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Efficiency of Eurocode 8 design rules for steel and steel-concrete composite structures

机译:钢结构和钢混凝土组合结构的欧洲规范8设计规则的效率

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Seismic design codes allow the realization of structures able to dissipate energy through cyclic plastic deformations located in specific regions, selected to involve the largest number of structural elements. The capacity design approach requires an opportune selection of the design forces and an accurate definition of structural details in the plastic hinges. The structural elements in which plastic hinges are located are over-sized with respect to the seismic actions obtained by the use of the design spectrum, while the elements that shall remain elastic are over-sized with respect to dissipative elements. The capacity design methodology requires an accurate control of the localization of plastic hinges, strongly influenced by the actual mechanical properties of materials. In the present work, developed within the European research project OPUS, different case studies were designed according to Eurocodes and subjected to a deep structural analysis, aiming to evaluate the effective allowable ductility (behaviour factor) with respect to what imposed during the design phase and taking into account the effective mechanical behavior of materials. (C) 2015 Elsevier Ltd. All rights reserved.
机译:抗震设计规范允许实现能够通过位于特定区域的周期性塑性变形来耗散能量的结构,这些变形被选择为涉及最多数量的结构元素。容量设计方法要求适当选择设计力,并准确定义塑料铰链中的结构细节。相对于使用设计范围获得的地震作用,塑料铰链所在的结构元件尺寸过大,而保持弹性的元件尺寸相对于耗散元件尺寸过大。容量设计方法要求精确控制塑料铰链的位置,该位置受材料实际机械性能的强烈影响。在目前由欧洲研究项目OPUS开展的工作中,根据欧洲规范设计了不同的案例研究,并进行了深入的结构分析,旨在评估在设计阶段施加的有效容许延展性(行为因素),以及考虑到材料的有效机械性能。 (C)2015 Elsevier Ltd.保留所有权利。

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