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Microstructural evolution of superplasticity in large-grained intermetallics

机译:大晶粒金属间化合物超塑性的微观结构演变

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摘要

Superplastic behavior has been found in large-grained Ni-48Al intermetallics with grain size of 200 μm. The large-grained Ni-48Al alloy exhibit deformation characteristics of most fine-grained superplastic alloys without the usual pre-requisites of a fine grain size and grain boundary sliding (GBS). Metallographic examination (OM) has shown that the average grain size of large-grained intermetallics decreases during superplastic deformation and a much finer grain size could be obtained after superplastic deformation. Transmission electron microscopy (TEM) and electron back-scattered diffraction (EBSD) observations have shown that there are great numbers of subgrain boundaries which form a network and among which the proportion of low and high angle boundaries increases with the increase of strain. The observed superplastic phenomenon is explained by continuously dynamic recovery and recrystallization (CDRR). During superplastic deformation, an unstable sub-grain network forms and these subboundaries absorb gliding dislocations and transform into low and high angle grain boundaries. A dislocation gliding and climbing process accommodated by subgrain boundary sliding, migration and rotation, enables the superplastic flow to proceed.
机译:在晶粒尺寸为200μm的大晶粒Ni-48Al金属间化合物中发现了超塑性行为。 Ni-48Al大晶粒合金表现出大多数细晶粒超塑性合金的变形特性,而没有通常的先决条件,即晶粒细小和晶界滑动(GBS)。金相检查(OM)表明,在超塑性变形过程中,大晶粒金属间化合物的平均晶粒尺寸减小,而在超塑性变形之后可以获得更细的晶粒尺寸。透射电子显微镜(TEM)和电子背散射衍射(EBSD)的观察表明,有大量的亚晶界形成网络,其中低和高角界的比例随应变的增加而增加。观察到的超塑性现象是由连续动态恢复和重结晶(CDRR)解释的。在超塑性变形过程中,会形成不稳定的亚晶网络,这些亚边界吸收滑移位错并转变为低角度和高角度晶界。亚晶粒边界的滑动,迁移和旋转适应了位错滑移和爬升过程,使超塑性流得以进行。

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