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用于生物医学应用的不同 Zr/Cu 比的无 Ni 的 Zr-Cu-Al-Nb-Pd 大块金属玻璃。

Ni-free Zr-Cu-Al-Nb-Pd bulk metallic glasses with different Zr/Cu ratios for biomedical applications.

机构信息

Key Laboratory of Aerospace Materials and Performance (Ministry of Education), School of Materials Science and Engineering, Beihang University, Beijing 100191, China.

出版信息

J Biomed Mater Res B Appl Biomater. 2012 Aug;100(6):1472-82. doi: 10.1002/jbm.b.32715. Epub 2012 Jun 12.

Abstract

Zr-based bulk metallic glasses (BMGs) possess attractive properties for prospective biomedical applications. The present study designs Ni-free Zr-Cu-Al-Nb-Pd BMGs and investigates their in vitro biocompatibility by studying mechanical properties, bio-corrosion resistance, and cellular responses. The Ti-6Al-4V alloy is used as a reference material. It is found that the Zr-based BMGs exhibit good mechanical properties, including high strengths above 1600 MPa, high hardness over 4700 MPa, and low elastic moduli of 85-90 GPa. The Zr-based BMGs are corrosion resistant in a simulated body environment, as revealed by wide passive regions, low passive current densities, and high pitting overpotentials. The formation of ZrO(2)-rich surface passive films of the Zr-based BMGs contributes to their high corrosion resistance, whereas their pitting corrosion in the phosphate buffered saline solution can be attributed to the sensitivity of the ZrO(2) films to the chloride ion. The general biosafety of the Zr-based BMGs is revealed by normal cell adhesions and cell morphologies. Moreover, the Zr/Cu content ratio in the alloy composition affects the biocompatibility of the Zr-based BMGs, by increasing their corrosion resistance and surface wettability with the increase of the Zr/Cu ratio. Effects of Zr/Cu ratios can be used to guide the future design of biocompatible Zr-based BMGs.

摘要

Zr 基块状金属玻璃(BMGs)具有有吸引力的特性,适用于有前景的生物医学应用。本研究设计了无 Ni 的 Zr-Cu-Al-Nb-Pd BMGs,并通过研究其机械性能、耐生物腐蚀性和细胞反应来研究其体外生物相容性。使用 Ti-6Al-4V 合金作为参考材料。研究发现,Zr 基 BMGs 具有良好的机械性能,包括超过 1600 MPa 的高强度、超过 4700 MPa 的高硬度和 85-90 GPa 的低弹性模量。Zr 基 BMGs 在模拟体液环境中具有耐腐蚀性,这表现在宽的钝化区、低的钝化电流密度和高的点蚀过电位。Zr 基 BMGs 形成富含 ZrO2 的表面钝化膜,这有助于其具有高耐腐蚀性,而其在磷酸盐缓冲溶液中的点蚀腐蚀可归因于 ZrO2 膜对氯离子的敏感性。Zr 基 BMGs 的一般生物安全性通过正常的细胞黏附和细胞形态得到揭示。此外,合金成分中 Zr/Cu 比值的增加会增加其耐腐蚀性和表面润湿性,从而影响 Zr 基 BMGs 的生物相容性。Zr/Cu 比值的影响可用于指导未来设计具有生物相容性的 Zr 基 BMGs。

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