Požar Tomaž, Agrež Vid, Petkovšek Rok
Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia.
Faculty of Mechanical Engineering, University of Ljubljana, Ljubljana, Slovenia.
Ultrason Sonochem. 2021 May;73:105456. doi: 10.1016/j.ultsonch.2020.105456. Epub 2021 Jan 4.
The interplay among the cavitation structures and the shock waves following a nanosecond laser breakdown in water in the vicinity of a concave surface was visualized with high-speed shadowgraphy and schlieren cinematography. Unlike the generation of the main cavitation bubble near a flat or a convex surface, the concave surface refocuses the emitted shock waves and causes secondary cavitation near the acoustic focus which is most pronounced when triggered by the shock wave released during the first main bubble collapse. The shock wave propagation, reflection from the concave surface and its scattering on the dominant cavity is clearly resolvable on the shadowgraphs. The schlieren approach revealed the pressure build up in the last stage of the collapse and the first stage of the rebound. A persistent low-density watermark is left behind the first collapse. The observed effects are important wherever cavities collapse near indented surfaces, such as in cavitation peening, cavitation erosion and ophthalmology.
利用高速阴影成像和纹影摄影技术,可视化了纳秒激光在凹面附近的水中击穿后空化结构与冲击波之间的相互作用。与在平面或凸面附近产生主要空化泡不同,凹面会使发射的冲击波重新聚焦,并在声聚焦附近引起二次空化,当由第一个主要气泡坍塌期间释放的冲击波触发时,这种二次空化最为明显。在阴影图上可以清楚地分辨出冲击波的传播、从凹面的反射及其在主导空泡上的散射。纹影方法揭示了坍塌最后阶段和反弹第一阶段的压力积聚。在第一次坍塌后留下了持久的低密度水印。无论在空化喷丸、空化侵蚀和眼科等凹面附近空泡坍塌的任何地方,观察到的这些效应都很重要。