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Copper vapor laser machining of polyimide and polymethylmethacrylate in atmospheric pressure air

机译:聚酰亚胺铜蒸气激光加工大气压空气中的聚酰亚胺和聚甲基丙烯酸甲酯

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摘要

A repetitively pulsed copper vapor laser (510 and 578 nm) is used to machine an opaque polymer (polyimide‐Vespel) and a transparent polymer (polymethylmethacrylate‐Lucite). Lucite is machinable by coating the surface with an ink which is semi‐opaque to the green and yellow laser light. The repetition rate of the laser was 10 kHz with approximately 0.35 mJ/pulse and 3.5 W average power at the copper vapor laser wavelengths for a pulse width of 40 ns. The copper vapor laser thermally loads the target, generating thermal waves and sound waves in the gas which are investigated using HeNe laser beam deflection. The gas adjacent to the target is heated to steady state on the order of 100–400 s. Above the etching threshold, at approximately 10 mJ/cm2/pulse, the target is rapidly machined: 2‐mm‐diam, 2‐mm‐deep holes are drilled in 300 s in Vespel. At higher fluences of 100–150 mJ/cm2/pulse in 760 Torr of air it takes 180 s to bore through a 2‐mm‐thick disk of Vespel. The machined surfaces of the two polymers are very different. Machined Vespel samples are charred and cratered, whereas the Lucite samples show evidence of melting with little charring. The machining of polymers by visible‐light copper vapor lasers is being compared to UV photoablation by KrF excimer laser light in order to study thermal versus nonthermal etching mechanisms.
机译:重复脉冲铜蒸汽激光器(510和578nm)用于为不透明的聚合物(聚酰亚胺 - Vespel)和透明聚合物(聚甲基甲基丙烯酸甲酯 - Lucite)。通过用墨水涂覆表面,透光率可加工,该墨水与绿色和黄色激光半透明。激光的重复率为10kHz,铜蒸气激光波长为约0.35MJ /脉冲和3.5W的平均功率,脉冲宽度为40ns。铜蒸汽激光热负载目标,在使用HENE激光束偏转中研究的气体中的热波和声波。与靶相邻的气体加热到100-400秒的稳态。在蚀刻阈值之上,在大约10mJ / cm 2 /脉冲,目标快速加工:2毫米 - 直径,在vespel中钻出300毫米的深孔。在760托的空气中,在100-150 MJ / cm2 /脉冲的较高流量下,通过2毫米厚的Vespel钻孔需要180秒。两种聚合物的加工表面非常不同。机加工的VISPEL样品被烧焦和陨石坑,而Lucite样品呈现出熔化的证据。通过可见光铜蒸气激光加工通过KRF准分子激光的UV光电加工,以便研究热量与非热蚀刻机构。

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