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Partial-interaction analysis of composite beam/column members

机译:组合梁/柱构件的局部相互作用分析

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Members in which two or more elements are bolted together to form composite structures that are stronger, stiffer, and more ductile than the sum of the individual elements are now commonly used in practice, not only for new structures but also, more recently, for the retrofitting of existing structures. The shear connectors that are used to tie the elements together rely on slip, that is partial interaction, to transfer the longitudinal shear. This makes the behavior of composite structures complex, so that most composite structures are designed assuming no slip, full interaction, which gives an upper bound to the strength and stiffness. In order to determine the true strength, to estimate the amount of slip to prevent fracture of shear connectors due to excessive slip, and to ensure that plated reinforced concrete columns can achieve their required seismic ductility, it is necessary to allow for slip in the mathematical model. In this paper, the classic linear-elastic partial-interaction theory for composite steel and concrete beams is extended to allow for axial forces, as occur in plated reinforced concrete columns and prestressed composite beams, and also to allow for boundary conditions associated with plastic hinges. Furthermore, a set of generic parameters that govern the fundamental response of the composite members is developed that can be used for the eventual formation of design guides and procedures.
机译:现在,在实践中通常将其中两个或多个元素用螺栓连接在一起以形成比单个元素的总和更坚固,更硬和更易延展的复合结构的构件,不仅用于新结构,而且最近用于构件。现有结构的改造。用于将元件连接在一起的剪切连接器依靠滑移(即部分相互作用)来传递纵向剪切力。这使复合结构的行为变得复杂,因此大多数复合结构在设计时都没有滑动,完全相互作用,从而为强度和刚度提供了上限。为了确定真实强度,估计滑动量以防止剪切连接器由于过度滑动而破裂,并确保镀层钢筋混凝土柱能够达到其所需的抗震延展性,有必要在数学上考虑滑动模型。在本文中,扩展了复合钢和混凝土梁的经典线性弹性局部相互作用理论,以允许承受轴向力(如在平板钢筋混凝土柱和预应力复合梁中所发生的),并且还考虑了与塑料铰链相关的边界条件。此外,开发了一组用于控制复合构件基本响应的通用参数,这些参数可用于最终形成设计指南和程序。

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