Precision micromachining with pulsed green lasers

被引:92
作者
Chang, JJ [1 ]
Warner, BE [1 ]
Dragon, EP [1 ]
Martinez, MW [1 ]
机构
[1] Univ Calif Lawrence Livermore Natl Lab, Livermore, CA 94550 USA
关键词
laser materials processing; laser micromachining; microfabrication; copper vapor lasers;
D O I
10.2351/1.521863
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We have developed high-precision machining based on high-power pulsed green lasers (30-40 ns pulse width) at multi-kHz repetition rate. Dynamics of material removal has been investigated using a copper vapor laser. We found that noticeable surface evaporation starts to appear as laser intensity exceeds 10(7) W/cm(2). Material removal is then dominated by ablation at higher laser intensities. However, strong plasma absorption starts to appear as laser intensity exceeds 2GW/cm(2). This prolongs material heating by hot plasma via electron conduction, resulting in noticeable melt formation and expulsion. Maintaining laser radiance below the plasma-ignition threshold minimizes this melt formation. The optimum rate of ablation on metals was found to be similar to 1 mu m/pulse with a laser fluence of 50 J/cm(2). Higher material removal rate can be achieved at higher fluence, but is mostly accompanied with unwanted melt formation and ejection. By keeping laser intensity within a few GW/cm(2), we have demonstrated high-aspect-ratio machining with micron-scale accuracy and negligible heat affected zone. High-quality percussion drilling, trepanning, grooving, and slotting were demonstrated on metals and ceramics with a negligible heat affected zone. Straight holes with sizes varying from 500 to less than 25 mu m were consistently drilled with a height-to-diameter ratio up to 40. The high quality machining with scalable machining speed promises expanded use of pulsed green lasers in micromachining. (C) 1998 Laser Institute of America. [S1042-346X(98)00906-1].
引用
收藏
页码:285 / 291
页数:7
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