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首页> 外文期刊>Applied Physics >Ultrasonic cavitation and acoustic streaming effects during liquid phase separation and dynamic solidification of ternary Al-Sn-Si immiscible alloy
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Ultrasonic cavitation and acoustic streaming effects during liquid phase separation and dynamic solidification of ternary Al-Sn-Si immiscible alloy

机译:三元Al-Sn-Si不混溶合金的液相分离和动态凝固过程中的超声空化和声流效应

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摘要

Ultrasonic melt treatment is an environmentally friendly and no-polluting external field technology and has great application potential in materials fabrication. Power ultrasound with different intensities was introduced into the liquid phase separation and solidification process of ternary Al-45%Sn-5%Si immiscible alloy to explore the effects of ultrasound on the formation of macro- and microstructure. It was found that the previously apparent macrosegregation caused by the large density difference between immiscible liquid (Al) and (Sn) phases was gradually reduced and even suppressed with the increase of ultrasonic amplitude. Meanwhile, the ultrasonic waves also significantly modified monotectic structures, within which (Al) phase transformed from coarse dendrites to refined equiaxed grains, and (Si) phase evolved from long strips to small blocks. The introduction of ultrasound weakened the texture of solidified structure, whereas the growth orientation relationship between monotectic (Al) and (Si) phases remained unchanged. The theoretical analysis and calculation results indicated that ultrasonic cavitation and acoustic streaming were the dominant effects to modulate the macro- and microstructural evolution. This would improve the exploiting and utilization of immiscible alloys by ultrasonic processing technology.
机译:超声波熔体处理是一种环保且无污染的外场技术,在材料制造中具有巨大的应用潜力。将不同强度的功率超声引入到Al-45%Sn-5%Si三元不混溶合金的液相分离和凝固过程中,以探讨超声对宏观和微观结构形成的影响。结果发现,随着超声幅值的增加,由不相溶的液相(Al)和(Sn)相之间的较大密度差异引起的先前明显的宏观偏析逐渐减少,甚至受到抑制。同时,超声波还显着改变了单晶结构,其中(Al)相从粗枝晶转变为细等轴晶粒,而(Si)相则从长条状转变为小块状。超声的引入削弱了凝固组织的质地,而单晶(Al)和(Si)相之间的生长取向关系保持不变。理论分析和计算结果表明,超声空化和声流是调节宏观和微观结构演变的主要作用。这将通过超声处理技术改善不溶混合金的开发和利用。

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