FGH96高温合金惯性摩擦焊试验研究

Experimental study on inertia friction welding of FGH96 superalloy

  • 摘要:
    目的 旨在研究FGH96合金惯性摩擦焊接过程中的组织演变规律及其对力学性能的影响。
    方法 该文利用光镜、扫描电镜和拉伸试验等检测手段对外径60 mm、内径30 mm的FGH96合金环件惯性摩擦焊接头进行了组织结构和抗拉强度的研究。
    结果 结果表明,当轴向压力为300 MPa时,在接头两侧的焊缝上存在界面弱结合缺陷,焊接接头抗拉强度为1 507.93 MPa;当轴向压力增大至350 MPa和400 MPa时,此时在焊缝中心及两侧位置没有观察到界面弱结合现象,焊接接头抗拉强度分别为1 511.10 MPa和1 497.59 MPa;当转动惯量为340 kg·m2时,焊接接头抗拉强度为1 483.12 MPa。
    结论 增加摩擦压力或降低转动惯量,在促进晶粒细化的同时会加速焊缝区域γ׳相回溶至基体,对焊接接头抗拉强度造成不利影响。

     

    Abstract: Objective This study aims to investigate microstructure evolution and its effect on mechanical properties of FGH96 superalloy during inertia friction welding process. Methods Optical microscopy, scanning electron microscopy, and tensile testing were employed to analyze microstructure and tensile strength of inertia friction welded joints of FGH96 alloy rings with 60 mm outer diameter and 30 mm inner diameter. Results The results indicated that at an axial pressure of 300 MPa, interface weak bonding defects were present on both sides of welded joints, with a tensile strength of 1 507.93 MPa. When axial pressure was increased to 350 MPa and 400 MPa, no interface weak bonding was observed in the center or both sides of weld, tensile strengths of welded joints were 1 511.10 MPa and 1 497.59 MPa, respectively. At a moment of inertia of 340 kg·m2, tensile strength of welded joints was 1 483.12 MPa. Conclusion Increasing friction pressure or decreasing moment of inertia accelerates dissolution of γ׳ phase into matrix while promoting grain refinement in weld zone, which adversely affects tensile strength of welded joints.

     

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