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首页> 外文期刊>Journal of Structural Engineering >Three-Dimensional Fiber-Based Models of Precast and Cast-in-Place Reinforced Concrete Columns
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Three-Dimensional Fiber-Based Models of Precast and Cast-in-Place Reinforced Concrete Columns

机译:预制和现浇钢筋混凝土柱的三维纤维模型

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Reliable and robust numerical modeling of RC columns under lateral load is commonly performed using one-dimensional elements. Although the strain is assumed to vary linearly through the section, bond-slip and buckling of reinforcing bars at the joints/connections contribute substantially to the column response. This paper presents a three-dimensional (3-D) fiber-based model with explicit representation of the bond-slip that occurs at the column-footing interface for cast-in-place columns and at the interface between bars and mechanical couplers for precast columns with grouted sleeve (GS) connections. The model contains beam elements with fiber sections for concrete, beam elements for longitudinal steel bars and sleeves, and spring elements for interfacial bond-slip behavior. The novelty is that the model can be achieved using existing software implementations, retains the efficiency of fiber-based elements under cyclic loading, and parameters are calibrated based on component-level testing, unlike other resultant or hybrid models that require arbitrary backbone and cyclic property specification. An extensive experimental program was conducted to investigate the behavior of GS couplers and calibrate the bond-slip models. Four large-scale RC columns were then used to verify the proposed model by comparing the measured load-displacement, energy dissipation, curvature, and failure mode with the numerical responses.
机译:通常使用一维单元对侧向荷载下的钢筋混凝土柱进行可靠和稳健的数值建模。尽管假设应变在整个截面中呈线性变化,但接头/连接处钢筋的粘结滑移和屈曲对柱响应有很大贡献。本文提出了一个基于纤维的三维 (3-D) 模型,该模型明确表示了在现浇柱的柱基界面以及具有灌浆套筒 (GS) 连接的预制柱的棒材和机械耦合器之间的界面处发生的粘结滑移。该模型包含用于混凝土的梁单元和用于纵向钢筋和套筒的梁单元,以及用于界面粘结滑移行为的弹簧单元。新颖之处在于,该模型可以使用现有的软件实现来实现,在循环负载下保持基于纤维的元件的效率,并且参数基于组件级测试进行校准,这与其他需要任意主干和循环属性规范的结果或混合模型不同。我们进行了广泛的实验程序,以研究GS耦合器的行为并校准键合滑移模型。然后,利用4个大型RC柱,将实测的载荷-位移、能量耗散、曲率和失效模式与数值响应进行比较,对所提模型进行了验证。

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