首页> 外文会议>International Conference on Superplasticity in Advanced Materials;ICSAM; 20060623-26;20060623-26; Chengdu(CN);Chengdu(CN) >A Study on Superplastic Behavior and Microstructural Evolution of an Isothermally Forged TiAl based Alloy
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A Study on Superplastic Behavior and Microstructural Evolution of an Isothermally Forged TiAl based Alloy

机译:等温锻造TiAl基合金的超塑性行为和组织演变研究

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摘要

Superplastic behavior and microstructure evolution of an isothermally forged Ti-47Al-1Cr-1V-1.5Mo-1.5Nb alloy were investigated. The results showed that the strain rate sensitivity index, m, increased with strain during the superplastic deformation, and it kept as a constant when the strain reached a certain value. The maximum value of m was 0.53 at 900℃ and strain rate of 5 × 10~(-4)s~(-1). During the superplastic deformation, the as received material with lamellae and subgrains were refined due to dynamic recrystallization, and small and equiaxed grains with high angle boundaries were formed, creating a better condition for superplastic deformation. Grain boundary sliding and boundary migration were the main superplastic deformation mechanisms and slip and twining were also very important during the superplastic deformation of the alloy.
机译:研究了等温锻造Ti-47Al-1Cr-1V-1.5Mo-1.5Nb合金的超塑性行为和组织演变。结果表明,在超塑性变形过程中,应变率敏感性指数m随应变而增加,当应变达到一定值时,应变率敏感性指数m保持恒定。 m在900℃下的最大值为0.53,应变率为5×10〜(-4)s〜(-1)。在超塑性变形过程中,由于动态再结晶而细化了具有片状和亚晶粒的材料,形成了具有高角度边界的小等轴晶,为超塑性变形创造了更好的条件。晶界滑动和边界迁移是主要的超塑性变形机理,在合金的超塑性变形过程中,滑移和孪生也非常重要。

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