TC4钛合金激光焊接接头的组织与力学性能

Microstructure and mechanical properties of laser welded joints of TC4 titanium alloy

  • 摘要:
    目的 旨在探索TC4钛合金激光焊接接头的组织与力学性能特点。
    方法 通过试验与检测相结合的方法,利用光纤激光焊对2.5 mm厚的TC4钛合金展开焊接试验,并借助金相显微镜、扫描电子显微镜、万能拉伸试验机等检测手段,对激光焊接接头的组织和力学性能进行了研究。
    结果 结果表明,焊缝由晶粒粗大的针状马氏体α′组成,中间还夹杂着不同方向细小的次生α′相;靠近焊缝的热影响区组织由α′+α相组成,靠近母材的热影响区组织由初始(α+β)相+α相组成,两者之间过渡区由少量α′+高温β转变形成的α相+初始(α+β)相组成。TC4钛合金焊接接头抗拉强度为1 048~1 058 MPa,断后伸长率为8.2%~9.8%,均低于母材。
    结论 焊缝正反面呈银白色,其表面光滑均匀且焊缝内外均无缺陷,呈I形焊缝;拉伸断口都呈韧窝特征,为韧性断裂;焊接接头焊缝硬度最高,热影响区最低。

     

    Abstract: Objective The aim is to study microstructure and mechanical properties of laser welded joints of TC4 titanium alloy. Methods By combining experiments and testing methods, welding experiments of 2.5 mm thick TC4 titanium alloy were carried out using fiber laser welding method. By means of optical microscope, scanning electron microscope, universal tensile testing machine, and other testing methods, microstructure and mechanical properties of laser welded joints were investigated. Results The results show that weld is composed of acicular martensite α′ with coarse grains, which contains small secondary α′ phase in different directions. Microstructure of heat affected zone near weld is composed of α′ + α phases, microstructure of heat affected zone near base metal is composed of initial (α + β) + α phases. Transition zone between the two is composed of a small amount of α′ + α phase of high temperature β phase’ transformation + initial (α + β) phase. Tensile strength of TC4 titanium alloy welded joints is 1 048~1 058 MPa, and elongation of laser welded joints is 8.2%~9.8%, which are lower than that of base metal. Conclusion Both the front and back sides of weld appears silver-white, with a smooth and uniform surface. And both inside and outside of weld is free of defects, showing an I-shaped weld. Tensile fractures are characterized by ductile dimples, which indicates ductile fracture. Hardness of weld of welded joints is the highest, and hardness of heat affected zone is the lowest.

     

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