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首页> 外文期刊>Advances in Structural Engineering >Structural Response of Timber-Concrete Composite Beams Predicted by Finite Element Models and Manual Calculations
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Structural Response of Timber-Concrete Composite Beams Predicted by Finite Element Models and Manual Calculations

机译:用有限元模型和人工计算预测木组合混凝土梁的结构响应

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摘要

This paper presents the structural response of timber-concrete composite (TCC) beams predicted by finite element models (i.e. continuum-based and 1D frame) and manual calculations. Details of constitutive laws adopted for modelling timber and concrete are provided and application of the Hashin damage model in conjunction with continuum-based FE for capturing failure of timber under bi-axial stress state is discussed. A simplified strategy for modelling the TCC connection is proposed in which the connection is modelled by a nonlinear spring and the full load-slip behaviour of each TCC connection is expressed with a formula that can be directly implemented in the general purpose FE codes and used for nonlinear analysis of TCC beams. The developed FE models are verified by examples taken from the literature. Furthermore, the load-displacement response and ultimate loading capacity of the TCC beams are determined according to Eurocode 5 method and compared with FE model predictions.
机译:本文介绍了通过有限元模型(即基于连续体和一维框架)和人工计算预测的木材-混凝土复合(TCC)梁的结构响应。提供了用于对木材和混凝土建模的本构法的详细信息,并讨论了Hashin损伤模型与基于连续体的有限元分析在双轴应力状态下捕获木材破坏的应用。提出了一种简化的TCC连接建模策略,其中,该连接由非线性弹簧建模,每个TCC连接的满负荷滑移行为用可直接在通用FE代码中实现的公式表示,并用于TCC梁的非线性分析。所开发的有限元模型通过文献中的实例得到验证。此外,根据Eurocode 5方法确定了TCC梁的荷载-位移响应和极限荷载能力,并将其与有限元模型预测进行了比较。

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