Simulation and Experimental Study of Electrolyte Jet-Assisted Laser Micromachining and Punching

Yulan Hu, Guoqiang Liu, Weiguang Hao, Nannan Hu, B. Pan, Xin-Long Shi
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Abstract

For traditional laser processing methods, processing defects such as recast layers, micro cracks, and high concentration of heat-affected zones are inevitably generated, which reduces the quality of the micro-structured surface and service life. This paper proposes an electrolyte assisted laser mic micro fabrication technique that uses a laser beam and a corrosive jet of electrolyte fluid Coaxial on the artifacts. The corrosive electrolyte jet continuously scours, cools and micro-etches the processing area while the laser is working. The effect can reduce the thickness of the recast layer, reduce the number of micro-cracks, and eliminate the high concentration of heat affected zone. In this paper, the mechanism of laser-assisted laser micro fabrication is studied; mathematical model of fluid field and temperature field in laser-assisted drilling of electrolyte jet is established; experiment of electrolyte-assisted laser drilling and analysis of result are carried out. Electrolyte-jet-assisted laser micro fabrication, the basic processing technology, lays the foundation for further research on the electrolyte assisted laser micro fabrication technology .
电解液射流辅助激光微加工与冲压的仿真与实验研究
传统的激光加工方法不可避免地会产生重铸层、微裂纹、热影响区高度集中等加工缺陷,降低了微结构表面的质量和使用寿命。本文提出了一种电解液辅助激光麦克微加工技术,该技术利用激光束和电解液同轴腐蚀射流作用于工件上。当激光器工作时,腐蚀性电解质射流不断冲刷、冷却和微蚀刻加工区域。效果可以减少重铸层厚度,减少微裂纹数量,消除热影响区高度集中。本文研究了激光辅助激光微加工的机理;建立了激光辅助电解液射流钻孔流体场和温度场的数学模型;进行了电解辅助激光打孔实验,并对实验结果进行了分析。电解液射流辅助激光微加工是电解液射流辅助激光微加工的基础加工技术,为电解液辅助激光微加工技术的进一步研究奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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