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Synthesis of nickel-free bulk metallic glasses and their biomedical applications.

机译:无镍块状金属玻璃的合成及其生物医学应用。

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摘要

A series of Ni-free Zr-based bulk metallic glasses have been developed. These Ni-free bulk metallic glasses show excellent mechanical properties, for instance 1.71 GPa tensile strength and 2.25% elasticity. Crystallization studies on these Ni-free alloys show a nano-sized icosaheral phase with a lattice constant of about 4.76 A followed by the formation of Zr 2Fe and other phases. The icosaheral phase possibly grows from a phase-separated region. The good mechanical properties of these alloys and the fact that they contain no Ni make them particularly interesting for biomedical applications. One of these would be to prepare stents from these Ni-free bulk metallic glasses to prevent aneurisms in the human brain.; Corrosion and cytotoxicity studies were performed on these Ni-free Zr-based alloys as well as on other Zr-based bulk metallic glasses. In simulated human body fluid, all Zr-based alloys have an extremely low free corrosion current, comparable to that of stainless steel 316L, while their breakdown potential is relatively low. Cytotoxicity tests on the Zr-based alloys also reveal their excellent viability and metabolic activity. Among the alloys, the Ni-free bulk metallic glass has the best metabolic activity, indicating that Ni as an alloying element negatively influences the biocompatibility of metallic glasses.
机译:已经开发了一系列无Ni的Zr基块状金属玻璃。这些不含镍的块状金属玻璃具有出色的机械性能,例如1.71 GPa的拉伸强度和2.25%的弹性。这些无镍合金的结晶研究表明,具有约4.76 A的晶格常数的纳米级二十面相,随后形成Zr 2Fe和其他相。二十面体相可能从相分离的区域生长。这些合金的良好机械性能以及它们不含镍的事实使它们在生物医学应用中特别有趣。其中之一是用这些无镍块状金属玻璃制备支架,以防止人脑动脉瘤。在这些不含镍的Zr基合金以及其他Zr基大块金属玻璃上进行了腐蚀和细胞毒性研究。在模拟人体流体中,所有Zr基合金的自由腐蚀电流都非常低,可与316L不锈钢相媲美,而其击穿潜力却相对较低。对Zr基合金的细胞毒性测试还显示出它们出色的生存能力和代谢活性。在这些合金中,无镍块状金属玻璃具有最佳的代谢活性,表明镍作为合金元素会对金属玻璃的生物相容性产生负面影响。

著录项

  • 作者

    Jin, Kaifeng.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Materials Science.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;生物医学工程;
  • 关键词

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