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Procedural influences on non-linear distortions in welded thin-plate fabrication

机译:程序对焊接薄板制造中非线性变形的影响

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摘要

Fusion welding is the most common and convenient method used for the fabrication of large, thin-plate welded structures. However, the resulting tendency to out-of-plane distortion exacts severe design and fabrication penalties in terms of poorer buckling performance, lack of fairness in external appearance, poor fit-up and frequent requirements for expensive rework. This study forms part of a long-term project that has the aim of modelling welding and related fabrication processes computationally with particular emphasis on the out-of-plane distortion outcomes. Throughout the present work the computational models have been cross-referenced to realistic experimental test cases. A repeated finding of the trials was that minor variations in fabrication procedures, were found to have significant effects on distortion. In particular, the pre-fabrication procedures, including spot and tack welding, have a significant effect on the initial out-of-plane distortion leading to differences in distortion of the post-welded structures. The support and clamping conditions during welding and cooling of welded thin-plate structures were also found to have a considerable influence on the final predicted out-of-plane distortion. The outcomes often result in different buckling instability behaviour. This paper concentrates on these aspects and draws on studies of buttwelding between plates of thicknesses 3-8 mm.
机译:熔焊是用于制造大型薄板焊接结构的最常见,最方便的方法。但是,由此产生的面外变形趋势会导致较差的屈曲性能,外观缺乏公平性,装配不良以及对昂贵返工的频繁要求,从而对设计和制造造成严厉的惩罚。这项研究是一个长期项目的一部分,该项目的目的是通过计算对焊接和相关的制造过程进行建模,并特别强调面外变形结果。在整个当前工作中,计算模型已交叉引用到实际的实验测试用例中。试验的反复发现是,发现制造过程中的微小变化对变形有重大影响。特别地,包括点焊和点焊的预制程序对初始平面外变形具有重大影响,从而导致后焊接结构的变形差异。还发现在焊接薄板结构的焊接和冷却过程中的支撑和夹紧条件对最终预测的面外变形有相当大的影响。结果经常导致不同的屈曲不稳定行为。本文着重于这些方面,并研究了厚度为3-8 mm的板之间的对接焊。

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