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Laser-cut I-beam-to-CHS column moment-resisting steel joints

机译:激光切割I-Beam-to-CHS柱力矩抵抗钢结构

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摘要

Although open-to-circular hollow section (CHS) connections are highly encouraged in the current structural steelwork industry thanks to the extensive range of advantages provided by the CHS columns, a complicated and expensive fabrication procedure has limited their application in practice. The additional gusset plates or stiffeners needed to strengthen a conventional open-to-CHS connection lead to excessive welding quantities and localized CHS distortion, thus causing an economic as well as structural disadvantage. However, if designed efficiently, the CHS connections can offer an extensive range of solutions for modern multi-storey structures. To that end, different types of nominally pinned and moment-resisting "passing-through" open-to-CHS connections have been developed using laser cutting technology (LCT) and proposed by the European research project LASTEICON. This current article concentrates on the LASTEICON two-way moment-resisting connections. The non-linear behaviour of the connections is discussed by way of an appropriate understanding of the force transfer mechanism. Furthermore, these innovative connections are compared with directly welded conventional open-to-CHS connections in order to highlight the advantages offered by the "passing-through" approach.
机译:虽然由于CHS柱提供的广泛优点,但在目前的结构钢结构行业中,虽然开放式空心部分(CHS)连接受到高度鼓励的,但由于CHS柱提供的广泛优点,复杂和昂贵的制造程序在实践中限制了它们的应用。需要加强传统的开放式对CHS连接所需的额外的角撑板或加强件导致过度焊接量和局部的CHS变形,从而导致经济和结构缺点。但是,如果设计有效,CHS连接可以为现代多层结构提供广泛的解决方案。为此,已经使用激光切割技术(LCT)开发了不同类型的名义上固定和旋转“开放式CHS连接,并由欧洲研究项目LaseIcon提出。本型文章集中在LaseICon双向抵抗连接上。通过对力传递机制的适当理解讨论连接的非线性行为。此外,这些创新连接与直接焊接的常规开放式CHS连接进行了比较,以突出“通过”方法所提供的优势。

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