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Microstructural evolution of a TC11 titanium alloy during linear friction welding

机译:TC11钛合金线性摩擦焊接过程中的组织演变

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Linear friction welded titanium alloy microstructures were investigated to understand the microstructural evolution in the joints. The results show that extrusion of material at the rubbing interface occurred after complete transformation of alpha to beta phase. Finer prior-beta grains were obtained in the flash as compared to the parent material due to dynamic recrystallization. Metallographic examination revealed that two different structures were existed in the joints, i.e., thermomechanically affected zone developing at the edge of joint and weld appearing in the central portion of joint. Although no dynamic recrystallization was observed in the thermomechanically affected zone, the phase transformation would occur concurrently with material deformation during welding. In contrast, dynamic recrystallization had occurred in the weld. Effect of welding parameter on the microstructure was investigated by changing amplitude of oscillation (1.56–2.03 mm). Some defects such as kiss bonding and porosity occurred in the joint at relatively low amplitude of oscillation. Therefore, relatively high amplitude of oscillation is more preferable for obtaining a fully bonded joint.
机译:研究了线性摩擦焊接钛合金的显微组织,以了解接头的显微组织演变。结果表明,在摩擦界面处的材料挤出是在α相完全转变为β相后发生的。与母体材料相比,由于动态重结晶,在瞬间获得了更细的先验β晶粒。金相检验表明,接头处存在两种不同的结构,即在接头边缘处形成热机械影响区,而在接头中心部位出现焊缝。尽管在热机械影响区没有观察到动态再结晶,但是在焊接过程中相变会与材料变形同时发生。相反,焊缝中发生了动态再结晶。通过改变振荡幅度(1.56-2.03 mm)来研究焊接参数对显微组织的影响。在相对较低的振幅下,接头中会出现一些缺陷,例如吻合和孔隙率。因此,为了获得完全结合的接头,更优选较高的振荡幅度。

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