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首页> 外文期刊>Philosophical Magazine, A. Physics of condensed matter, defects and mechanical properties >Transmission electron microscopy observations of deformation and fracture in nanolaminated Cu-Ni thin films
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Transmission electron microscopy observations of deformation and fracture in nanolaminated Cu-Ni thin films

机译:透射电镜观察纳米叠层Cu-Ni薄膜的形变和断裂

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摘要

Deformation and fracture of nanolaminates have been investigated by in-situ transmission electron microscopy (TEM) straining of cross-sectioned epitaxial Cu/Ni nanolaminates grown on Cu(001) single-crystal substrates. Initial deformation is accommodated by confined layer slip. With continued straining, unstable fracture occurs, creating a mixed-mode crack that propagates across the nanolaminate interfaces. Further straining results in stable crack growth with intense plastic deformation ahead of the crack tip extending over many bilayers in the direction of crack growth. However, the plastic zone is confined within a small distance normal to the crack. Post-mortem TEM, in general, did not reveal the presence of dislocations in the crack wake, except when the crack was deflected. By comparison, the plastic zone size in the substrate was greater by several of orders of magnitude. [References: 16]
机译:通过原位透射电子显微镜(TEM)应变研究了在Cu(001)单晶衬底上生长的截面外延Cu / Ni纳米层压板,研究了纳米层压板的变形和断裂。初始变形通过有限的层滑移来解决。随着持续的应变,会发生不稳定的断裂,从而形成一种混合模式的裂纹,该裂纹会在纳米层压板的界面上传播。进一步的应变会导致稳定的裂纹扩展,并且在裂纹尖端朝裂纹扩展的方向延伸到许多双层之前,塑性变形强烈。但是,塑性区被限制在垂直于裂纹的一小段距离内。尸体透射电镜一般都没有揭示裂纹尾流中存在位错,除非裂纹发生了偏转。相比之下,基材中的塑料区大小要大几个数量级。 [参考:16]

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