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On the mechanism of dendritic fragmentation by ultrasound induced cavitation

机译:超声诱导空化树突碎裂机理研究

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摘要

A dedicated solidification device and high speed camera were used to capture dendritic fragmentation of pure succinonitrile (SCN) induced by oscillating ultrasonic bubbles. Theoretical analysis of the melting behavior of the dendrite was performed based on local solidification thermodynamics. The dendritic growth or the evolution of the solid-liquid interface is closely related to both thermodynamics of the cavitation bubble and the local geometry of the dendrite. Accordingly, for the first time, a dimensionless scaling formulation was developed by fitting both theoretical and experimental data to determine the variational pressure exerted by the cavitation bubble.
机译:专用的凝固装置和高速相机用于捕获通过振荡超声波泡沫诱导的纯琥珀腈(SCN)的树突状碎片。 基于局部凝固热力学进行枝晶熔化行为的理论分析。 树枝状生长或固体液体界面的演化与空化泡沫的热力学和枝晶的局部几何形状密切相关。 因此,首次通过拟合理论和实验数据来开发无量纲缩放制剂,以确定由空化泡沫施加的变分压力。

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