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Deformation of copper single crystals to large strains at 4.2 K - I. Mechanical response and electrical resistivity

机译:铜单晶在4.2 K-I下的大应变变形。机械响应和电阻率

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The deformation of Cu single crystals at 4.2 K was studied by simultaneous measurements of mechanical and electrical properties. The aim was to extend the study of low-temperature deformation to higher strains than are usually employed; thus most of the crystals were stretched to failure. The deformation can be divided into three distinct regions. In region A (which includes stages I and II of plastic deformation) the crystal deforms by slip. In region B there is twinning but no slip; at the end of region B the specimen is 70% twinned. The crystal enters region C as a fine layer structure consisting of twin and parent lamellae; in this region there is no more twinning and deformation proceeds by slip. Examination of the deformation-induced resistivity and resistivity annealing confirms the conclusion that flow stress in region A is due to dislocation accumulation and indicates that in region C other obstacles, such as twin-parent interfaces, are also important. The annealing data, together with other evidence, suggest that elimination of short vacancy dipoles and loops by pipe diffusion accounts for the recoverable component of the resistivity. [References: 25]
机译:通过同时测量机械性能和电气性能,研究了4.2 K下Cu单晶的形变。目的是将低温变形的研究扩展到比通常使用的更高的应变。因此大多数晶体都被拉伸到破坏。变形可分为三个不同的区域。在区域A(包括塑性变形的I和II阶段)中,晶体会因滑移而变形。在区域B中有孪生但没有滑移。在区域B的末端,样品为70%孪晶。晶体以由双晶和母晶薄片组成的精细层结构进入区域C。在该区域中不再有孪晶,并且由于滑动而变形继续。对形变感应电阻率和电阻率退火的研究证实了以下结论:区域A中的流应力是由于位错积累引起的,并表明在区域C中,其他障碍(如双亲界面)也很重要。退火数据以及其他证据表明,通过管道扩散消除了空位偶极子和回线是电阻率的可恢复成分。 [参考:25]

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