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Environmental effects on deformation mechanism and dislocation microstructure in fatigued copper single crystal

机译:环境对疲劳铜单晶变形机理和位错微观结构的影响

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摘要

The deformation and dislocation microstructure of a [01 3] double-slip-oriented copper single crystal under a symmetric tension-compression cyclic load were characterized at room temperature in open-air and a neutral 0.5 M NaCl aqueous solution, respectively. The surface morphology of deformed specimens and the dislocation structures at saturation stage of cyclic deformation were observed using scanning electron microscopy (SEM) by the electron channeling contrast (ECC) technique and transmission electron microscopy (TEM). The results show that the saturation dislocation structures during the corrosion fatigue in the 0.5 M NaCl aqueous solution mainly consist of labyrinth wall and vein dislocation microstructures, as well as deformation twins, which differ from the wall and vein dislocation structures in open-air environment. More importantly, here we report TEM observations that provide evidence of deformation twinning in the [0 1 3] double-slip-oriented copper single crystal during corrosion fatigue at room temperature and a very slow strain rate, which was generally only observed at sub-ambient temperature and/or high strain rate conditions.
机译:[01 3]双滑取向铜单晶在对称拉伸-压缩循环载荷下的变形和位错微观结构分别在室温下在露天和中性0.5 M NaCl水溶液中表征。利用电子通道对比度(ECC)技术和透射电子显微镜(TEM),利用扫描电子显微镜(SEM)观察了变形试样的表面形貌和循环变形饱和阶段的位错结构。结果表明,在0.5 M NaCl水溶液中,腐蚀疲劳过程中的饱和位错结构主要由迷宫壁和静脉位错的微观结构以及变形孪晶组成,这与露天环境下的壁位错结构不同。更重要的是,我们在此报告TEM观察结果,这些证据提供了[0 1 3]双滑取向铜单晶在室温下的腐蚀疲劳和非常慢的应变速率下变形孪晶的证据,通常仅在低于环境温度和/或高应变率条件。

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