Experimental Study of Laser-Induced Cavitation Bubbles near Wall: Plasma Shielding Observation

Author:

Zhou Rui1ORCID,Li Kangwen2,Cao Yupeng2,Shi Weidong2,Yang Yongfei2ORCID,Tan Linwei2ORCID,Hu Ranran2,Jin Yongxin3ORCID

Affiliation:

1. School of Information Science and Technology, Nantong University, Nantong 226019, China

2. School of Mechanical Engineering, Nantong University, Nantong 226019, China

3. Key Laboratory of Fluid Machinery and Engineering, Xihua University, Chengdu 610039, China

Abstract

To investigate the plasma shielding of laser-induced cavitation bubbles near a wall, a pulsed laser with different energies was selected to induce cavitation bubbles on the surface of 7050-T7451 aluminum alloy. A high-speed camera captured the evolution of the cavitation bubble, while a fiber-optic hydrophone system collected the acoustic signals during the evolution. Finally, a confocal microscope was used to view and analyze the surface morphology of 7050 aluminum alloy. The experimental results indicate that as the laser energy increases, the diameter, the evolution time, the pressure of the bubble, and both the pit diameter and depth all increase. Beyond an energy level of 1.4 J, the maximum diameter and the evolution time of the laser-induced cavitation bubble begin to decrease; the maximum diameter decreases by 2.04%, and the first evolution time decreases by 3.26%. Plasma shielding was observed in this experiment. Considering that the essence of a laser-induced cavitation bubble is the interaction between a high-energy laser and a liquid medium, the abnormal decrease in the maximum diameter, evolution time, and sound pressure epitomizes the manifestation of plasma shielding.

Funder

Postgraduate Research & Practice Innovation Program of Jiangsu Province

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Publisher

MDPI AG

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