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Study on Precision Microholes Using Pulsed Laser with Jet Electrochemical Machining

机译:喷射电化学加工脉冲激光加工精密微孔的研究

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摘要

The precision machining basically in the micron domain is a great challenge for advanced manufacturing industries. The assistance of laser beam with jet electrochemical machining process will localize the machining zone and helps to electrochemical dissolution of metal from the specific area which improves the machining quality and precision. Keeping in view, a hybrid laser-assisted jet electrochemical machine (LA-JECM) has been indigenously developed and utilized for microhole drilling experiments. The assistance of laser beam increases localization effect by increasing and maintaining the temperature in a predominant mode. A low-power Nd:YAG diode-pumped solid-state laser beam of wavelength 532 nm is used concentrically with electrolytic jet and carefully monitored its application; otherwise, electrolyte will start to boil due to supply of high laser beam energy and hamper the precision. The percentage of reduction in taper, overcut and average spark-affected zone are 32.3; 27.8; and 50.2%, respectively, when machining operations were carried out on LA-JECM over jet electrochemical machine. Taguchi method-based design of experiments is employed for experimental investigation, and acquired results are utilized for optimization of LA-JECM parameters for further improvement and precision.
机译:对于先进制造业来说,基本上在微米范围内的精密加工是一个巨大的挑战。激光束在喷射电化学加工过程中的辅助作用将使加工区域局部化,并有助于从特定区域电化学溶解金属,从而提高了加工质量和精度。请注意,混合激光辅助射流电化学仪(LA-JECM)已在本地开发并用于微孔钻探实验。激光束的辅助通过以主要模式增加和保持温度来增加定位效果。与电解射流同心使用波长为532 nm的低功率Nd:YAG二极管泵浦固态激光束,并仔细监控其应用;否则,由于提供高的激光束能量,电解液将开始沸腾,从而影响精度。锥度,过切度和平均火花影响区的减小百分比为32.3; 27.8;当在LA-JECM上通过喷射电化学仪进行机加工时,分别为50.2%和50.2%。基于Taguchi方法的实验设计用于实验研究,获得的结果用于优化LA-JECM参数,以进一步提高精度。

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