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Design of composite sway building frames for global instability

机译:整体失稳的复合摇摆结构框架设计

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Eurocode 4 is the European design code for composite construction; in its so-called ENV version, the scope is limited to "nonsway buildings" with efficient bracing systems. Therefore, it gives mainly rules to analyze and to check structural elements like beams, columns, slabs, and joints. However, in the last years, the construction of taller buildings and larger industrial halls without wind bracing systems is susceptible to make global instability a relevant failure mode, which is not covered by Eurocode 4. For 3 years, in the framework of a European research project funded by the European Community for Steel and Coal, in which the Univ. of Liege was deeply involved, intensive experimental, numerical, and theoretical investigations have been carried out. The latter aimed at improving the knowledge in the field of sway composite frames and at developing appropriate design rules. The rotational behavior of the beam-to-column composite joints is one of the key aspects of the problem to which special attention has been paid. This paper presents the numerical and analytical studies carried out at Liege Univ., as part of above European project, with the objective to investigate the behavior of sway composite structures under static loading. Particular phenomena put into sight through different analyses are illustrated herein. The actual response of the beam-to-column composite joints may be easily integrated into the described design and analysis procedures; this specific aspect is therefore not addressed in the paper.
机译:欧洲规范4是用于复合结构的欧洲设计规范。在其所谓的ENV版本中,范围仅限于具有高效支撑系统的“防风建筑物”。因此,它主要给出分析和检查梁,柱,平板和节点等结构元素的规则。但是,在过去的几年中,没有风撑系统的高层建筑和大型工业大厅的建造很容易使全球不稳定成为一种相关的失效模式,这是欧洲规范4所未涵盖的。在欧洲研究的框架下,连续三年该项目由欧洲钢铁联合会(Univ。)资助。列日大学深深地参与其中,已经进行了深入的实验,数值和理论研究。后者旨在提高摆式复合框架领域的知识并制定适当的设计规则。梁柱组合节点的旋转行为是该问题的关键方面之一,对此已给予特别关注。本文介绍了作为上述欧洲项目的一部分在列日大学进行的数值和分析研究,目的是研究静载荷下摇摆复合结构的行为。本文说明了通过不同分析发现的特定现象。梁柱组合节点的实际响应可以很容易地集成到所描述的设计和分析程序中。因此,本文中未涉及该特定方面。

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