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Reducing the underfill rate of pulsed laser welding of titanium alloy through the application of a transversal pre-extrusion load

机译:通过施加横向预挤压载荷来降低钛合金脉冲激光焊接的底部填充率

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摘要

A method for reducing the underfill rate of welded joints is proposed, and is based on the application of a transversal pre-extrusion load during pulsed laser beam welding of titanium alloy. By welding with a pre-extrusion load at different welding specific heat inputs, underfill defects can be reduced or even eliminated. A finite element simulation is employed to analyze the mechanism of this reduction. The calculated morphology of the weld cross-section and the total extrusion output agree well with experimental results. The reduction of underfill defects is mainly related to the normal hump of the soft materials generated at high temperature under a residual pre-extrusion load. The microstructures and mechanical properties in the welded joints are analyzed. The welded joints are stronger than the base metal because of the formation of the dominant martensite phase structure in the heat affected zone (HAZ) and fusion zone (FZ). Underfill defects in the weld zone cause a loss of tensile properties, and this loss can be compensated for by decreasing the underfill rate with a transversal pre-extrusion load. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种减少焊接接头底部填充率的方法,该方法基于在钛合金脉冲激光束焊接过程中横向预挤压载荷的应用。通过在不同焊接比热输入下以预挤压负荷进行焊接,可以减少甚至消除底部填充缺陷。有限元模拟被用来分析这种减少的机理。计算得出的焊缝横截面形态和总挤出量与实验结果吻合良好。底部填充缺陷的减少主要与高温下在残留的预挤出载荷下产生的软质材料的正常驼峰有关。分析了焊接接头的组织和力学性能。由于在热影响区(HAZ)和熔合区(FZ)中形成了主要的马氏体相结构,因此焊接接头比母材坚固。焊接区的底部填充缺陷会导致拉伸性能下降,并且可以通过降低横向预挤出载荷下的底部填充率来弥补这种损失。 (C)2015 Elsevier B.V.保留所有权利。

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