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首页> 外文期刊>International journal of engineering research in Africa >Deformation and Recrystallised Texture Evolution and the Followed Mechanical and Electrical Properties of Drawn and Annealed Copper Wires
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Deformation and Recrystallised Texture Evolution and the Followed Mechanical and Electrical Properties of Drawn and Annealed Copper Wires

机译:拉制和退火铜线的变形和再结晶织构演变以及随之而来的机电性能

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摘要

Copper destined for electrical cabling require a compromise of mechanical properties and electrical resistivity. The drawing process accompanied by the formation of crystalline defects, such as gaps and dislocations, which leads to the increase in hardness, and therefore to the increase in resistivity, a very important characteristic for the conductivity and the efficiency of the cable. The scope of this work is to investigate the phenomenon of deformation texture evolution while copper wire drawn destined for electric cable-making and to understand its relationship with the electrical conductivity. In this study, we notice that the hardness and the resistivity increase with an increase of the deformation level. On the other hand, a slight decrease in the resistivity of the wires was observed after a holding time of 30 min at 260℃. The annealing of wires at 260℃ for 9 min of holding time leads to a recrystallisation especially for high deformations and a gradual return of the mechanical properties and of the microstructure towards a state close to the state of the wire rod with the extension of time . The recrystallization texture is composed of the same components as the drawing texture, fibers <111>//ND (Normal Direction) and <001>//ND. The decrease in the intensity of the fiber after annealing is observed. On the other hand, the fiber <001> // ND remains stable.
机译:用于电缆的铜需要在机械性能和电阻率之间取得折衷。拉拔过程伴随着诸如间隙和位错之类的结晶缺陷的形成,这导致硬度的增加,从而导致电阻率的增加,电阻率是电缆的导电性和效率的非常重要的特性。这项工作的范围是研究用于电缆制造的铜线拉拔过程中变形纹理演变的现象,并了解其与电导率的关系。在这项研究中,我们注意到硬度和电阻率随变形水平的增加而增加。另一方面,在260℃下保持30分钟后,观察到导线的电阻率略有下降。线材在260℃保温9分钟的退火会导致重结晶,特别是对于高变形而言,随着时间的延长,力学性能和微观组织逐渐返回接近线材状态的状态。再结晶织构由与拉伸织构相同的成分,纤维<111> // ND(法线方向)和<001> // ND组成。观察到退火后纤维强度的降低。另一方面,光纤<001> // ND保持稳定。

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  • 作者单位

    Laboratoire de Genie Energetique et Materiaux, Universite de Biskra, Biskra, Algerie;

    Laboratoire de Genie Energetique et Materiaux, Universite de Biskra, Biskra, Algerie;

    Laboratoire des Composants actif et Materiaux, Oum el Bouaghi, Algeria,Departement de Sciences de la Matiere, Universite de Tebessa, Algerie;

    Laboratoire de Genie Energetique et Materiaux, Universite de Biskra, Biskra, Algerie;

    Laboratoire des Composants actif et Materiaux, Oum el Bouaghi, Algeria,Departement de Sciences de la Matiere, Universite de Tebessa, Algerie;

    ICMMO, SP2M, Univ Paris-Sud, Universite Paris-Saclay, UMR CNRS 8182, 91405 Orsay Cedex, France;

    ICMMO, SP2M, Univ Paris-Sud, Universite Paris-Saclay, UMR CNRS 8182, 91405 Orsay Cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Copper; Deformation by wire drawing; Texture; Electrical resistivity; Mechanical resistance;

    机译:铜;拉丝变形;质地;电阻率;机械阻力;

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