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Numerical Simulation of Welding Sequence Effect on Temperature Distribution, Residual Stresses and Distortions of T-Joint Fillet Welds

机译:焊接序列效应对温度分布,残余应力和T型圆角焊缝畸变的数值模拟

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Welding sequence is one important factor which affects the residual stresses and distortions produced during welding, thus determines the welding quality and performance. In this paper, 3D numerical simulation of temperature distribution, residual stresses and distortions of the T-joint fillet weld with respect to the variation of welding sequence is presented. The finite element simulation involved thermo-mechanical analyses. Four welding sequences (WS) considered are one direction welding (WS-1), contrary direction welding (WS-2), welding from centre of one side (WS-3) and welding from centres of two sides (WS-4). The simulation results revealed that peak temperature achieved in the welding was greatly affected by the welding sequence and residual stress and angular distortion produced cannot both hold in minimum for a WS. The smallest residual stresses and the smallest angular distortions are related respectively to WS-2 and WS-4. The distributions of temperature, longitudinal and transverse residual stresses as well as angular distortions were also presented.
机译:焊接序列是影响焊接期间产生的残余应力和失真的一个重要因素,从而确定焊接质量和性能。本文介绍了介绍了相对于焊接序列变化的温度分布,残余应力和T型圆角焊缝的剩余应力和变形的三维数值模拟。有限元模拟涉及热机械分析。考虑四个焊接序列(WS)是一个方向焊接(WS-1),相反方向焊接(WS-2),从一侧(WS-3)的中心焊接,并从两侧的中心焊接(WS-4)。仿真结果表明,焊接中达到的峰值温度受到焊接序列的大大影响,并且残余应力和产生的角度失真不能为WS保持最小。最小的残余应力和最小的角度变形分别与WS-2和WS-4相关。还提出了温度,纵向和横向残余应力的分布以及角度失真。

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