After cooling, the alloy ingot is processed into a disc shape;
[0047] (5) Put the coarse-grained alloy disc processed in step (4) into the space formed by the grooves in the upper and lower anvils, apply a high pressure of 1.5GPa to the alloy, and rotate the press at a speed of 3 revolutions per minute. ...
Embodiment 3
[0053] (1) Prepare raw materials: prepare more than 99.9% high-purity magnesium and high-purity zinc, and SiC with an average particle size of 60 nanometers;
[0054] (2) Smelting alloy: mix high-purity magnesium and zinc according to the atomic ratio of 3.5:1, in CO 2 with SF 6 Melting in a mixed gas, where CO 2 with SF 6 The volume ratio is 50:1; during the smelting process, add nano-SiC accounting for 1.8% of the alloy mass fraction, keep the temperature at 700 ° C, and disperse by ultrasonic method;
[0055] (3) Slowly cool the alloy ingot at a cooling rate of 0.5K per second; maintain a vacuum state during the cooling process, and the vacuum degree is 3torr;
[0056] (4) After cooling, the alloy ingot is processed into a disc shape;
[0057] (5) Put the coarse-grained alloy disc processed in step (4) into the space formed by the grooves in the upper and lower anvils, apply a high pressure of 1.5GPa to the alloy, and rotate the press at a speed of 2 revolutions per min...
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