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Plastic deformation with reversible peak broadening in nanocrystalline nickel

机译:纳米晶镍中具有可逆峰展宽的塑性变形

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摘要

Plastic deformation in coarse-grained metals is governed by dislocation-mediated processes. These processes lead to the accumulation of a residual dislocation network, producing inhomogeneous strain and an irreversible broadening of the Bragg peaks in x-ray diffraction. We show that during plastic deformation of electrodeposited nanocrystalline nickel, the peak broadening is reversible upon unloading; hence, the deformation process does not build up a residual dislocation network. The results were obtained during in situ peak pro. le analysis using the Swiss Light Source. This in situ technique, based on well-known peak pro. le analysis methods, can be used to address the relationship between microstructure and mechanical properties in nanostructured materials.
机译:粗晶粒金属的塑性变形受位错介导的过程控制。这些过程导致残余位错网络的积累,产生不均匀的应变,并且在X射线衍射中布拉格峰发生不可逆的展宽。我们表明,在电沉积的纳米晶镍的塑性变形过程中,峰宽在卸载后是可逆的。因此,变形过程不会建立残留的位错网络。结果是在原位pro峰期间获得的。使用瑞士光源进行分析。这种原位技术基于著名的peak pro。这些分析方法可用于解决纳米结构材料的微观结构与机械性能之间的关系。

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