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含铟β 型 Ti-Nb 合金的热机械加工。

Thermomechanical processing of In-containing β-type Ti-Nb alloys.

机构信息

Institute for Complex Materials, Leibniz Institute for Solid State and Materials Research Dresden (IFW Dresden), Helmholtzstr. 20, D-01069 Dresden, Germany; Institute of Materials Science, Dresden University of Technology, Helmholtzstr. 7, D-01069 Dresden, Germany.

Institute for Complex Materials, Leibniz Institute for Solid State and Materials Research Dresden (IFW Dresden), Helmholtzstr. 20, D-01069 Dresden, Germany.

出版信息

J Mech Behav Biomed Mater. 2018 Mar;79:283-291. doi: 10.1016/j.jmbbm.2017.12.028. Epub 2017 Dec 29.

Abstract

In this study, the effect of thermomechanical processing on microstructure evolution of the indium-containing β-type Ti alloys (Ti-40Nb)-3.5In and (Ti-36Nb)-3.5In was examined. Both alloys show an increased β-phase stability compared to binary alloys due to In additions. This leads to a reduced α''-phase fraction in the solution treated and recrystallized state in the case of (Ti-36Nb)-3.5In and to the suppression of stress-induced α'' formation and deformation twinning for (Ti-40Nb)-3.5In. The mechanical properties of the alloys were subsequently studied by quasistatic tensile tests in the recrystallized state, revealing reduced Young's modulus values of 58GPa ((Ti-40Nb)-3.5In) and 56GPa ((Ti-36Nb)-3.5In) compared to 60GPa as determined for Ti-40Nb. For both In-containing alloys the ultimate tensile strength is in the range of 560MPa. Due to the suppressed α'' formation, (Ti-40Nb)-3.5In exhibits a linear elastic deformation behavior during tensile loading together with a low Young's modulus and is therefore promising for load-bearing implants.

摘要

在这项研究中,研究了热机械加工对含铟的β型 Ti 合金(Ti-40Nb)-3.5In 和(Ti-36Nb)-3.5In 微观结构演化的影响。由于铟的添加,这两种合金与二元合金相比表现出更高的β相稳定性。这导致在(Ti-36Nb)-3.5In 的固溶处理和再结晶状态下α''相分数减少,并抑制了(Ti-40Nb)-3.5In 中应力诱导的α''形成和变形孪晶。随后通过在再结晶状态下进行准静态拉伸试验研究了合金的力学性能,结果表明,与 Ti-40Nb 测定的 60GPa 相比,(Ti-40Nb)-3.5In 的杨氏模量值降低至 58GPa,(Ti-36Nb)-3.5In 的杨氏模量值降低至 56GPa。对于这两种含铟合金,其抗拉强度均在 560MPa 范围内。由于α''的形成受到抑制,(Ti-40Nb)-3.5In 在拉伸加载过程中表现出线性弹性变形行为,同时杨氏模量较低,因此有望用于承重植入物。

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