首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Effect of welding parameters on microstructure characteristics and fatigue properties of dissimilar joints prepared by linear friction welding on TC11 and TC17 titanium alloys
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Effect of welding parameters on microstructure characteristics and fatigue properties of dissimilar joints prepared by linear friction welding on TC11 and TC17 titanium alloys

机译:焊接参数对TC11和TC17钛合金线性摩擦焊机制备的不同接头微结构特性及疲劳性能的影响

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摘要

Linear friction welding (LFW) was conducted on TC11 (Ti-6.5Al-3.5Mo-1.5Zr-0.3Si) and TC17 (Ti-5Al-2Sn-2Zr-4Mo-4Cr) titanium alloys shaped in the rectangular section of 75 mm x 20 mm, in which the welding parameters were set as oscillation frequency 20-60 Hz with amplitude 2-3 mm, friction pressure 58.8-65.3 MPa with friction time 3-5 s, and upset pressure 49-78.4 MPa with upset time 30 s. The microstructure characteristics and fatigue limit were measured and analyzed. After LFW, a microstructure change occurs with martensite in the weld zone and elongated grains in the thermo-mechanically affected zone. The effect of amplitude and frequency on fatigue properties is larger than that of friction time and forging pressure. With the amplitude and frequency of oscillation increasing, the fatigue limit increases firstly and then decreases. Accordingly, the optimal parameters were gained. The change tendency of alpha phase at failure location with the welding parameters could well describe the fatigue limit. Meanwhile, the fracture surface of joints presents a composite fracture of the quasi-cleavage, fatigue striations, and dimples. The spacing of fatigue striations firstly becomes smaller and then larger with the amplitude increasing which agrees with the change of fatigue limit.
机译:在TC11(Ti-6.5A-3.5MO-1.5ZR-0.3SI)和TC17(Ti-5Al-2SN-2ZR-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4MO-4CR) X 20 mm,其中焊接参数设定为振幅为20-60Hz,幅度为2-3毫米,摩擦力压力58.8-65.3MPa,摩擦时间3-5 s,镦粗压力49-78.4MPa,具有镦粗时间30 s。测量和分析了微观结构特征和疲劳极限。在LFW之后,在焊接区中的马氏体和热机械受影响区域中的细长晶粒发生微观结构变化。幅度和频率对疲劳性能的影响大于摩擦时间和锻造压力的影响。随着振荡的振幅和频率增加,疲劳极限首先增加,然后减少。因此,获得了最佳参数。抗焊接参数在故障位置处的α相的变化倾向可以很好地描述疲劳极限。同时,关节的断裂表面呈现了准切割,疲劳条件和凹坑的复合骨折。疲劳条纹的间距首先变小,然后随着幅度增加而变大,同意疲劳极限的变化。

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