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The effect of ageing on microstructure and mechanical properties of powder Ti–5Al–5Mo–5V–1Cr–1Fe alloy

机译:老化对粉末Ti-5A-5MO-5V-1C-1Fe合金组织和力学性能的影响

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摘要

The thermo-mechanically processed powder Ti-5Al-5V-5Mo-1Cr-1Fe alloy was aged at 9.23 K for 1-8 h in order to investigate the effect of ageing time on the microstructure-mechanical properties relationships. The microstructures of the alloy after ageing cosist of the both primary and secondary alpha phases with retained B matrix phase. The shift of B peaks in X-ray pattern with ageing time indicates an increase in lattice parameter distorition due to diffusion into the retained B phase of more B stabilisers with smaller atomic radius compared to the elemental Ti. The tensile test results indicate that the sample aged for 1 h has achieved the best combination of mechanical properties with ultimate tensile strength of 1194 MPa and total elongation of 14/1% among all the experimented conditioins. The modified Crussard-Jaoul method is applied to characterise the work hardening behaviour of the alloy.
机译:热机械加工的粉末Ti-5Al-5V-5MO-1CR-1FE合金在9.23k时,1-8小时,以研究老化时间对微观结构 - 机械性质关系的影响。初级和次生α相的老化辅助奖学性与保留B基质相的合金的微观结构。具有老化时间的X射线图案的B峰值的偏移表明,与元素Ti相比,由于扩散到具有较小原子半径的更多B稳定器的保留B相的扩散而增加的晶格参数浪琴的增加。拉伸试验结果表明,1小时的样品已经实现了具有1194MPa的最终拉伸强度的最佳机械性能的组合,并且在所有实验的条件中的总伸长率为14/1%。改进的Crussard-Jaoul方法用于表征合金的工作硬化行为。

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