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Behavior of strengthened reinforced concrete coupling beams by bolted steel plates, Part 2: Evaluation of theoretical strength

机译:锚固钢板加固钢筋混凝土耦合梁的性能,第2部分:理论强度评估

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Composite beams using bolts to attach steel plates to the side faces of existing reinforced concrete (RC) coupling beams can enhance both their strength and deformability. The behavior of those composite beams differs substantially from the behavior of typical composite beams made up of steel beams and concrete slabs. The former are subjected to longitudinal, vertical and rotational slips, while the latter only involve longitudinal slip. In this study, a mixed analysis method was adopted to develop the fundamental equations for accurate prediction of the load-carrying capacity of steel plate strengthened RC coupling beams. Then, a rigid plastic analysis technique was used to cope with the full composite effect of the bolt group connections. Two theoretical models for the determination of the strength of medium-length plate strengthened coupling beams based on mixed analysis and rigid plastic methods are presented. The strength of the strengthened coupling beams is derived. The vertical and longitudinal slips of the steel plates and the shear strength of the anchor-bolt connection group is considered. The theoretical models are validated by the available experimental results presented in a companion paper. The strength of the specimens predicted from the mixed analysis model is found to be in good agreement with that from the experimental results.
机译:使用螺栓将钢板连接到现有钢筋混凝土(RC)耦合梁侧面的复合梁可以增强强度和变形能力。这些复合梁的性能与由钢梁和混凝土板组成的典型复合梁的性能大不相同。前者承受纵向,垂直和旋转滑移,而后者仅涉及纵向滑移。在这项研究中,采用了一种混合分析方法来开发基本方程,以精确预测钢板增强的RC耦合梁的承载能力。然后,使用刚性塑性分析技术来应对螺栓组连接的全部复合效果。提出了两种基于混合分析和刚性塑性方法确定中长板增强耦合梁强度的理论模型。得出加强后的耦合梁的强度。考虑钢板的纵向和纵向滑移以及锚栓连接组的抗剪强度。理论模型已通过随附论文中提供的可用实验结果进行了验证。通过混合分析模型预测的样品强度与实验结果非常吻合。

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