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A distributed plasticity model for concrete-filled steel tube beam- columns with interlayer slip

机译:层间滑移的钢管混凝土梁柱的分布式塑性模型

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A fiber-based distributed plasticity finite element formulation is presented to perform three--dimensional monotonic analysis of square or rectangular concrete-filled steel tube (CFT) beam--col- umns. This stiffness-based beam-column element fomulation accounts comprehensively for all significant geometric nonlinearity exhibited by CFT beam--columns as part of composite frame struc- tures, and the steel and concrete constitutive models account for the significant inelastic phenomena which are seen in CFT experi- ments. l n addition, the finite element formulation accounts for slip between the steel and concrete components of the CFT by incor- poration of a nonlinear slip interface. This formulation is able to capture behavior ranging from perfect bond to immediate slip. The calibration and verification of the slip formulation are presented, and the finite element model is verified against experiments of CFT beam--columns subjected to monotonic loading. Results from a pre- liminary study are presented on the effect of slip on CFT beam- column and composite frame behavior. A related paper extends this formulation to cyclic analysis of composite CFT frames, and provides details of the steel and concrete constitutive models.
机译:提出了一种基于纤维的分布式可塑性有限元公式,以执行方形或矩形钢管混凝土(CFT)梁柱的三维单调分析。这种基于刚度的梁柱单元公式,全面考虑了CFT梁柱作为复合框架结构的一部分而表现出的所有显着的几何非线性,而钢和混凝土的本构模型则说明了CFT中所见的显着的非弹性现象。实验。此外,有限元公式通过结合非线性滑移界面来解释CFT中钢构件与混凝土构件之间的滑移。这种配方能够捕获从完美粘合到立即打滑的各种行为。介绍了滑移公式的校准和验证,并通过单调加载的CFT梁-柱实验验证了有限元模型。初步研究结果显示了滑移对CFT梁柱和复合框架性能的影响。相关论文将此公式扩展到复合CFT框架的循环分析,并提供了钢和混凝土本构模型的详细信息。

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