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用于生物医学应用的具有β+α″+α'相的富钛TiZrNbTa中熵合金的结构、性能及腐蚀行为

Structure, Properties, and Corrosion Behavior of Ti-Rich TiZrNbTa Medium-Entropy Alloys with β+α″+α' for Biomedical Application.

作者信息

Wong Ka-Kin, Hsu Hsueh-Chuan, Wu Shih-Ching, Hung Tun-Li, Ho Wen-Fu

机构信息

Department of Chemical and Materials Engineering, National University of Kaohsiung, Kaohsiung 81148, Taiwan.

Department of Dental Technology and Materials Science, Central Taiwan University of Science and Technology, Taichung 40601, Taiwan.

出版信息

Materials (Basel). 2022 Nov 10;15(22):7953. doi: 10.3390/ma15227953.

Abstract

Five Ti-rich β+α″+α′ Ti−Zr−Nb−Ta biomedical medium-entropy alloys with excellent mechanical properties and corrosion resistance were developed by considering thermodynamic parameters and using the valence electron concentration formula. The results of this study demonstrated that the traditional valence electron concentration formula for predicting phases is not entirely applicable to medium-entropy alloys. All solution-treated samples with homogeneous compositions were obtained at a low temperature (900 °C) and within a short period (20 min). All solution-treated samples exhibited low elastic moduli ranging from 49 to 57 GPa, which were significantly lower than those of high-entropy alloys with β phase. Solution-treated Ti65−Zr29−Nb3−Ta3 exhibited an ultra-high bending strength (1102 MPa), an elastic recovery angle (>30°), and an ultra-low elastic modulus (49 GPa), which are attributed to its α″ volume fraction as high as more than 60%. The pitting potentials of all samples were higher than 1.8 V, and their corrosion current densities were lower than 10−5 A/cm3 in artificially simulated body fluid at 37 °C. The surface oxide layers on Ti65−Zr29−Nb3−Ta3 comprised TiO2, ZrO2, Nb2O5, and Ta2O5 (as discovered through X-ray photoelectron spectroscopy) and provided the alloy with excellent corrosion and pitting resistance.

摘要

通过考虑热力学参数并使用价电子浓度公式,开发了五种具有优异力学性能和耐腐蚀性的富钛β+α″+α′ Ti-Zr-Nb-Ta生物医学中熵合金。本研究结果表明,传统的用于预测相的价电子浓度公式并不完全适用于中熵合金。所有成分均匀的固溶处理样品均在低温(900℃)和短时间(20分钟)内获得。所有固溶处理样品的弹性模量较低,范围为49至57 GPa,显著低于具有β相的高熵合金。固溶处理的Ti65-Zr29-Nb3-Ta3表现出超高的弯曲强度(1102 MPa)、弹性回复角(>30°)和超低的弹性模量(49 GPa),这归因于其高达60%以上的α″体积分数。在37℃的人工模拟体液中,所有样品的点蚀电位均高于1.8 V,腐蚀电流密度均低于10−5 A/cm3。Ti65-Zr29-Nb3-Ta3表面的氧化层由TiO2、ZrO2、Nb2O5和Ta2O5组成(通过X射线光电子能谱发现),为合金提供了优异的耐腐蚀和抗点蚀性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22e4/9696250/81c86b32d8a0/materials-15-07953-g001.jpg

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