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Progression of Late Stage Abnormal Grain Growth of Electroformed Nanocrystalline Ni Without the Addition of Grain Refiner

机译:不添加晶粒细化剂的电铸纳米晶镍后期异常晶粒生长的研究进展

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摘要

Nanocrystalline (nc) metals are very attractive research materials due to the many beneficial properties the nc structure offers. However, the thermal stability of the nc structure is often of concern due to its high energy state. One curious phenomenon, often reported in nc Ni, is the occurrence of a late stage abnormal grain growth (AGG) which results in the appearance of abnormal-sized grains with faceted grain boundaries. Previously, it was reported that such an AGG stage was brought on by a critical S concentration at certain boundaries. On the contrary, a late stage AGG was observed in electroformed nc Ni without intentionally added additives, including those containing S. The objective of this study is to further elucidate on the initiation and growth of these faceted boundaries. The progression of this AGG stage in electroformed Ni has been systematically investigated by utilizing optical and electron microscopy. Clearly, the late stage AGG did not require a critical S concentration to occur in this case. Moreover, these faceted boundaries were found to be highly stable once its planar nature is fully developed suggesting that the previous focus on the rapid migration of these faceted boundaries may be misplaced.
机译:由于nc结构具有许多有益的特性,因此纳米晶(nc)金属是非常有吸引力的研究材料。但是,由于nc结构的高能量状态,通常需要关注其热稳定性。通常在nc Ni中报道的一种奇怪现象是后期出现异常晶粒长大(AGG),这会导致出现带有多面晶界的异常尺寸晶粒。以前,据报道,这种AGG阶段是由某些边界上的临界S浓度引起的。相反,在没有专门添加添加剂(包括含S的添加剂)的电铸nc Ni中观察到了晚期AGG。本研究的目的是进一步阐明这些刻面边界的产生和生长。通过利用光学和电子显微镜已经系统地研究了电铸镍中该AGG阶段的进程。显然,在这种情况下,晚期AGG不需要达到临界S浓度。此外,一旦这些刻面边界的平面性质得到充分发展,就发现它们是高度稳定的,这表明先前对这些刻面边界的快速迁移的关注可能会错位。

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