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首页> 外文期刊>International Journal of Fracture >In situ TEM observations of fracture in nanolaminated metallic thin films
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In situ TEM observations of fracture in nanolaminated metallic thin films

机译:纳米层压金属薄膜断裂的原位TEM观察

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摘要

Fracture of single crystal nanolaminated thin films has been investigated through in situ straining of cross-sectional samples of Cu/Ni nanolaminates grown on Cu (001) single crystal substrates. The earlest stages of deformation exhibits a confined layer slip mechanism. With continued straining, unstable fracture occurs creating a mixed-mode crack that propagates across the nanolaminate, roughly perpendicular to the interfaces. Eventually, stable crack growth with intense plastic deformation ahead of the crack tip occurs over many bilayers in the direction of crack growth. Simultaneously, plasticity was seen to spread only 1 or 2 bilayer distances normal to the crack, creating an extremely localized plastic zone. Transmission electron microscopic (TEM) examination after the test did not reveal the presence of dislocations in the crack wake, except where severe crack deflection was observed. By comparison, the plastic zone size in the substrate was greater by several of orders of magnitude.
机译:通过在Cu(001)单晶衬底上生长的Cu / Ni纳米层压板的横截面样品的原位应变研究了单晶纳米层压薄膜的断裂。变形的最早阶段表现出有限的层滑动机制。随着持续的应变,不稳定的断裂发生,从而产生混合模式的裂纹,该裂纹在纳米层压板上传播,大致垂直于界面。最终,在裂纹扩展的方向上,在许多双层上发生了稳定的裂纹扩展,在裂纹尖端之前发生了剧烈的塑性变形。同时,可塑性仅扩散垂直于裂纹的1或2个双层距离,从而形成了非常局部的塑性区。测试后的透射电子显微镜(TEM)检查未发现裂纹尾流中存在位错,除非观察到严重的裂纹偏转。相比之下,基材中的塑料区大小要大几个数量级。

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