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The ELID Grinding of CoCrMo Alloy Bioprosthesis and the Formation Mechanism of its Corrosion-Resistant Oxide Layer

机译:CoCrMo合金生物假体的ELID研磨及其耐腐蚀氧化物层的形成机理

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摘要

CoCrMo alloy is widely used in the medical field to make Biomedical prosthesis,But it is difficult to process resulting in the high cost of Biomedical prosthesis, Find an efficient and low-cost processing method has become a problem to be solved. In this paper, CoCrMo alloy Biomedical prosthesis were fabricated by Electrolytic In-process Dressing grinding. We studied the ELID grinding performance, grinding force, surface quality and the formation mechanism of Corrosion-resistant oxide layer of CoCrMo alloy by using dynamometer, roughness tester, XRD and SEM. It is proposed that the ELID grinding method forms an oxide layer on the surface of the prosthesis, which increases the corrosion resistance and biocompatibility of the prosthesis so that it can be better adapt to the biological environment in vivo. It was further confirmed that the ELID grinding method is an effective method for manufacturing CoCrMo Alloy Bioprosthesis.
机译:CoCrMo合金在医学领域广泛用于制造生物医学假体,但由于加工难度大,导致生物医​​学假体成本高,寻找一种高效,低成本的加工方法已成为亟待解决的问题。本文通过电解过程修整磨削制备了CoCrMo合金生物医学假体。利用测力计,粗糙度仪,XRD和SEM对CoCrMo合金的ELID磨削性能,磨削力,表面质量以及耐腐蚀氧化层的形成机理进行了研究。提出ELID研磨方法在假体的表面上形成氧化层,这增加了假体的耐腐蚀性和生物相容性,从而可以更好地适应体内的生物环境。进一步证实,ELID研磨方法是制造CoCrMo合金生物假体的有效方法。

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