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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >A High-Speed Imaging and Modeling Study of Dendrite Fragmentation Caused by Ultrasonic Cavitation
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A High-Speed Imaging and Modeling Study of Dendrite Fragmentation Caused by Ultrasonic Cavitation

机译:超声空化引起的枝晶碎裂的高速成像和建模研究

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摘要

The dynamic behavior of ultrasound-induced cavitation bubbles and their effect on the fragmentation of dendritic grains of a solidifying succinonitrile 1 wt pct camphor organic transparent alloy have been studied experimentally using high-speed digital imaging and complementary numerical analysis of sound wave propagation, cavitation dynamics, and the velocity field in the vicinity of an imploding cavitation bubble. Real-time imaging and analysis revealed that the violent implosion of bubbles created local shock waves that could shatter dendrites nearby into small pieces in a few tens of milliseconds. These catastrophic events were effective in breaking up growing dendritic grains and creating abundant fragmented crystals that may act as embryonic grains; therefore, these events play an important role in grain refinement of metallurgical alloys.
机译:利用高速数字成像和声波传播的互补数值分析,空化动力学,通过实验研究了超声诱导的空化气泡的动力学行为及其对凝固的丁二腈1 wt%樟脑有机透明合金树枝状晶粒破碎的影响。 ,以及内爆气泡附近的速度场。实时成像和分析显示,气泡的剧烈爆炸会产生局部冲击波,该冲击波可能会在几十毫秒内将附近的树枝状晶体破碎成小块。这些灾难性事件有效地破坏了正在生长的树突状晶粒,并产生了大量的碎片晶体,这些晶体可能起着胚胎晶粒的作用。因此,这些事件在冶金合金的晶粒细化中起着重要作用。

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