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

Q1 Arts and Humanities
Nam-Hyok Ri, Zhihua Chen, Yong-Sop Ri, Zhiyao Ma
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引用次数: 0

Abstract

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.
考虑潜热的大跨度空心球接头三维多层焊接方法残余应力比较
本文采用有限元法定量评价了考虑材料状态变化影响的大跨度空间钢结构中超大直径焊接空心球接头的三维多层焊接对焊接残余应力的影响。首先,本文提出了等效态变时间的概念,即焊接和冷却分析中的虚态变时间,它代表焊接材料在固、流状态变化过程中吸收或释放的热量。等效状态变化时间考虑了焊接和冷却过程中的熔合潜热,提高了热分析的准确性。其次,本文对多层对称焊接、多层顺序焊接和单层对称焊接三种焊接方式进行了数值模拟实验,结果表明,多层对称焊接不仅提高了结构支撑能力的平衡性,而且降低了最大拉伸残余应力值,且优于其他两种焊接方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Space Structures
International Journal of Space Structures Arts and Humanities-Conservation
CiteScore
2.00
自引率
0.00%
发文量
21
期刊介绍: The aim of the journal is to provide an international forum for the interchange of information on all aspects of analysis, design and construction of space structures. The scope of the journal encompasses structures such as single-, double- and multi-layer grids, barrel vaults, domes, towers, folded plates, radar dishes, tensegrity structures, stressed skin assemblies, foldable structures, pneumatic systems and cable arrangements. No limitation on the type of material is imposed and the scope includes structures constructed in steel, aluminium, timber, concrete, plastics, paperboard and fabric.
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