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首页> 外文期刊>Journal of the European Ceramic Society >Droplet assisted laser micromachining of hard ceramics
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Droplet assisted laser micromachining of hard ceramics

机译:硬陶瓷的液滴辅助激光微加工

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Hard ceramic materials like tungsten carbide (WC) are extensively used in high value manufacturing, and micromachining of these materials with sufficient quality is essential to exploit its full potential. A new micro-machining technique called droplet assisted laser micromachining (DALM) was proposed and demonstrated as an alternative to the existing nanosecond (ns) dry pulse laser ablation (PLA). DALM involves injecting liquid micro-droplets at specific frequency during the nanosecond laser micromachining to create impulse shock pressure inside the laser irradiation zone. The impulse shock pressure is generated due to the explosive vaporisation of the droplet, during its interaction with high temperature laser irradiation zone. In this paper, the DALM uses a nanosecond pulsed Nd:YAG laser to machine tungsten carbide substrate. The results suggest that the impulse shock pressure generated during the DALM process can transform the melt ejection mechanism of the ns laser micromachining process. The change in ejection mechanism results in a 75% increase in material removal rate and 71% reduction in the spatter redeposited compared to conventional dry ns laser micromachining. (C) 2016 Published by Elsevier Ltd.
机译:硬质陶瓷材料(例如碳化钨(WC))被广泛用于高价值制造,而对这些材料进行充分质量的微加工对于充分发挥其潜力至关重要。提出了一种称为微滴辅助激光微加工(DALM)的新微加工技术,并证明了该微加工技术可以替代现有的纳秒(ns)干脉冲激光烧蚀(PLA)。 DALM涉及在纳秒级激光微加工过程中以特定频率注入液体微滴,以在激光辐照区内产生脉冲冲击压力。在液滴与高温激光辐照区相互作用期间,由于液滴的爆炸性蒸发而产生脉冲冲击压力。在本文中,DALM使用纳秒脉冲Nd:YAG激光加工碳化钨衬底。结果表明,在DALM过程中产生的脉冲冲击压力可以改变ns激光微加工过程的熔体喷射机理。与传统的干ns激光微加工相比,喷射机理的改变导致材料去除率提高了75%,沉积的沉积物减少了71%。 (C)2016由Elsevier Ltd.出版

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