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高电导率耐热铝合金导体材料的合金设计

Alloying design of a thermal-resistant aluminum alloy conductor material with high conductivity

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【作者】 刘东雨李文杰韩钰高倩刘静静侯世香李宝让陈新祝志祥卢云深马光

【Author】 LIU Dong-yu;LI Wen-jie;HAN Yu;GAO Qian;LIU Jing-jing;HOU Shi-xiang;LI Bao-rang;CHEN xin;ZHU Zhi-xiang;LU Yun-shen;MA Guang;School of Energy,Power and Mechanical Engineering,North China Electric Power University;National Thermal Power Engineering and Technology Research Center;Department of Electrical Engineering New Materials and Microelectronics,State Grid Smart Grid Research Institute;

【机构】 华北电力大学能源动力与机械工程学院国家火力发电工程技术研究中心国网智能电网研究院电工新材料及微电子研究所

【摘要】 耐热铝合金导线的耐热机理是采用微合金化元素提高铝基体的再结晶温度。提高耐热铝合金导线电导率的措施是优选微合金元素和工业纯铝,降低微合金元素和杂质元素对铝基体导电性的影响。在分析Zr、Er、Y等微合金元素对铝导体再结晶温度和导电性影响的基础上设计出了Al-Er-Y和Al-Er-Y-B系耐热铝合金导体材料。采用优选Al99.70重熔用铝锭和Al-Er、AlY、Al-B中间合金制备了Al-Er-Y-(B)耐热铝合金导线。结果表明,Al-0.1~0.2Er-0.1~0.2Y-0~0.03B合金导线的抗拉强度≥160 MPa、伸长率(200 mm标距)≥2%、导电率(20℃)≥61%IACS、230℃退火1 h后的强度残存率≥90%。

【Abstract】 Thermal resisting principle of the thermal-resistant aluminum alloy conductor is increase the recrystallization temperature by adding micro-alloying elements,while the electrical conductivity of the thermal-resistant aluminum alloy conductor is impoved by selecting micro-alloying elements which have less influence on electrical conductivity and industrial impurity aluminum ingots which has less Si,Cr,Mn,V,and Ti impurity elements.The Al-Er-Y and Al-Er-Y-B thermal-resistant aluminum alloy conductor was designed by analyzing the effect of Zr,Er and Y micro-alloying elements on the recrystallization temperature and electrical conductivity.The Al-Er-Y-( B) thermalresistant aluminum alloy wire was manufactured by selected Al99.70 aluminum ingot and Al-Er,Al-Y,Al-B master alloy.The results show that the Al-0.1- 0.2Er-0.1- 0.2Y-0- 0.03B thermal aluminum alloy wire possesses the fallowing properties: tensile strength ≥160 MPa,elongation at 200 mm gauge length ≥2%,electrical conductivity at 20 ℃ ≥61 % IACS,and the residual ratio of UTS after heating the wire at 230 ℃ for 1 h is more than 90%.

【基金】 国家电网公司科技项目(2012-323)
  • 【文献出处】 材料热处理学报 ,Transactions of Materials and Heat Treatment , 编辑部邮箱 ,2014年S1期
  • 【分类号】TG146.21
  • 【被引频次】32
  • 【下载频次】878
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