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Microstructure and texture evolution of Cu-Nb composite wires

机译:Cu-Nb复合丝的组织与织构演变

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摘要

The evolution of microstructure and texture in Cu-Nb composite wires fabricated by an accumulative drawing and bundling process was investigated by backscattered electron (BSE), electron backscatter diffraction (EBSD) and transmission electron microscopy (TEM). Results indicate the onset of severe curling and shape changing occurred at the size of Nb ~400 nm with a surface increase of about 6.91 μm~2m~3 (the area per unit volume). Two kinds of grain boundaries in Nb are suggested: one is 20°-50° boundary with a rotate/tilt axis around <110> parallel to drawing direction (DD), and another is > 50° boundary with the axis perpendicular to DD. The curling phenomenon occurred at the Cu-Nb interface and is related not only to the deformation mechanism of Nb but also to the presence of interface. This result is distinct from reported works showing that curling takes place when BCC metals are heavily drawn (Area reduction >73%). The variation in microstructure and texture evolution between Cu and Nb filaments was discussed based on the differences in deformation mechanisms of these two metals.
机译:通过背散射电子(BSE),电子背散射衍射(EBSD)和透射电子显微镜(TEM)研究了通过累积拉拔和束扎工艺制备的Cu-Nb复合线材的微观结构和织构的演变。结果表明,在Nb〜400 nm处出现了严重的卷曲和形状变化,表面增加了约6.91μm〜2 / nm〜3(每单位体积的面积)。在Nb中提出了两种晶界:一种是20°-50°边界,其旋转/倾斜轴围绕<110>平行于拉伸方向(DD),另一种是> 50°边界,其轴垂直于DD。卷曲现象发生在Cu-Nb界面处,不仅与Nb的变形机理有关,而且与界面的存在有关。该结果与报道的结果不同,后者表明当BCC金属被严重拉伸时会发生卷曲(面积减少> 73%)。基于这两种金属的变形机理的差异,讨论了铜和铌丝之间的微观结构和织构演变的变化。

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