微量元素La、Ti及均匀化处理对纯铝导电性能的影响(英文)  被引量:6

Effect of Trace Elements La,Ti and Homogenization on Electrical Properties of Pure Aluminum

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作  者:魏锋 毛健[1] 刘春昉 刘惠华 Wei Feng;Mao Jian;Liu Chunfang;Liu Huihua(Sichuan University,Chengdu 610065,China;TBEA Deyang Cable Stock Co.,Ltd,Deyang 618000,China)

机构地区:[1]四川大学,四川成都610065 [2]特变电工(德阳)电缆股份有限公司,四川德阳618000

出  处:《稀有金属材料与工程》2018年第11期3257-3263,共7页Rare Metal Materials and Engineering

基  金:Panxi Strategic Resources Innovation Development Fund(2015)

摘  要:通过熔炼制备Al-La, Al-Ti及Al-La-Ti合金,研究了La、Ti微量元素添加对纯铝的导电性和强度的影响。同时研究了在500℃下均匀化处理8 h之后样品的导电性能与微观结构变化。结果表明,当La添加量不超过0.3%(质量分数)时,Al-La合金的导电率会保持在较高的值60.35%IACS左右,因为La与铝中的杂质Si,Fe反应析出。随着Ti元素添加量的增加,Al-Ti合金的强度明显增加,这主要是Ti原子的固溶强化的作用。同时在纯铝中添加La和Ti元素时,会使合金在Al-La合金的基础上强度得到提升,导电率有所下降,但是导电率仍然高于单独添加Ti元素时的Al-Ti合金。主要是因为La与Ti之间相互反应生成Ti2Al20La化合物并且析出,有利于导电性的提升。结果表明,均匀化处理对样品微观结构变化的影响很小,而导电性的提高主要是因为均匀化处理消除了铸态样品中大部分显微疏松,缩孔和显微针孔等铸造缺陷。Al-La,Al-Ti and Al-La-Ti alloys were prepared to study the effects of Ti and La on the electrical conductivity and strength of alloys.The electrical conductivity,strength and microstructure evolution of alloys before and after homogenization treatment at 500℃ for 8 h were investigated.The results show that when the content of La does not exceed 0.3 wt%,the electrical conductivity of Al-La can keep a high level as 60.35% IACS due to the precipitation of the compounds containing La,Si and Fe.The strength of Al-Ti alloy is rapidly enhanced with the increase of Ti due to the increasing content of Ti atoms in the α-Al solution.When La and Ti are added simultaneously,the strength of alloys is higher than that of Al-La alloys,and the electrical conductivity is decreased compared with that of Al-La alloys but is higher than that of the Al-Ti alloy,which is mainly attributed to the formation of the new secondary phase Ti2 Al20 La.Homogenization treatment has little effect on the microstructure of alloys but reduces the number of casting defects,thereby increasing the electrical conductivity of all samples.

关 键 词:纯铝 LA TI 均匀化处理 导电性 

分 类 号:TG146.21[一般工业技术—材料科学与工程] TG292[金属学及工艺—金属材料]

 

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