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Corrosion behaviour of magnesium alloys for biomedical use

机译:用于生物医学的镁合金的腐蚀性能

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Magnesium alloys attract attention as a biodegradable/bioabsorbable metallic material because of the higher strength and toughness than those of biodegradable polymers and ceramics. However, practical application of Mg alloys makes little progress due to the too rapid corrosion in physiological environments. New alloys and surface coatings are developed to improve the corrosion resistance and biocompatibility. On the other hand, in vivo corrosion rate of Mg alloys was often considerably different from that obtained with in vitro corrosion test designed for conventional metallic biomaterials such as Ti alloys. It is thus a critical issue for Mg alloys to develop appropriate corrosion evaluation methods, for that it is necessary to elucidate corrosion characteristics of Mg alloys. We examined some characteristic corrosion factors for Mg alloys using a rotating electrode, and also developed calcium phosphate coatings to control Mg alloy corrosion. In this paper, influence of various physiological corrosion factors is summarized, and corrosion behaviour of developed calcium phosphate-coated magnesium alloys is also briefly described.
机译:镁合金作为一种可生物降解/可生物吸收的金属材料而受到关注,因为它比可生物降解的聚合物和陶瓷具有更高的强度和韧性。然而,由于在生理环境中腐蚀过快,镁合金的实际应用进展甚微。开发了新的合金和表面涂层,以提高耐腐蚀性和生物相容性。另一方面,Mg合金的体内腐蚀速率通常与为传统金属生物材料(如Ti合金)设计的体外腐蚀试验获得的腐蚀速率有很大差异。因此,开发适当的腐蚀评估方法对于镁合金来说是一个关键问题,因为有必要阐明镁合金的腐蚀特性。我们使用旋转电极检查了镁合金的一些特征腐蚀因子,并开发了磷酸钙涂层来控制镁合金腐蚀。本文总结了各种生理腐蚀因素的影响,并简要描述了已开发的磷酸钙涂层镁合金的腐蚀行为。

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