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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Strain rate dependent microstructural evolution during hot deformation of a hot isostatically processed nickel base superalloy
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Strain rate dependent microstructural evolution during hot deformation of a hot isostatically processed nickel base superalloy

机译:热等静压加工的镍基高温合金热变形过程中取决于应变率的微观组织演变

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Isothermal constant true strain rate compression experiments coupled with electron back scattered diffraction (EBSD) analysis have been employed to understand the role of strain rate on the microstructural evolution during hot deformation of a hot isostatically processed nickel base superalloy. The flow behaviour of the alloy deformed at constant deformation temperature (1150 degrees C) and varying strain rates (0.001 s (1), 0.01 s (1), 0.1 s (1), 1 s (1)) revealed two distinct strain rate dependent deformation characteristics. Microstructural observations revealed prevalence of superplastic flow behaviour preceded by dynamic recrystallization (DRX) with dynamic grain growth at the lowest strain rate studied. Sluggish degree of DRX is observed at intermediate strain rates characterized by low volume fraction of DRX grains and dominant presence of deformation substructure bounded with diffuse grain boundaries. Accelerated DRX is noticed at the highest strain rate owing to the higher accumulated stored energy driven large misorientation gradient and adiabatic temperature rise. Discontinuous DRX is found to be the prevalent DRX mechanism in the investigated conditions, which is substantiated by the evidence of necklace type microstructure, serrated grain boundaries, misorientation gradient analysis and relative fraction of grain boundaries. Towards the end, the dependence of strain rate on the evolution of primary twin boundaries (Sigma 3) and higher order twin boundaries (Sigma 9 & Sigma 27) are studied. (C) 2016 Elsevier B.V. All rights reserved.
机译:等温常数真实应变率压缩实验与电子背散射衍射(EBSD)分析相结合,已被用来了解在热等静压加工的镍基高温合金热变形过程中应变率对微观组织演变的作用。在恒定变形温度(1150摄氏度)和变化的应变率(0.001 s(1),0.01 s(1),0.1 s(1),1 s(1))下变形的合金的流动行为显示出两种不同的应变率依赖的变形特性。显微组织观察表明,在研究的最低应变速率下,动态再结晶(DRX)和动态晶粒长大之前,超塑性流动行为普遍存在。在中等应变速率下观察到DRX缓慢,其特征在于DRX晶粒的体积分数低,并且主要存在以弥散晶界为边界的变形子结构。由于较高的累积存储能量驱动较大的取向差梯度和绝热温度升高,因此以最高应变速率注意到了DRX加速。在研究的条件下,发现不连续的DRX是普遍的DRX机理,这可以通过项链类型的微观结构,锯齿状晶界,取向错误梯度分析和晶界相对分数的证据得到证实。最后,研究了应变速率对一次孪生晶界(Sigma 3)和更高阶孪晶界(Sigma 9&Sigma 27)的演化的依赖性。 (C)2016 Elsevier B.V.保留所有权利。

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