Characterization and Degradation Behaviour of Anodized Magnesium-Hydroxyapatite Metal Matrix Composites

P. Gill, N. Munroe, A. McGoron
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引用次数: 4

Abstract

Recently, magnesium (Mg) alloys have inspired a significant amount of attention from researchers all over the world for implant applications due to their light weight, mechanical integrity and degradation behaviour. The major concerns with Mg implants are its rapid and non-uniform degradation, which can increase the risk of leached ions and can cause premature failure. In this study, Mg based alloys/metal matrix composites (MgZnCa/HA) were mechanically and electrochemically (anodized) surface treated. In-vitro corrosion tests revealed that the addition of hydroxyapatite (HA) and anodizing, stabilizes the corrosion process and lowers hydrogen evolution. Evidence of reduced degradation was provided by the presence of a relatively smooth surface morphology after corrosion. Furthermore, exposure of leached ions on osteoblast cells indicated good cytocompatibility.
阳极氧化镁-羟基磷灰石金属基复合材料的表征与降解行为
近年来,镁(Mg)合金因其重量轻、机械完整性好、易降解等优点引起了世界各地研究人员的广泛关注。Mg植入物的主要问题是其快速和不均匀的降解,这可能增加离子浸出的风险,并可能导致过早失效。在本研究中,对Mg基合金/金属基复合材料(MgZnCa/HA)进行了机械和电化学(阳极氧化)表面处理。体外腐蚀试验表明,羟基磷灰石(HA)的加入和阳极氧化可以稳定腐蚀过程,降低析氢量。腐蚀后相对光滑的表面形貌提供了减少降解的证据。此外,浸出离子暴露在成骨细胞上显示出良好的细胞相容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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