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Interface and properties of the friction stir welded joints of titanium alloy Ti6Al4V with aluminum alloy 6061

机译:钛合金Ti6Al4V与铝合金6061搅拌摩擦焊接头的界面和性能

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摘要

Titanium alloy Ti6A14V and aluminum alloy 6061 dissimilar material joints were made with friction stir welding (FSW) method. The effects of welding parameters, including the stir pin position, the rotating rate and the travel speed of the tool, on the interface and the properties of the joints were investigated. The macrostructure of the joints and the fracture surfaces of the tensile test were observed with optical microscope and scanning electron microscope (SEM). The interface reaction layer was investigated with transmission electron microscopy (TEM). The factors affecting the mechanical properties of the joints were discussed. The results indicated that the tensile strength of the joints and the fracture location are mainly dependent on the rotating rate, and the interface and intermetallic compound (IMC) layer are the governing factor. There is a continuous 100 nm thick TiAl_3 IMC at the interface when the rotating rate is 750 rpm. When the welding parameters were appropriate, the joints fractured in the thermo-mechanically affected zone (TMAZ) and the heat affected zone (HAZ) of the aluminum alloy and the strength of the joints could reach 215 MPa, 68% of the aluminum base material strength, as well as the joint could endure large plastic deformation.
机译:采用搅拌摩擦焊(FSW)的方法制作了钛合金Ti6A14V和铝合金6061异种材料接头。研究了焊接参数,包括搅拌销的位置,转速和工具的行进速度,对接头的界面和性能的影响。用光学显微镜和扫描电子显微镜(SEM)观察接头的宏观结构和拉伸试验的断裂表面。用透射电子显微镜(TEM)研究界面反应层。讨论了影响接头机械性能的因素。结果表明,接头的抗拉强度和断裂位置主要取决于转速,而界面和金属间化合物(IMC)层是决定因素。当转速为750 rpm时,界面处连续存在100 nm厚的TiAl_3 IMC。当焊接参数合适时,接头在铝合金的热机械影响区(TMAZ)和热影响区(HAZ)处断裂,接头强度可达215 MPa,占铝基材料的68%。强度以及接头可承受较大的塑性变形。

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  • 来源
    《Materials & design》 |2015年第4期|85-92|共8页
  • 作者单位

    Department of Mechanical Engineering, Tsinghua University, Beijing 100084, PR China ,Key Laboratory for Advanced Materials Processing Technology, Ministry of Education, PR China;

    Department of Mechanical Engineering, Tsinghua University, Beijing 100084, PR China ,Key Laboratory for Advanced Materials Processing Technology, Ministry of Education, PR China,Beijing Institute of Control Engineering, Beijing 100190, PR China;

    Joining and Welding Research Institute, Osaka University, Osaka, Ibaraki 567-0047, Japan;

    Kurimoto Ltd., Osaka 559-0021, Japan;

    Joining and Welding Research Institute, Osaka University, Osaka, Ibaraki 567-0047, Japan ,School of Materials Science and Engineering, Harbin Institute of Technology at Weihai, PR China;

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