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Study on Acoustic Cavitations in the Ultrasonic Radiation Field

机译:超声辐射场中的声空化研究

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摘要

Applications of ultrasound in cleaning industry and biomedical field are owed to acoustic cavitations. To investigate behaviors of acoustic cavitations, a standing wave field of piston ultrasonic radiation was set up in this paper. And the behaviors of acoustic bubbles in this standing wave field were studied experimentally. Expressions of sound pressure in this standing wave field with different boundary conditions were discussed. Drawn by the forces (Bejerknes forces, Buoyancy forces, etc.), stable bubbles distributed regularly in the standing wave field. Experiments were conducted to validate that the distribution of stable bubbles can visualize the distribution of sound pressure. Erosion tests on aluminum foiling demonstrate that erosion only occurs in sound pressure anti-node field which was caused by collapsed acoustic bubbles. The radial oscillation of acoustic bubble was observed using high speed camera; it was found that the bubble's radius was increased with increase of negative sound pressure.
机译:超声在清洁工业和生物医学领域的应用归因于声空化。为了研究声空化的行为,本文建立了活塞超声辐射的驻波场。并通过实验研究了声波在该驻波场中的行为。讨论了该声波在不同边界条件下的声压表达式。在力(贝耶克内斯力,浮力等)的吸引下,稳定的气泡在驻波场中有规律地分布。进行实验以验证稳定气泡的分布可以可视化声压的分布。对铝箔的腐蚀测试表明,腐蚀仅发生在声压波腹场中,这是由破裂的声泡引起的。使用高速相机观察到气泡的径向振动;发现气泡的半径随着负声压的增加而增加。

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