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Stroboscopic schlieren study of bubble formation during megasonic agitation

机译:巨型搅拌过程中泡沫形成的频闪性舒尔森研究

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An important problem in megasonic cleaning is the nucleation process of bubbles, which act as the cleaning agents. A fundamental understanding of this nucleation process will help to optimize the cleaning parameters for future applications to achieve damage free cleaning. In this work, we use quantitative stroboscopic Schlieren imaging to study the interaction of nucleating bubbles with a travelling acoustic wave. The advantage of this method is that it is non-interfering, meaning that it does not disturb the bubble nucleation. It is revealed that nucleation mechanism is a 2 step process, where a regime of slow bubble growth due to rectified diffusion is subsequently followed by a transient cavitation cycle, where bubbles grow explosively. The latter is accompanied by broadband acoustic emission and enhanced thermal dissipation, leading to the occurrence of thermal convection visible in the Schlieren images.
机译:兆声清洗中的一个重要问题是气泡的成核过程,其充当清洁剂。 对该成核过程的根本理解将有助于优化清洁参数以实现未来的应用,以实现无损清洁。 在这项工作中,我们使用定量频道型Schlieren成像来研究核心气泡与行驶声波的相互作用。 这种方法的优点在于它是非干扰的,这意味着它不会干扰泡沫成核。 揭示成核机制是2步骤过程,其中随后是整流扩散引起的缓慢气泡生长的制度随后接下来是瞬态空化循环,其中气泡爆炸性地生长。 后者伴随着宽带声发射和增强的热耗散,导致Schlieren图像中可见的热对流的发生。

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