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Study of corrosion in biocompatible metals for implants: A review

机译:用于植入物生物相容性金属腐蚀的研究:综述

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摘要

High requirements in biomedical applications are yet to be met, equally in joint and bone substitution and the healing and renewal of bone weaknesses. The compatibility with the human body is the main precondition for the choice of biomaterials, which should thus have some significant properties that will be durable for use in the body without rejection. This paper concentrates, especially, on biocompatible metals, although there are also biomaterials made of polymers, ceramics, and composite materials. Considerations in selecting materials for biomedical applications such as biocompatibility, the high corrosion and wear resistance, and osseointegration are discussed. This paper reviews the applications of three main types of biocompatible metal, namely, stainless steels, cobalt-chromium alloys, and titanium and its alloys. The corrosion resistance of each alloy is in focus. It can be confidently declared that biocompatible metals will continue to be used as biomaterials in the future with further improvements and new revolutionary bio-functionalities in the use of metals. (C) 2017 Elsevier B.V. All rights reserved.
机译:生物医学应用中的高要求尚待达到联合和骨替代以及骨缺陷的愈合和更新。与人体的兼容性是用于选择生物材料的主要前提,因此应该具有一些显着的性能,这将在没有排斥的情况下用于身体的耐用性。本文浓缩,特别是在生物相容性金属上,尽管也存在由聚合物,陶瓷和复合材料制成的生物材料。讨论了对生物医学应用的材料选择材料,例如生物相容性,高腐蚀和耐磨性以及骨整合的材料。本文综述了三种主要类型的生物相容金,即不锈钢,钴 - 铬合金和钛及其合金的应用。每个合金的耐腐蚀性是焦点。可以自信地宣布,生物相容性金属将继续用作未来的生物材料,进一步改进和新的革命性生物功能在使用金属。 (c)2017年Elsevier B.V.保留所有权利。

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