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Study of concrete-timber composite beams using an analytical approach based on the principle of virtual work and experimental results

机译:基于虚拟工作原理和实验结果的分析方法研究混凝土-木组合梁

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摘要

Composite structures have been used in construction as an alternative to conventional structures, providing reduced costs, environmental benefits and maintaining structural safety. The mechanical performance of a composite structure depends, in general, on the efficiency of the connection. A composite interface is designed to transmit shear longitudinal forces at the interface between the two materials along the length of the structure and, at the same time, to prevent vertical detachment. This study contributes to the analysis of the mechanical behavior of concrete-timber composite beams with an emphasis on determining the vertical displacements by solving a set of analytical equations that describe the equilibrium system, using a finite element program and, in special, the principle of virtual work. The latter approach was developed based on the theory of structures to address to systems of composite beams. The proposed formulation is self-consistent, and the results agree well with the experimental data from tested beams.
机译:复合结构已在建筑中用作常规结构的替代方案,从而降低了成本,降低了环境效益并保持了结构安全性。通常,复合结构的机械性能取决于连接的效率。复合界面被设计为沿着结构的长度在两种材料之间的界面处传递纵向剪切力,并同时防止垂直分离。这项研究有助于分析混凝土-混凝土组合梁的力学性能,重点是通过使用有限元程序,特别是通过求解一组描述平衡系统的解析方程,来确定垂直位移。虚拟工作。后一种方法是根据结构理论开发的,以解决复合梁系统的问题。所提出的公式是自洽的,并且结果与来自测试光束的实验数据非常吻合。

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