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首页> 外文期刊>Journal of biomaterials applications >Recent advances in research on magnesium alloys and magnesium-calcium phosphate composites as biodegradable implant materials
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Recent advances in research on magnesium alloys and magnesium-calcium phosphate composites as biodegradable implant materials

机译:镁合金及磷酸钙复合材料研究的最新进展,如可生物降解的植入物

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摘要

Magnesium alloys are modern biocompatible materials suitable for orthopaedic implants due to their biodegradability in biological environment. Many studies indicate that there is a high demand to design magnesium alloys with controllable in vivo corrosion rates and required mechanical properties. A solution to this challenge can be sought in the development of metal matrix composites based on magnesium alloys with addition of relevant alloying elements and bioceramic particles. In this study, the corrosion mechanisms along with corrosion protection methods in magnesium alloys are discussed. The recently developed magnesium alloys for biomedical applications are reviewed. Special attention is given to the newest research results in metal matrix composites composed of magnesium alloy matrix and calcium phosphates, especially hydroxyapatite or tricalcium phosphate, as the second phase with emphasis on the biodegradation behavior, microstructure and mechanical properties in view of potential application of these materials in bone implants.
机译:由于它们在生物环境中的生物降解性,镁合金是适用于整体植入物的现代生物相容性材料。许多研究表明,设计具有可控的体内腐蚀速率和所需机械性能的镁合金的需求。通过添加相关合金元素和生物陶瓷颗粒,可以寻求基于镁合金的金属基质复合材料来寻求这种挑战的解决方案。在该研究中,讨论了腐蚀机制以及镁合金中的腐蚀保护方法。综述了最近开发的生物医学应用的镁合金。特别注意最新的研究结果是由镁合金基质和磷酸钙,特别是羟基磷灰石或磷酸钙的金属基质复合材料,作为第二阶段,反向生物降解行为,微观结构和机械性能考虑到这些骨植入物中的材料。

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