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Practical and efficient approaches for semi-rigid design of composite frames

机译:复合框架半刚性设计的实用高效方法

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The use of composite semi-rigid connections is not fully exploited, in spite of its great number of advantages. Composite semi-rigid connections may lead to an optimal moment distribution that will render lighter structures. Furthermore, using the appropriate semi-rigid connection design, the stability of the frames against lateral loads may entirely rely on the joint stiffness, thus avoiding bracing systems and permitting more diaphanous designs. Although modern codes, such as the Eurocode 4 (EC4), propose thorough methods of analysis they do not provide enough insight and simplicity from the design point of view. The purpose of this paper is to introduce practical and efficient methods of analysis that will facilitate the work of a structural analyst starting from the global analysis of the composite frame and ending on the final connection design. A key aspect is the definition of the stiffness and strength of the connections that will lead to an optimal moment distribution in the composite beams. Two examples are presented in order to clarify the application of the proposed methods and to demonstrate the advantages of the semi-rigid composite design with respect to the alternative pinned and rigid ones. The final aim of the paper is to stimulate and encourage the designer on the use of composite semi-rigid structures.
机译:尽管复合半刚性连接具有许多优点,但并未得到充分利用。复合半刚性连接可能会导致最佳力矩分布,从而使结构更轻。此外,使用适当的半刚性连接设计,框架抵抗侧向载荷的稳定性可能完全取决于接头的刚度,从而避免了支撑系统并允许进行更透明的设计。尽管诸如欧洲法规4(EC4)之类的现代法规提出了全面的分析方法,但从设计的角度来看,它们并未提供足够的洞察力和简便性。本文的目的是介绍一种实用且有效的分析方法,这些方法将有助于结构分析人员的工作,从对组合框架的全局分析开始,到最终的连接设计结束。一个关键方面是连接的刚度和强度的定义,这将导致复合梁中的最佳力矩分布。给出了两个示例,以阐明所提出方法的应用,并展示半刚性复合设计相对于替代的固定和刚性设计的优势。本文的最终目的是激发和鼓励设计师使用复合半刚性结构。

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