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Hot Deformation Behavior of a Ti-40Al-10V Alloy with Quenching-Tempering Microstructure

机译:具有淬火回火组织的Ti-40Al-10V合金的热变形行为

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摘要

In this study, a Ti-40Al-10V alloy with quenching-tempering microstructure was prepared and was characterized by ultra-large β/B2 grains and submicrocrystalline γ laths within it. A definite Kurdjumov-Sachs orientation was identified between the β/B2 and γ phase. Isothermal compression tests were performed to examine the hot deformation behavior at various temperatures and strain rates. Based on the hyperbolic-sine equation, the deformation kinetics of the alloy were characterized by unexpectedly high activation energy (384 kJ/mol) and low stress exponent (2.25). For all the deformed samples, continuous dynamic recrystallization intensively occurred in the β matrix, accompanied by the simultaneous rotation of the γ laths. Moreover, a preferential orientation of <100>β and <111>γ parallel to the compression axis was observed for β and γ phase, respectively. With the decreasing strain rates, the grain boundary/interface sliding gradually became prominent, which resulted in some superplastic deformation features, e.g., intensive strain-induced grain growth and interface migration, enhancing “wetting” of the γ grain boundaries, continuous weakening/vanishing of the local texture, etc. Meanwhile, the temperature played an insignificant role in the hot deformation behavior. The deformation mechanism was discussed in detail based on the microstructural observations and deformation kinetics.
机译:在这项研究中,制备了具有淬火回火组织的Ti-40Al-10V合金,其特征在于其中具有超大的β/ B2晶粒和其中的亚微晶γ板条。在β/ B2和γ相之间确定了确定的Kurdjumov-Sachs取向。进行了等温压缩试验,以检验在各种温度和应变速率下的热变形行为。基于双曲正弦方程,该合金的变形动力学具有出乎意料的高活化能(384 kJ / mol)和低应力指数(2.25)。对于所有变形样品,在β基体中都会发生连续的动态重结晶,同时伴随着γ板条的同时旋转。此外,对于β相和γ相,分别观察到平行于压缩轴的<100>β和<111>γ的取向。随着应变率的降低,晶界/界面滑动逐渐突出,从而导致了一些超塑性变形特征,例如,强烈的应变诱导晶粒生长和界面迁移,增强了γ晶界的“润湿”,持续的减弱/消失。同时,温度在热变形行为中起着微不足道的作用。基于微观结构观察和变形动力学,详细讨论了变形机理。

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