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Ti-22Al-25Nb合金电子束焊接头组织演变和高温拉伸性能

Microstructure evolution and high-temperature tensile properties of Ti-22Al-25Nb alloy joint by electron beam welding

  • 摘要: 为了研究Ti-22Al-25Nb合金电子束焊接头组织演变规律,采用数值模拟和试验相结合的方法,使用5 mm厚Ti-22Al-25Nb合金平板进行真空电子束焊接,在其他工艺参数不变的情况下,研究电子束流对焊接接头表面成形和宏观形貌的影响;利用光学显微镜、扫描电镜及X射线衍射仪观察焊接接头的显微组织及物相;同时,通过试验与模拟的焊缝形貌对比,验证模拟的准确性,并结合热循环曲线和相图分析焊接接头的显微组织及相变过程. 结果表明,电子束流为10 mA时,获得晶粒尺寸较小、成形良好的焊接接头. 在焊接热循环的作用下,焊缝和近热影响区的冷却速度极快,主要由B2相组成,在远热影响区发生了O(α2)相向B2相转变. 焊接接头的高温拉伸强度约为639 MPa,断后伸长率约为2.5%,均低于母材的拉伸性能,焊接接头的断口形貌由解理台阶和河流状花样组成.

     

    Abstract: In this paper, the microstructure evolution of the Ti-22Al-25Nb alloy joint by electron beam welding was studied by numerical simulation and experiment. The vacuum electron beam welding of a 5 mm-thick Ti-22Al-25Nb alloy plate was carried out. The effect of the electron beam current on the surface forming and macroscopic morphology of the joint was studied with other welding parameters kept unchanged. The microstructure and phase of the joint were observed by optical microscope, scanning electron microscope, and X-ray diffractometer. At the same time, comparison of experimental and simulated weld morphology verified the accuracy of this simulation, and the microstructure and phase transition process of the joint were analyzed by combining the thermal cycle curve and the phase diagram. The results show that when the electron beam current is 10 mA, a joint with a small grain size and good forming is obtained. Under the action of the welding thermal cycle, the cooling rate of the weld zone and near heat affected zone is very fast, which is mainly composed of B2 phase. The phase transition from O(α2) to B2 occurs in the far heat affected zone. The high-temperature tensile strength of the joint is about 639 MPa, and the elongation after fracture is about 2.5%, both of which are lower than the tensile properties of the base material. The fracture morphology of the joint is composed of cleavage steps and river-like patterns.

     

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