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An Experimental Study on Micro-Milling of a Medical Grade Co-Cr-Mo Alloy Produced by Selective Laser Melting

机译:选择性激光熔炼医学级Co-Cr-Mo合金微铣削的实验研究

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摘要

Cobalt-chromium-molybdenum (Co-Cr-Mo) alloys are very promising materials, in particular, in the biomedical field where their unique properties of biocompatibility and wear resistance can be exploited for surgery applications, prostheses, and many other medical devices. While Additive Manufacturing is a key technology in this field, micro-milling can be used for the creation of micro-scale details on the printed parts, not obtainable with Additive Manufacturing techniques. In particular, there is a lack of scientific research in the field of the fundamental material removal mechanisms involving micro-milling of Co-Cr-Mo alloys. Therefore, this paper presents a micro-milling characterization of Co-Cr-Mo samples produced by Additive Manufacturing with the Selective Laser Melting (SLM) technique. In particular, microchannels with different depths were made in order to evaluate the material behavior, including the chip formation mechanism, in micro-milling. In addition, the resulting surface roughness (Ra and Sa) and hardness were analyzed. Finally, the cutting forces were acquired and analyzed in order to ascertain the minimum uncut chip thickness for the material. The results of the characterization studies can be used as a basis for the identification of a machining window for micro-milling of biomedical grade cobalt-chromium-molybdenum (Co-Cr-Mo) alloys.
机译:钴铬钼(Co-Cr-Mo)合金是非常有前途的材料,特别是在生物医学领域,其独特的生物相容性和耐磨性可用于外科手术,假体和许多其他医疗设备。尽管增材制造是该领域的关键技术,但微铣削可用于在印刷零件上创建微观细节,这是增材制造技术无法获得的。尤其是,在涉及Co-Cr-Mo合金微铣削的基本材料去除机理领域缺乏科学研究。因此,本文介绍了采用选择性激光熔化(SLM)技术通过增材制造生产的Co-Cr-Mo样品的微铣削表征。特别是,制作了具有不同深度的微通道,以评估微铣削过程中的材料行为,包括切屑形成机理。另外,分析了所得的表面粗糙度(Ra和Sa)和硬度。最后,获取切削力并进行分析,以确定材料的最小未切削切屑厚度。表征研究的结果可以用作鉴定生物医学级钴铬钼(Co-Cr-Mo)合金微铣削加工窗口的基础。

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