Research on the Drilling Property of Titanium Alloys by Quasi-continuous-wave Laser

Chang-Yong Tian, Xiao-Jun Wang, Xiao-Ni Zhang, Yuan-Hua Zhang, D. Cui, Q. Peng, Zu-Yan Xu
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Abstract

The velocity of the surface airflow is an important factor for laser machining. A laser drilling experimental platform of titanium alloy, with 0~0.2Ma airflow, is established totest the machining efficiency feature. AQuasi-Continuous-Wave (QCW) pulsed Nd: YAG laser with the max power up to 2000 W is used as the drilling source, operating at a repetition rate of 400 Hz and pulse duration of 200μs. The purpose of our study was to relate the environment condition and the parameters of the laser to the machining efficiency. Analysis wasmade in this paper for the high machining efficiency feature by QCW laser compared to the CW laser. Experimental results show thathigher machining efficiency is caused by higher airflow rate, which would benefit for the performance of lasermachining.
准连续波激光对钛合金钻孔性能的研究
表面气流的速度是激光加工的一个重要因素。建立了气流为0~0.2Ma的钛合金激光打孔实验平台,对其加工效率特性进行了测试。钻孔源采用最大功率达2000 W的准连续波(QCW)脉冲Nd: YAG激光器,工作频率为400 Hz,脉冲持续时间为200μs。研究了环境条件和激光加工参数对加工效率的影响。分析了QCW激光器相对于连续波激光器加工效率高的特点。实验结果表明,较大的气流流速可提高加工效率,有利于提高激光加工的性能。
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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