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首页> 外文期刊>Journal of advanced concrete technology >Modeling Of Reinforcement Buckling In Rc Columns Confined With Frp
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Modeling Of Reinforcement Buckling In Rc Columns Confined With Frp

机译:Frp约束的钢筋混凝土柱的钢筋屈曲建模

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摘要

A model of the buckling behavior of the longitudinal reinforcement in RC columns confined with fiber reinforced polymers (FRP) is proposed.The model includes three significant aspects: (ⅰ) the model takes into account the flexural stiffness of cracked cover concrete jacketed with FRP to estimate the buckling length and critical stress; (ⅱ) the asymp-totic compressive stress of the buckled longitudinal bars under a cyclic load is modified considering the restraining ef-fect of the FRP; and (ⅲ) it is assumed that at least one of the lateral reinforcing bars (made of mild steel) yield to allow the concerned longitudinal bars to buckle.The model was implemented in the form of a two-dimensional finite element algorithm to compute the hysteric response of the RC columns.The finite element analysis conducted herein considers spalling of the cover concrete due to the buckling along the longitudinal reinforcement.The analysis compared well overall with the test results of four RC columns.
机译:提出了一种用纤维增强聚合物(FRP)约束的钢筋混凝土柱中纵向钢筋屈曲的模型,该模型包括三个重要方面:(ⅰ)该模型考虑了用FRP夹套的开裂覆盖混凝土的抗弯刚度为估计屈曲长度和临界应力; (ⅱ)考虑到FRP的抑制作用,对弯曲的纵筋在循环载荷下的渐近压缩应力进行了修改; (ⅲ)假设至少一根侧向钢筋(由低碳钢制成)屈服以使相关的纵向钢筋弯曲。该模型以二维有限元算法的形式实现,以计算RC柱的滞后响应。本文进行的有限元分析考虑了由于沿纵向钢筋屈曲而导致的覆盖混凝土剥落。该分析与4根RC柱的测试结果进行了整体比较。

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