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A Study on the Application of Two Different Material Constitutive Models Used in the FE Simulation of the Cyclic Plastic Behavior of a Steel Beam-Column T-Stub Connection

机译:两种不同材料本构模型在钢梁柱T柱连接的循环塑性行为中使用的应用

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Seismic actions inevitably cause cyclic plastic deformations in steel frame connections, which is a common cause of failure in steel structures. Nonlinear finite element (FE) static analysis has been employed in the study of the cyclic plastic behavior of a T-stub connection based on the reported cyclic test on the corresponding extensively tested T-stub connection made of Q235 steel. In particular, the isotropic-hardening and Chaboche constitutive models were employed to predict both the stress distribution and plastic development on the T-stub and the hysteretic curves of the entire T-stub connection. The two constitutive models were calibrated by four material tests to describe the yield and hardening behaviors of the Q235 steel used to make this T-stub connection. The two sets of simulation results obtained from the simulations of the two FE models employed by the two different constitutive models were compared with each other and with the experimental results. The comparisons reveal that the simulation results are similar and in good agreement with the experimental results when the cumulative plastic deformation in the T-stub is small. However, the results of the FE analysis using the Chaboche model are in better agreement with the experimental results when the cumulative deformation in the T-sub is large. This study can provide a reference for FE simulation of the cyclic plastic behavior of steel connections, including the T-stub connection.
机译:地震作用不可避免地导致钢框架连接中的循环塑性变形,这是钢结构失效的常见原因。非线性有限元(Fe)静态分析已经在研究T-Stub连接的循环塑性行为的研究中,基于报道的循环试验对由Q235钢制成的相应广泛测试的T型支柱连接。特别地,采用各向同性硬化和Chaboche结构型型模型来预测T-Stub和整个T卷连接的滞后曲线上的应力分布和塑性开发。通过四种材料测试校准了两个本构模型,以描述用于制造该T-Stub连接的Q235钢的产量和硬化行为。从两种不同的组成型模型采用的两种FE模型的模拟中获得的两组模拟结果彼此进行比较,并以实验结果进行比较。比较揭示了模拟结果与实验结果相似,当T型累积塑性变形小时,与实验结果很吻合。然而,使用Chaboche模型的Fe分析的结果与实验结果更好,当T-Sub中的累积变形时,与实验结果更好。该研究可以为钢连接循环塑性行为的FE模拟提供参考,包括T-Stub连接。

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