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Laser-induced shock process in under-liquid regime studied by time-resolved photoelasticity imaging technique

机译:时间分辨光弹性成像技术研究液下状态下的激光激波过程

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摘要

Stress enhancement in laser-induced shock process by plasma-confining effect of liquid overlay was demonstrated visually and its dependence on liquid layer thickness was studied. Time-resolved photoelasticity imaging technique in bright-field mode was used to observe the stress wave in solid phase and the shock wave, plasma, and cavitation bubble in the liquid phase simultaneously. From the photoelastic images, intensity of the laser-induced stress wave (LSW) inside a solid was evaluated semi-quantitatively. We prove that LSW is weaker with thinner liquid layer. To achieve the same effect with bulk liquid, the liquid film needs to be thicker than a threshold value.
机译:目视证明了通过液体覆盖的等离子体约束效应来增强激光诱发的冲击过程中的应力,并研究了其对液体层厚度的依赖性。使用明场模式的时间分辨光弹性成像技术,同时观察固相中的应力波和液相中的冲击波,等离子体和空化气泡。从光弹性图像中,半定量评估固体内部的激光诱导应力波(LSW)的强度。我们证明了LSW随着液层变薄而变弱。为了用散装液体获得相同的效果,液膜需要比阈值厚。

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