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Shear-Flexible Steel-Concrete Composite Beams in Partial Interaction: Closed-Form “Exact” Expression of the Stiffness Matrix

机译:局部作用下的剪切挠曲钢-混凝土组合梁:刚度矩阵的闭合形式“精确”表达式

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摘要

This paper presents a theoretical model for analyzing shear-flexible steel-concrete composite beams in partial interaction. Both concrete slab and steel beam are modeled according to Timoshenko’s theory, and a continuous linear-behaving shear connection is considered between the two connected members. Simplified kinematic assumptions have been considered for the displacement fields of the two connected members to derive a model, which is at one time rather general, but even simple enough to be easily handled and actually solved in closed-form. The analytical formulation of both stiffness matrix and vector of equivalent nodal forces is the key achievement of the present paper. They completely define an “exact” finite element for the mentioned model and can be easily employed for carrying out computationally efficient analyses of steel-concrete composite beams looking after the effect of both shear flexibility of the structural members and slips occurring at the interface between the two connected members. Simple applications are finally proposed for demonstrating that the present “exact” finite element can be employed for analyzing shear-flexible steel-concrete composite beams by using just one element-per-member. Thus, it is more efficient than both alternative numerical solutions already available in the scientific literature and commercial finite element packages.
机译:本文提出了一种分析剪力-挠性钢-混凝土组合梁局部相互作用的理论模型。根据Timoshenko的理论对混凝土板和钢梁进行建模,并且在两个连接的构件之间考虑了连续的线性剪力连接。对于两个连接的构件的位移场,已经考虑了简化的运动学假设,以推导出一个模型,该模型虽然曾经相当普遍,但其结构足够简单,可以轻松地以封闭形式进行处理和实际求解。刚度矩阵和等效节点力矢量的解析公式是本文的主要成果。它们完全为上述模型定义了一个“精确”有限元,并且可以轻松地用于计算钢-混凝土组合梁的计算效率,同时考虑结构构件的剪切挠性和在构件之间的界面处发生滑移的影响。两个相连的成员。最后提出了简单的应用程序,以证明当前的“精确”有限元可以通过仅使用一个构件/构件来分析抗剪挠性钢-混凝土组合梁。因此,它比科学文献中已有的替代数值解和商业有限元软件包更有效。

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