首页> 外文期刊>Metallurgical and Materials Transactions A >Improvement in Fatigue Strength of Biomedical β-type Ti–Nb–Ta–Zr Alloy While Maintaining Low Young’s Modulus Through Optimizing ω-Phase Precipitation
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Improvement in Fatigue Strength of Biomedical β-type Ti–Nb–Ta–Zr Alloy While Maintaining Low Young’s Modulus Through Optimizing ω-Phase Precipitation

机译:通过优化ω相析出,在保持低杨氏模量的同时提高生物医学β型Ti–Nb–Ta–Zr合金的疲劳强度

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摘要

The improvement in fatigue strength, with maintenance of a low Young’s modulus, in a biomedical β-type titanium alloy, Ti–29Nb–13Ta–4.6Zr (TNTZ), by thermomechanical treatment was investigated. A short aging time at an ω-phase-forming temperature combined with severe cold rolling was employed. A fine ω phase is observed in TNTZ subjected to this thermomechanical treatment. Because the rolling texture of β phase is formed by cold rolling, such as the ω phase may be preferentially oriented to a direction that is effective for inhibiting the increase in Young’s modulus. The samples aged at 573 K (300 °C) for 3.6 ks and 10.8 ks after cold rolling exhibit a good balance between a high tensile strength and low Young’s modulus. In the case of the sample aged for 3.6 ks, the tensile strength is improved, although the fatigue strength is not improved significantly. Both the tensile strength and the fatigue strength of the sample aged for 10.8 ks are improved. This fatigue strength is the highest among the TNTZ samples used in the current and in previous studies with Young’s moduli less than 80 GPa.
机译:研究了通过热机械处理对生物医学β型钛合金Ti–29Nb–13Ta–4.6Zr(TNTZ)的疲劳强度的改善,并保持了较低的杨氏模量。在ω相形成温度下的短时效时间与严厉的冷轧相结合。在经过该热机械处理的TNTZ中观察到了精细的ω相。因为β相的轧制织构是通过冷轧形成的,所以诸如ω相的取向可以优选地定向在有效抑制杨氏模量增加的方向上。冷轧后在573 K(300°C)下分别老化3.6 ks和10.8 ks的样品在高拉伸强度和低杨氏模量之间表现出良好的平衡。在样品老化3.6 ks的情况下,尽管疲劳强度没有明显改善,但抗拉强度有所提高。老化10.8 ks的样品的拉伸强度和疲劳强度均得到改善。在当前和以前的研究中,杨氏模量小于80 GPa的TNTZ样品中,这种疲劳强度最高。

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