首页> 外文期刊>镁合金学报(英文) >A homogenous microstructural Mg-based matrix model for orthopedic application with generating uniform and smooth corrosion product layer in Ringer’s solution:Study on biodegradable behavior of Mg-Zn alloys prepared by powder metallurgy as a case
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A homogenous microstructural Mg-based matrix model for orthopedic application with generating uniform and smooth corrosion product layer in Ringer’s solution:Study on biodegradable behavior of Mg-Zn alloys prepared by powder metallurgy as a case

机译:林晶溶液中发电均匀腐蚀产物层的矫形基于矫形型MG基矩阵模型:粉末冶金制备的Mg-Zn合金生物降解行为的研究

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摘要

For high corrosion resistance and extensively modified biodegradable Mg-based alloys and composites for bone implants,a new Mgbased matrix model prepared by powder metallurgy is discussed and developed.In this research,Mg-5 wt.%Zn alloys were selected as a case.And they were impacted by hot extrusion and aging treatments to construct microstructure with different characteristics.Their selfforming corrosion product layer in Ringer’s solution,biodegradable behavior and corrosion mechanism were minutely investigated by in vitro degradation,electrochemical corrosion and cytocompatibility.The results demonstrated the extruded Mg-5 wt.%Zn alloy aged for 96 h showed high corrosion resistance,good biocompatibility for L929 and excellent ability of maintaining sample integrity during the immersion.Significantly,the alloy showed fine-grain microstructure and uniform distributed hundred nano-sized second phases,which promoted the formation of the uniform and smooth corrosion product layer at the beginning of immersion.The corrosion product layer was more stable in chloride containing aqueous solution and could be directly formed and repaired quickly,which effectively protected the matrix from further corrosion.In addition,an ideal model of Mg-based matrix for bone tissue engineering was tried to presume and propose by discussing the causal relationship between microstructure and bio-corrosion process.
机译:对于高耐腐蚀性和广泛改性的可生物降解的Mg基合金和用于骨植入物的复合材料,讨论并开发了通过粉末冶金制备的新的MgAbased基质模型。在本研究中,选择Mg-5重量%。选择%Zn合金作为壳体。它们受到热挤出和老化治疗的影响,以构建具有不同特性的微观结构。通过体外降解,电化学腐蚀和细胞相容地将ringer溶液,可生物降解的行为和腐蚀机制进行抗皱腐蚀产品层。结果证明了挤出的Mg -5重量%Zn合金96小时,显示出高耐腐蚀性,L929的良好生物相容性以及在浸入过程中保持样品完整性的优异能力。合金显示出细粒度微观结构和均匀的分布百分之百纳米尺寸的第二阶段,这促进了均匀和光滑的腐蚀产品层的形成浸没的开始。腐蚀产物层在含水溶液中更稳定,可以快速地直接形成和修复,从而有效地保护了基质的进一步腐蚀。另外,骨组织工程基于Mg基质的理想模型试图通过讨论微观结构与生物腐蚀过程之间的因果关系来推测和提出。

著录项

  • 来源
    《镁合金学报(英文)》 |2021年第001期|P.225-240|共16页
  • 作者单位

    School of Materials Science and Engineering Central South University Changsha 410083 China;

    School of Materials Science and Engineering Central South University Changsha 410083 China;

    School of Materials Science and Engineering Central South University Changsha 410083 China;

    School of Materials Science and Engineering Central South University Changsha 410083 China;

    School of Materials Science and Engineering Central South University Changsha 410083 China;

    School of Materials Science and Engineering Central South University Changsha 410083 China;

    The Second Xiangya Hospital Central South University Changsha 410011 China;

    The Third Xiangya Hospital Central South University Changsha 410011 China;

    The Second Xiangya Hospital Central South University Changsha 410011 China;

    School of Materials Science and Engineering Central South University Changsha 410083 ChinaDepartment of Materials Science and Engineering Yantai Nanshan University Yantai 265713 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 金属学与热处理;
  • 关键词

    Magnesium alloys; Powder metallurgy; Second phase; Corrosion product layer; Biodegradable behavior; Cytocompatibility;

    机译:镁合金;粉末冶金;第二阶段;腐蚀产物层;可生物降解的行为;细胞势杂性;
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