:Enhancement of strength and electrical conductivity for a dilute Al-Sc-Zr alloy via heat treatments and cold drawing论文

:Enhancement of strength and electrical conductivity for a dilute Al-Sc-Zr alloy via heat treatments and cold drawing论文

本文主要研究内容

作者(2019)在《Enhancement of strength and electrical conductivity for a dilute Al-Sc-Zr alloy via heat treatments and cold drawing》一文中研究指出:Developing heat-resistant conductors with high strength and high electrical conductivity is a key issue in the electrical conductor industries, as the ever-increasing power transmission poses higher requirement on the thermal stability of electrical conductor wires. Dilute Al-Sc-Zr alloys are considered as promising candidates due to the excellent heat resistance and high electrical conductivity, but the low strength always limits their application on electrical wires. Yet, few efforts on process design have been made in dilute Al-Sc-Zr alloys to enhance the strength. Here, various kinds of processing paths via combination of cold drawing, ageing and/or annealing were conducted to improve the strength and electrical conductivity of a dilute Al-Sc-Zr alloy. Results show that enhanced strength and electrical conductivity were obtained after cold drawing + ageing or pre-ageing + cold drawing + annealing treatments processes.Optimal properties(194 MPa in ultimate tensile strength and 61% IACS in electrical conductivity) were obtained through cold drawing followed by ageing. Microstructure evolution which affects strength and electrical conductivity was systematically investigated using TEM and 3 DAP. The enhanced strength was mainly attributed to the suitable interactions between strain strengthening and precipitation strengthening. The enhancement in electrical conductivity was caused by precipitation of solute atoms and recovery of defects. These results provide foundations for the processing design of Al-Sc-Zr conducting wires with good properties and push forward their potential application in heat resistant conductor industries.

Abstract

Developing heat-resistant conductors with high strength and high electrical conductivity is a key issue in the electrical conductor industries, as the ever-increasing power transmission poses higher requirement on the thermal stability of electrical conductor wires. Dilute Al-Sc-Zr alloys are considered as promising candidates due to the excellent heat resistance and high electrical conductivity, but the low strength always limits their application on electrical wires. Yet, few efforts on process design have been made in dilute Al-Sc-Zr alloys to enhance the strength. Here, various kinds of processing paths via combination of cold drawing, ageing and/or annealing were conducted to improve the strength and electrical conductivity of a dilute Al-Sc-Zr alloy. Results show that enhanced strength and electrical conductivity were obtained after cold drawing + ageing or pre-ageing + cold drawing + annealing treatments processes.Optimal properties(194 MPa in ultimate tensile strength and 61% IACS in electrical conductivity) were obtained through cold drawing followed by ageing. Microstructure evolution which affects strength and electrical conductivity was systematically investigated using TEM and 3 DAP. The enhanced strength was mainly attributed to the suitable interactions between strain strengthening and precipitation strengthening. The enhancement in electrical conductivity was caused by precipitation of solute atoms and recovery of defects. These results provide foundations for the processing design of Al-Sc-Zr conducting wires with good properties and push forward their potential application in heat resistant conductor industries.

论文参考文献

  • [1].Comparison of the Molecular Interaction Volume Model with the Unified Interaction Parameter Formalism in the Fe-Cr-Ni Liquid Alloys at 1873 K[J]. Dongping TAO Faculty of Materials and Metallurgical Engineering, Kunming University of Science and Technology, Kunming 650093, China.  Journal of Materials Science & Technology.2006(04)
  • [2].Key technologies of numerical simulation of cup hydrodynamic deep drawing[J]. 郎利辉,康达昌,张士宏,戴 昆,王仲仁,苑世剑.  Transactions of Nonferrous Metals Society of China.2000(06)
  • [3].Rectifying control of wire diameter during dieless drawing by a deformation measuring method of interframe displacement[J]. Yong He, Xue-feng Liu, Fang Qin, and Jian-xin Xie Key Laboratory for Advanced Materials Processing (Ministry of Education), University of Science and Technology Beijing, Beijing 100083, China.  International Journal of Minerals Metallurgy and Materials.2012(07)
  • [4].Deforming mechanism of non-mandrel drawing process of circular aluminium tube by simulation[J]. 权国政,周杰,王梦寒,权国辉,佟莹.  Transactions of Nonferrous Metals Society of China.2006(S3)
  • [5].Deformation behavior of Cu-12wt%Al alloy wires with continuous columnar crystals in dieless drawing process[J]. LIU XueFeng1,2, WU YuHui1 & XIE JianXin2 1 Key Laboratory of Advanced Processing Technology of Materials of Ministry of Education, University of Science and Technology Beijing, Beijing 100083, China; 2 State Key Laboratory for Advanced Metals and Materials, University of Science and Technology Beijing, Beijing 100083, China.  Science in China(Series E:Technological Sciences).2009(08)
  • [6].Effect of die cavity dimension on micro U deep drawing behaviour with T2 foil[J]. 王春举,郭斌,单德彬.  Transactions of Nonferrous Metals Society of China.2009(S3)
  • [7].Intelligent control technology for deep drawing of sheet metal[J]. 钱志平,马瑞,赵军,杨嵩.  Journal of Central South University of Technology.2008(S2)
  • [8].Numerical simulation-driven optimization of sheet metal drawing part shape[J]. 陈军,石晓祥,阮雪榆.  Transactions of Nonferrous Metals Society of China.2003(04)
  • [9].A CAD System for Tube Drawing Based on Finite Element Simulation of Drawing Process[J]. HAN Bao-yun,JIN Ming,WU You-cai,ZHONG Qian-xia.  Journal of Iron and Steel Research(International).2001(01)
  • [10].Comparison of the Molecular Interaction Volume Model with the Wagner Formulae in the Zn-Pb-In and Zn-Sn-Cd-Pb Dilute Solutions[J]. Dongping TAO;Zhuo CHEN;Dunfang LI;Yifeng GAO;Qianghua SHEN School of Materials and Metallurgical Engineering, Kunming University of Science and Technology, Kunming 650093, China.  Journal of Materials Science & Technology.2004(03)
  • 论文详细介绍

    论文作者分别是来自Journal of Materials Science & Technology的,发表于刊物Journal of Materials Science & Technology2019年06期论文,是一篇关于,Journal of Materials Science & Technology2019年06期论文的文章。本文可供学术参考使用,各位学者可以免费参考阅读下载,文章观点不代表本站观点,资料来自Journal of Materials Science & Technology2019年06期论文网站,若本站收录的文献无意侵犯了您的著作版权,请联系我们删除。

    标签:;  

    :Enhancement of strength and electrical conductivity for a dilute Al-Sc-Zr alloy via heat treatments and cold drawing论文
    下载Doc文档

    猜你喜欢