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首页> 外文期刊>Journal of Materials Science >Dislocation boundaries in drawn single crystal copper wires produced by Ohno continuous casting
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Dislocation boundaries in drawn single crystal copper wires produced by Ohno continuous casting

机译:大野连铸生产的拉制单晶铜线中的位错边界

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摘要

Dislocation boundaries in drawn single-crystal copper wires produced by Ohno continuous casting have been studied via electron backscattering diffraction and transmission electron microscopy. In the undeformed wires, there are subgrains with misorientation angle lower than 4.2°. For the cold-drawn wires, we measured misorientation angle and spatial distribution of dislocation boundaries, analysing the formation mechanism of dislocation boundaries parallel to drawing direction. Regarding spatial distribution of high-angle dislocation boundaries, at the strains more than 2.77, the boundaries spread from the centre to the surface regions with increasing strain. Regarding the angular distribution of dislocation boundary misorientation, at the strain lower than 2.77, there is one peak lower than 5°. Increasing the strain to 4.12, a bimodal distribution of misorientation angles is observed. One is lower than 5°, and the other is between 45 and 50°. For dislocation boundaries parallel to drawing direction, although at low strains there are different deformation bands with different microstructures, at high strain the microstructures are characterized as dislocation boundaries parallel to drawing direction formed by two approaches: the interaction between two kinds of boundaries and the increase in misorientation angle of boundaries shared by some dislocation cells.
机译:通过电子反向散射衍射和透射电子显微镜研究了由大野连铸生产的拉制单晶铜线中的位错边界。在未变形的导线中,有一些亚晶粒的取向角小于4.2°。对于冷拔丝,我们测量了错位角和位错边界的空间分布,分析了与拉伸方向平行的位错边界的形成机理。关于大角度位错边界的空间分布,在大于2.77的应变下,边界随着应变的增加而从中心扩展到表面区域。关于位错边界取向不良的角度分布,在小于2.77的应变下,存在小于5°的峰。将应变增加到4.12,可以观察到取向差角的双峰分布。一个低于5°,另一个在45至50°之间。对于与拉伸方向平行的位错边界,尽管在低应变下具有不同的显微组织的不同形变带,但在高应变下,微结构的特征是由两种方法形成的与拉伸方向平行的位错边界:两种边界之间的相互作用和增大在一些位错单元共享的边界的取向错误角度上。

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