Effect of ultrasonic melt treatment on degassing of Mg-6Zn-1Ca alloy

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The effect of ultrasonic power and treatment time on degassing of Mg-6Zn-1Ca alloy was studied in this paper. The degassing effect was characterized by measuring densities of ingots. The results show that proper ultrasonic treatment can remove hydrogen from the melt of the Mg-6Zn-1Ca alloy. The ultrasonic degassing effect is closely related to the ultrasonic power density and treatment time. The degassing efficiency increases with an increase in ultrasonic power density when the melt is treated at 690 °C for 120 s, reaching its highest value at 1.2 W·cm-3. When the power density is 1.2 W·cm-3, with an increase in ultrasonic treatment time, the degassing efficiency increases at first, reaches its peak value at 120 s, then decreases as the ultrasonic treatment is further prolonged. In this experiment, the optimum degassing effect with an efficiency of 67.5 % is obtained by ultrasonic treatment with the power density of 1.2 W·cm-3 for 120 s. The maximum density of ingot can be increased from 1.8069 g·cm-3 to 1.8146 g·cm-3(increased by 0.43%). The effect of ultrasonic power and treatment time on degassing of Mg-6Zn-1Ca alloy was studied in this paper. The degassing effect was characterized by measuring densities of ingots. The results show that proper ultrasonic treatment can remove hydrogen from the melt of the Mg -6Zn-1Ca alloy. The ultrasonic degassing effect is closely related to the ultrasonic power density and treatment time. The degassing efficiency increases with an increase in ultrasonic power density when the melt is treated at 690 ° C for 120 s, reaching its highest value at 1.2 W · cm-3. When the power density is 1.2 W · cm-3, with an increase in ultrasonic treatment time, the degassing efficiency increases at first, reaching its peak value at 120 s, then decreases as the ultrasonic treatment is In this experiment, the optimum degassing effect with an efficiency of 67.5% is obtained by ultrasonic treatment with the power density of 1.2 W · cm-3 for 120 s. The maximum density of ingot can be increas ed from 1.8069 g-cm-3 to 1.8146 g-cm-3 (increased by 0.43%).
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