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Comparative Study on Microstructural Stability of Pre-annealed Electrodeposited Nanocrystalline Nickel During Pack Rolling

机译:轧制过程中预退火电沉积纳米晶镍组织稳定性的比较研究

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摘要

Microstructural stability is an important issue for nanocrystalline materials to be practically used in many fields. The present work shows how microstructure evolves with rolling strain in pre-annealed electrodeposited nanocrystalline nickel containing an initial strong fiber texture, on the basis of X-ray diffraction line profile analysis as well as transmission electron microscopy observation. The influence of shear strain on microstructural stability of the metal/roll contact interface is compared with that of the metal/metal contact interface; the latter would be closer to deformation in plane strain compression. From the statistical microstructural information, together with experimentally observed microstructure of deformed grains after the final rolling pass, it seems fair to conclude that the microstructure of the metal/metal contact interface is more stable during pack rolling than that of the metal/roll interface.
机译:对于在许多领域中实际使用的纳米晶体材料而言,微结构稳定性是重要的问题。本工作基于X射线衍射线轮廓分析和透射电子显微镜观察,显示了在具有初始强纤维织构的预退火电沉积纳米晶镍中,显微组织如何随着轧制应变而演变。将剪切应变对金属/辊接触界面的微观结构稳定性的影响与金属/金属接触界面的微观结构稳定性进行了比较;后者将更接近平面应变压缩中​​的变形。从统计的微观结构信息,以及在最终轧制道次后实验观察到的变形晶粒的微观结构,似乎可以得出这样的结论:在整装轧制过程中,金属/金属接触界面的显微组织比金属/辊界面的显微组织更稳定。

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