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Mechanisms of New Grain Formation in a Ni-20Cr Alloy during Warm to Hot Working

机译:温暖镍氢镍铬合金新晶粒形成机制

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The process of new fine grain formation was studied in compression of a Ni-20%Cr alloy at temperatures ranging from 500°C (0.46T_m) to 950°C (0.73 T_m) at a strain rate of 7×10~(-4) s~(-1). Two types of deformation behaviors with different features of microstructure evolution were observed, depending on processing conditions. The deformation behavior under flow stresses below about 500 MPa (relatively high temperatures) was typical for hot working associated with discontinuous dynamic recrystallization (DRX). The extensive local migration (bulging) of both initial and deformation induced high angle boundaries (HAGBs) resulted in the development of nuclei, which grew out leading to the formation of recrystallized structure with grain size of D > 1μm. Numerous annealing twins were observed within these DRX grains. On the other hand, continuous DRX gave a major contribution to the formation of new grains at applied stresses above 500 MPa (relatively low temperatures). This fact was attributed to a low mobility of grain boundaries. The new grains with size of D < 1μm were evolved due to gradual transformation of deformation induced low angle boundaries (LAGBs) into HAGBs.
机译:研究了新的细粒形成的过程,在500℃(0.46T _M)至950℃(0.73 T_M)以7×10〜(-4的温度下的温度下压缩Ni-20%Cr合金。 s〜(-1)。观察到具有微观结构演进特征的两种类型的变形行为,这取决于加工条件。在低于约500MPa(相对高温)的流量应力下的变形行为对于与不连续的动态再结晶(DRX)相关的热工作是典型的。初始和变形诱导的高角度边界(HAGBS)的广泛局部迁移(凸出)导致核的开发,其成长导致形成重结晶结构,晶粒尺寸为D>1μm。在这些DRX颗粒中观察到许多退火的双胞胎。另一方面,连续的DRX对施加的应力(相对低温)的施加应力的形成产生了重大贡献。这一事实归因于晶界的低流动性。由于变形诱导的低角度边界(LAGBS)进入HAGB,由于变形的逐渐变换而进化了D <1μm的新晶粒。

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