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Comparison of residual stress on different three-dimensional multi-layer welding methods of welded hollow sphere joint in large-span structure by considering latent heat

机译:考虑潜热,大跨度结构在大跨度结构中不同三维多层焊接方法的剩余应力比较

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摘要

This article quantitatively evaluated the influence of three-dimensional multi-layer welding on the welding residual stress of super-big diameter welded hollow sphere joint in the large-span spatial steel structure considering the influence of material state change using finite element method. First, this article proposed a conception of equivalent state change time—the virtual time of state change in the analysis of welding and cooling—which represents the heat absorbed or released during the change of solid and fluid states in welding material. The equivalent state change time increases the accuracy of the thermal analysis considering the latent heat of fusion in welding and cooling process. Second, this article simulated the numerical experiments of three welding methods including multi-layer symmetric welding, multi-layer sequential welding, and single-layer symmetric welding, which show that multi-layer symmetric welding not only increases the balance of supporting ability of structure but also decreases the value of maximum tensile residual stress, and it is better than the other two welding methods.
机译:本文通过有限元方法对大跨度空间钢结构中的超大直径焊接空心球接头焊接残余应力的影响,考虑使用有限元方法,定量地评估了三维多层焊接对大型空间钢结构中的焊接残余应力的影响。首先,本文提出了等效状态变化时间的概念 - 焊接和冷却分析的状态变化的虚拟时间 - 这表示在焊接材料中的固体和流体状态变化期间吸收或释放的热量。当焊接和冷却过程中熔化潜热,等效状态变化时间增加了热分析的准确性。其次,本文模拟了三种焊接方法的数值实验,包括多层对称焊接,多层顺序焊接和单层对称焊接,表明多层对称焊接不仅提高了结构支持能力的平衡但也降低了最大拉伸残余应力的值,并且优于其他两种焊接方法。

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