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Out-of-plane welding distortion prediction and mitigation in stiffened welded structures

机译:加强焊接结构的面外焊接变形预测和缓解

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摘要

A holistic investigation on out-of-plane welding distortion in fabrication of several stiffened welded structures with considering prediction and mitigation is presented. Experiments of typical fillet welded joints and its assembled stiffened welded structures are conducted first, and out-of-plane welding distortion is systematically measured. Different welding distortion patterns, so-called bending distortion and welding buckling, are obviously obtained from the measurements of the examined parallel and cross stiffened welded structures, respectively. A combined computational approach, which involves thermal elastic plastic (TEP) finite element (FE) analysis, eigenvalue analysis, and elastic FE analysis, is then employed to predict the out-of-plane welding distortion and clarify the generation mechanism for different welding distortion patterns. In particular, eigenvalue analysis can support the critical condition for welding buckling occurrence. Since the bending and welding buckling are caused by different reasons, the mitigation processes with flame heating are carried out individually. In detail, line heating is implemented in the opposite side of welded joint to produce inverse bending, and spot heating is employed to heat the region far away from welding line to eliminate effect of inherent deformation on welding buckling generation.
机译:提出了一种在考虑预测和减缓的情况下,对几种加劲焊接结构的制造中面外焊接变形的整体研究。首先进行典型的角焊缝及其组装的刚性焊接结构的实验,然后系统地测量面外焊接变形。分别从所检查的平行和交叉加劲的焊接结构的测量结果显然获得了不同的焊接变形模式,即所谓的弯曲变形和焊接屈曲。然后采用组合计算方法,包括热弹塑性(TEP)有限元(FE)分析,特征值分析和弹性FE分析,以预测面外焊接变形并阐明不同焊接变形的产生机理模式。特别地,特征值分析可以支持发生焊接屈曲的临界条件。由于弯曲和焊接屈曲是由不同的原因引起的,因此火焰加热的缓解过程是单独进行的。详细地,在焊接接头的相对侧实施线加热以产生反向弯曲,并且采用点加热来加热远离焊接线的区域以消除固有变形对焊接屈曲产生的影响。

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