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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Micromachining of stainless steel-polymer composites using nanosecond and femtosecond UV lasers
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Micromachining of stainless steel-polymer composites using nanosecond and femtosecond UV lasers

机译:使用纳秒和飞秒紫外激光对不锈钢-聚合物复合材料进行微加工

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摘要

The fabrication of microstructures using high-strength anti-corrosive materials is a topic of intense investigation. In this work, we investigate micromachining processes for fabricating stainless steel-polymer composites using nanosecond (excimer) and femtosecond (Ti:sapphire) lasers at ultraviolet wavelengths. The laser ablation mechanisms were analyzed as a function of the laser source and process parameters. Microdrilling and grooving of the composite were used to evaluate the process performance. The ns laser processing mechanism at relatively low fluences relied mainly on ablation with photothermal/photochemical decomposition of the binder resin without permanently affecting the stainless steel particles. On the other hand, ns laser pulse irradiation at high fluences induced significant melting and agglomeration of the particles, which lowered the ablation rate and were detrimental to the micromachining performance. During the high-intensity femtosecond laser processing (>TW/cm~2), the laser pulse directly ablated the particles and the binder without inducing significant thermal effects. Microstructures 10 μm in size (average particle size) and with an aspect ratio of ~10 were fabricated.
机译:使用高强度防腐材料制造微结构是一个深入研究的课题。在这项工作中,我们研究了使用紫外波长的纳秒(准分子)和飞秒(Ti:蓝宝石)激光制造不锈钢-聚合物复合材料的微细加工工艺。分析了激光烧蚀机理,作为激光源和工艺参数的函数。复合材料的微钻孔和开槽用于评估工艺性能。 ns激光在较低注量下的加工机理主要取决于烧蚀和粘合剂树脂的光热/光化学分解,而不会永久性地影响不锈钢颗粒。另一方面,在高能量密度下的ns激光脉冲辐照引起颗粒的显着熔化和附聚,这降低了烧蚀速率并且对微加工性能有害。在高强度飞秒激光加工(> TW / cm〜2)期间,激光脉冲直接烧蚀颗粒和粘合剂,而不会产生明显的热效应。制作了尺寸为10μm(平均粒径)且长径比为〜10的微结构。

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