Effects of ultrasonic power and temperature subjected to vibration on the solidification structure of industrial pure aluminum
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摘要: 在工業純鋁的凝固過程中引入超聲場,探討了超聲細化晶粒的機理,并具體研究了超聲功率、導入聲波的熔體溫度區間對鑄錠凝固組織的影響規律.實驗結果表明:鋁熔體經超聲處理后,凝固組織均得到顯著細化,這主要取決于超聲的空化效應和聲流效應;超聲功率增大時,組織細化程度提高,功率達到170W時細化效果最好,繼續增大功率則細化作用減弱;施振溫度區間對凝固組織的影響也有相似的規律,在合理的溫度導入聲波,晶粒能細化到最佳程度.Abstract: Ultrasonic field was introduced into the solidification process of industrial pure aluminum. The mechanism of grain refinement by ultrasonic was discussed. The effects of ultrasonic power and melt temperature range subjected to ultrasonic vibration on the solidification structure of casting ingots were studied. The experiment results showed that the solidification structures of aluminum melt were all refined remarkably by ultrasonic treatment due to ultrasonic cavitation effect and acoustic stream effect. The structure refinement was improved when the ultrasonic power increased, the refining effect was the best at the ultrasonic power of 170 W, but it would be decreased if the ultrasonic power continuously increased. The similar law was found in investigating the influence of temperature range applying vibration on the solidification structure, and the grain refinement can reach an optimum degree at a reasonable temperature applying ultrasonic.
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