Transmission electron microscopy observations of deformation and fracture in nanolaminated Cu-Ni thin films

D. Kramer, T. Foecke
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引用次数: 30

Abstract

Abstract 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.
纳米层化Cu-Ni薄膜变形与断裂的透射电镜观察
摘要:采用原位透射电镜(TEM)对Cu(001)单晶基底上生长的Cu/Ni外延纳米层材料的变形和断裂进行了研究。初始变形由约束层滑移调节。随着持续的拉伸,不稳定断裂发生,形成混合模式裂纹,并在纳米层状界面上扩展。进一步的应变导致稳定的裂纹扩展,裂纹尖端前的强烈塑性变形沿着裂纹扩展的方向延伸到许多双层上。然而,塑性区被限制在与裂缝垂直的一小段距离内。一般来说,验尸后的透射电镜没有显示出裂纹尾迹中位错的存在,除非裂纹发生偏转。相比之下,基材中的塑性区尺寸要大几个数量级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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