首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Work hardening characteristics and microstructural evolution during hot deformation of a nickel superalloy at moderate strain rates
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Work hardening characteristics and microstructural evolution during hot deformation of a nickel superalloy at moderate strain rates

机译:中等应变率下镍高温合金热变形过程中的加固特性和微观结构演化

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Hot deformation behaviour of hot isostatically processed (HIPed) experimental nickel superalloy in the moderate strain rate regimes (0.01 s(-1) & 0.1 s(-1)) is investigated by carrying out isothermal constant true strain rate compression experiments over wide temperature ranges (1000 degrees C, 1050 degrees C, 1100 degrees C and 1150 degrees C). From the experimentally obtained flow curves, the effect of deformation temperature on the work hardening behaviour is analyzed. Three stage behaviour exhibited by the work hardening characteristics is considerably influenced by deformation temperature and strain rate. The critical stress (sigma(c)) and critical strain (epsilon(c)) for triggering dynamic recrystallization determined from the work hardening curves is related to Zener-Hollomon parameter through a power law relationship. Deformation microstructures investigated by Electron Backscattered Diffraction (EBSD) studies highlighted the dominance of discontinuous dynamic recrystallization (DDRX) evidenced by serrated/bulged grain boundaries and necklace type microstructure, although DRX volume fraction is strongly sensitive to deformation conditions. Dislocation accumulation studied by grain reference orientation deviation (GROD) maps corroborates to the observed deformation microstructures. Modest DRX is observed at the lowest deformation temperatures owing to the insufficient thermal energy; however, DDRX kinetics is enhanced at higher temperatures. Additionally, the grain boundary characteristics and misorientation angle distribution are studied and correlated with the microstructural evolution. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过在宽温度范围内进行等温恒定的真正应变率压缩实验,研究了中等应变速率制度(0.01秒(-1)(-1)(0.01秒)和0.1秒(-1))中的热变形的热变形行为(1000℃,1050℃,1100℃和1150℃)。从实验获得的流动曲线来看,分析了变形温度对工作硬化行为的影响。通过变形温度和应变速率表现出的三个阶段行为是显着的影响。用于触发从工作硬化曲线确定的动态再结晶的临界应力(Sigma(C))和临界应变(ε(C))与通过权力法关系有关ZENER-HOLLOMON参数。通过电子反向散射衍射(EBSD)研究研究的变形微结构强调了锯齿状/凸出的晶界和项链微观结构证明的不连续动态再结晶(DDRX)的优势,尽管DRX体积分数对变形条件强烈敏感。通过晶粒参考取向偏差(GROD)研究的位错积累映射到观察到的变形微结构。由于热能不足,在最低变形温度下观察到适度的DRX;但是,DDRX动力学在较高温度下得到增强。另外,研究了晶界特性和错位角度分布和与微观结构演化相关。 (c)2017年Elsevier B.V.保留所有权利。

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