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Influence of Welded Pores on Very Long-Life Fatigue Failure of the Electron Beam Welding Joint of TC17 Titanium Alloy

机译:焊接孔对TC17钛合金电子束焊接接头超长寿命疲劳破坏的影响

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摘要

The electron beam welding process is widely used in the connection among titanium alloy material parts of aero-engines. Its mechanical properties need to meet the requirements of long life and high reliability. In this paper, the static strength and the fatigue failure behavior of the electron beam weldments of TC17 titanium alloy were investigated experimentally under low amplitude high frequency (20 kHz), and the mechanical response and failure mechanism under different external loading conditions were analyzed. In summary, the samples were found to have anisotropic microstructure. The tensile strength of the PWHT of TC17 EBW joint was ~4.5% lower than that of the base metal. Meanwhile, compared with the base metal, the fatigue strength was reduced by 45.5% at 109 cycles of fatigue life. The fracture analysis showed that the fatigue failure of the welded joint of TC17 alloy was caused by the welded pores and the fatigue cracks initiated from the welded pores. A fine granular area (FGA) was observed around the crack initiation region. The existence of pores caused the stress intensity factor of the fine granular area (KFGA) to be inversely proportional to the fatigue life. The KFGA calculation formula was modified and the fatigue crack propagation threshold of the welded joint of TC17 alloy was calculated (3.62 MPa·m1/2). Moreover, the influences of the effective size and the relative depth of the pores on the very long fatigue life of the electron beam welded joint of TC17 titanium alloy were discussed.
机译:电子束焊接工艺广泛用于航空发动机的钛合金材料零件之间的连接。其机械性能需要满足长寿命和高可靠性的要求。本文通过实验研究了TC17钛合金电子束焊缝在低振幅高频(20 kHz)下的静态强度和疲劳破坏行为,并分析了不同外部载荷条件下的力学响应和破坏机理。总之,发现样品具有各向异性的微观结构。 TC17 EBW接头的PWHT的抗拉强度比母材低约4.5%。同时,与基本金属相比,疲劳寿命10 9 循环疲劳强度降低了45.5%。断裂分析表明,TC17合金焊接接头的疲劳失效是由焊接孔和焊接孔引起的疲劳裂纹引起的。在裂纹萌生区域周围观察到细小颗粒区域(FGA)。孔的存在导致细颗粒区域(KFGA)的应力强度因子与疲劳寿命成反比。修改了KFGA的计算公式,计算出TC17合金焊接接头的疲劳裂纹扩展阈值(3.62 MPa·m 1/2 )。此外,还讨论了有效尺寸和孔的相对深度对TC17钛合金电子束焊接接头非常长的疲劳寿命的影响。

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