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The effects of #alpha# / #beta# volume fraction on the superplastic deformation behavior of Ti-6Al-4V alloy

机译:#alpha#/#beta#体积分数对Ti-6Al-4V合金超塑性变形行为的影响

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Present investigation has been made to study the superplastic deformation behavior of Ti-6Al-4V alloy with respect to the variation of #alpha# / #beta# volume fraction. The results have been analyzed by the theory of inelastic deformation which consists of two mechanisms, i.e., the grain matrix deformation and the phase/grain boundary sliding. Grain matrix deformation is found to be dominant at 600 deg C and well described by the plastic state equation when a permeability parameter, p, is 0.15. Phase boundary sliding becomes dominant at 800 deg C and also consistent with the viscous flow equation with M_g chemical bounds 0.5. The flow stress curves for the fine grained structures (3 #mu# m) are well agreed with the iso-stress model, while those for large grained materials are the mixed mode of iso-stress and iso-strain rate modes. The largest elongation obtained in the 48
机译:目前已经进行了研究,以研究Ti-6Al-4V合金相对于#alpha#/#beta#体积分数变化的超塑性变形行为。通过非弹性变形理论对结果进行了分析,该理论由两种机制组成,即晶粒基体变形和相/晶界滑动。发现晶粒基体变形在600摄氏度时占主导,当渗透率参数p为0.15时,塑性状态方程很好地描述了该变形。相边界滑动在800摄氏度时占主导地位,并且与M_g化学界为0.5的粘性流动方程式一致。细晶粒结构(3#μm)的流应力曲线与等应力模型非常吻合,而大颗粒材料的流应力曲线是等应力和等应变率模式的混合模式。在48中获得的最大伸长率

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