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Three-Dimensional Finite Element Analysis with Clamping in Wire and Arc Additive Manufacturing

机译:夹紧电弧添加剂夹紧三维有限元分析

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Clamping is necessary to reduce distortion and defect in wire and arc additive manufacturing. Considering the clamping model in simulation can improve the prediction accuracy of the distortion and residual stress. In this paper, a three-dimensional finite element model with corner clamping is established, and the weld-bead profile and heat source model is verified with experimental result. Using the Simufact.welding finite element analysis software, total distortion, effective residual stress distribution as well as the stress components are investigated. It has been observed that the maximum effective stress distributes in the region near clamping from beginning to end. The effective stress of the middle point along the transversal side is the side minimum stress, while there is a stress peak in the longitudinal side middle point owing to the distortion reduction during cooling time. The clamping form has a significant relationship with total distortion and residual stress distribution. According to the stress components analysis, the transversal stress is much higher than longitudinal stress, and plays a dominant role in the residual stress.
机译:夹紧是必要的,以减少导线和弧添加制造中的变形和缺陷。考虑模拟中的夹紧模型可以提高失真和残余应力的预测精度。本文建立了具有角夹紧的三维有限元模型,并用实验结果验证了焊珠曲线和热源模型。使用Simufact.Welding有限元分析软件,研究总失真,有效的残余应力分布以及应力分量。已经观察到,最大有效应力分布在夹紧夹紧附近的区域中。沿横向侧的中间点的有效应力是侧面最小应力,而由于冷却时间期间的失真减少,在纵向侧中央点中存在应力峰值。夹紧形式具有与总失真和残余应力分布的显着关系。根据应力分析,横向应力远高于纵向应力,并在残余应力中起显着作用。

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