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Microstructure Characterization of Hot Deformed Fe-32%Ni Alloy

机译:Fe-32%Ni热变形合金的组织特征

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Hot deformation behavior and microstructure evolution of Fe-32%Ni alloy were investigated when compressed at the temperature of 1000°C and a strain rate of 2×10-3s-1.The microstructures were analyzed using optical microscope (OM),electron back scatter diffraction (EBSD) and transmission electron microscope (TEM).The results show that the generation and development of dynamic recrystallization (DRX) can obviously refine the grains of Fe-32Ni% alloy and the DRX reached dynamic equilibrium when the strain was high.According to the TEM observations,the DRX microstructure can be categorized into three kinds:grains with low dislocation density,which are DRX nucleations; grains with low dislocation density around the grain boundary and high dislocation density in its interior which means that grains with dislocation density gradient and which are DRX grains in growth; grains with high dislocation density,which are fully work-hardened DRX grains.
机译:研究了Fe-32%Ni合金在1000℃的温度和2×10-3s-1的应变速率下压缩时的热变形行为和组织演变。结果表明,动态再结晶(DRX)的产生和发展可以明显地细化Fe-32Ni%合金的晶粒,并且当应变高时DRX达到动态平衡。根据TEM观察,DRX的微观结构可分为三类:位错密度低的晶粒,即DRX的成核;位错密度低的晶粒。晶界周围位错密度低,内部位错密​​度高的晶粒,意味着位错密度梯度较大的晶粒是生长中的DRX晶粒;位错密度高的晶粒,是完全加工硬化的DRX晶粒。

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