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Laser Micromachining of Stainless Steels for Biomedical Applications

机译:用于生物医学应用的不锈钢激光微机械

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This paper shows how computational techniques have been used to develop axi-symmetric, straight, sonic-line, minimum length micro nozzles that are suitable for laser micro-machining applications. Gas jets are used during laser micro machining of medical device materials to shield the interaction zone between laser and workpiece material, and they determine the machining efficiency of such applications. The paper discusses the nature of laser-material interactions and the importance of using computational fluid dynamics to model pressure distributions in short nozzles that are used to deliver gas to the laser-material interaction zone. Experimental results are presented that highlight unique problems associated with laser micro machining using gas jets.
机译:本文介绍了如何使用计算技术来开发适用于激光微加工应用的轴对称,直线,声线的最小长度微喷嘴。在激光微加工期间使用气体喷射器的医疗器械材料,以屏蔽激光器和工件材料之间的相互作用区域,并且它们决定了这种应用的加工效率。本文讨论了激光物质相互作用的性质,以及利用计算流体动力学在用于将气体输送到激光材料相互作用区的短喷嘴中的模型压力分布的重要性。提出了实验结果,突出了使用气体喷射器的激光微加工相关的独特问题。

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