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Cohesive Zone Model Based Numerical Analysis of Steel-Concrete Composite Structure Push-Out Tests

机译:基于粘结区域模型的钢混凝土组合结构推顶试验数值分析

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Push-out tests were widely used to determine the shear bearing capacity and shear stiffness of shear connectors in steel-concrete composite structures. The finite element method was one efficient alternative to push-out testing. This paper focused on a simulation analysis of the interface between concrete slabs and steel girder flanges as well as the interface of the shear connectors and the surrounding concrete. A cohesive zone model was used to simulate the tangential sliding and normal separation of the interfaces. Then, a zero-thickness cohesive element was implemented via the user-defined element subroutine UEL in the software ABAQUS, and a multiple broken line mode was used to define the constitutive relations of the cohesive zone. A three-dimensional numerical analysis model was established for push-out testing to analyze the load-displacement curves of the push-out test process, interface relative displacement, and interface stress distribution. This method was found to accurately calculate the shear capacity and shear stiffness of shear connectors. The numerical results showed that the multiple broken lines mode cohesive zone model could describe the nonlinear mechanical behavior of the interface between steel and concrete and that a discontinuous deformation numerical simulation could be implemented.
机译:推顶试验被广泛用于确定钢混凝土复合结构中抗剪连接器的抗剪承载力和抗剪刚度。有限元方法是推出测试的一种有效替代方法。本文着重于混凝土板与钢梁翼缘之间的界面以及剪力连接器与周围混凝土的界面的仿真分析。内聚区模型用于模拟界面的切向滑动和法向分离。然后,在软件ABAQUS中通过用户定义的元素子例程UEL实现零厚度的内聚元素,并使用多折线模式定义内聚区的本构关系。建立了用于推出测试的三维数值分析模型,以分析推出测试过程的载荷-位移曲线,界面相对位移和界面应力分布。发现该方法可以准确计算剪切连接器的剪切能力和剪切刚度。数值结果表明,多虚线模式内聚区模型可以描述钢-混凝土界面的非线性力学行为,并可以实现不连续变形的数值模拟。

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