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Parametric Analysis on Surface Roughness of Micro-channel by Fiber Laser Milling on Zirconia (ZrO_2)

机译:氧化锆纤维激光研磨微通道表面粗糙度的参数分析(ZrO_2)

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In the present days, the requirement of micro-machining has seen a rapid growth for the fabrication of precision machining of complex parts in automobile, shipbuilding, aerospace, electronics, medical industries, etc. Surface finish of these types of components is one of the most important criteria for fabricating better quality and to avoid failure caused by surface defects. The paper addresses the experimental investigation for the variation of surface roughness of micro-channel milling on flat zirconia (ZrO_2) ceramics by using a pulsed fiber laser system. In this work, considered parameters are laser power, pulse frequency, laser scan speed, and the number of scan while responses considered are surface roughness parameters, i.e., R_a and R_z. The experimental results show that aforesaid factors revealed huge influences on surface finish criteria on machined micro-channel on zirconia ceramics.
机译:在目前的日子里,微加工的要求表明,在汽车,造船,航空航天,电子,医疗产业等复杂部件的精密加工方面的快速增长。这些类型的组件的表面光洁度是其中之一 制造更好质量的最重要标准,避免表面缺陷引起的故障。 本文通过使用脉冲光纤激光系统,解决了微通道(ZrO_2)陶瓷对微通道铣削的表面粗糙度变化的实验研究。 在这项工作中,考虑参数是激光功率,脉冲频率,激光扫描速度和扫描次数,而考虑的响应是表面粗糙度参数,即R_A和R_Z。 实验结果表明,上述因素揭示了对氧化锆陶瓷加工微通道的表面饰面标准的巨大影响。

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