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Zr-Mo 合金的微观结构、力学性能、腐蚀行为和体外生物相容性。

Microstructure, mechanical property, corrosion behavior, and in vitro biocompatibility of Zr-Mo alloys.

机构信息

Center for Biomedical Materials and Engineering, Harbin Engineering University, Harbin 150001, China.

出版信息

J Biomed Mater Res B Appl Biomater. 2013 Feb;101(2):237-46. doi: 10.1002/jbm.b.32833. Epub 2012 Nov 10.

Abstract

In this study, the microstructure, mechanical properties, corrosion behaviors, and in vitro biocompatibility of Zr-Mo alloys as a function of Mo content after solution treatment were systemically investigated to assess their potential use in biomedical application. The experimental results indicated that Zr-1Mo alloy mainly consisted of an acicular structure of α' phase, while ω phase formed in Zr-3Mo alloy. In Zr-5Mo alloy, retained β phase and a small amount of precipitated α phase were observed. Only the retained β phase was obtained in Zr-10Mo alloy. Zr-1Mo alloy exhibited the greatest hardness, bending strength, and modulus among all experimental Zr-Mo alloys, while β phase Zr-10Mo alloy had a low modulus. The results of electrochemical corrosion indicated that adding Mo into Zr improved its corrosion resistance which resulted in increasing the thermodynamic stability and passivity of zirconium. The cytotoxicity test suggested that the extracts of the studied Zr-Mo alloys produced no significant deleterious effect to fibroblast cells (L-929) and osteoblast cells (MG 63), indicating an excellent in vitro biocompatibility. Based on these facts, certain Zr-Mo alloys potentially suitable for different biomedical applications were proposed.

摘要

本研究系统研究了固溶处理后 Zr-Mo 合金的微观结构、力学性能、腐蚀行为和体外生物相容性与其钼含量的关系,以期评估其在生物医学应用中的潜力。实验结果表明,Zr-1Mo 合金主要由针状α'相组成,而 Zr-3Mo 合金中形成ω相。Zr-5Mo 合金中存在残留β相和少量析出α相,而 Zr-10Mo 合金中仅存在残留β相。Zr-1Mo 合金表现出所有实验 Zr-Mo 合金中最大的硬度、抗弯强度和模量,而β相的 Zr-10Mo 合金具有较低的模量。电化学腐蚀结果表明,向 Zr 中添加 Mo 可提高其耐腐蚀性,从而提高锆的热力学稳定性和钝化性。细胞毒性试验表明,所研究的 Zr-Mo 合金的浸提液对成纤维细胞(L-929)和成骨细胞(MG63)没有明显的有害影响,表明其具有良好的体外生物相容性。基于这些事实,提出了某些 Zr-Mo 合金可能适用于不同的生物医学应用。

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