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首页> 外文期刊>Computers & Concrete >Modeling of nonlinear cyclic response of shear-deficient RC T-beams strengthened with side bonded CFRP fabric strips
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Modeling of nonlinear cyclic response of shear-deficient RC T-beams strengthened with side bonded CFRP fabric strips

机译:侧粘结CFRP布条加固的抗剪RC T梁的非线性循环响应建模

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摘要

The use of Carbon Fiber Reinforced Polymers (CFRP) to strengthen reinforced concrete beams under bending and shear has gained rapid growth in recent years. The performance of shear strengthened beams with externally bonded CFRP laminate or fabric strips is raising many concerns when the beam is loaded under cyclic loading. Such concerns warrant experimental, analytical and numerical investigation of such beams under cyclic loading. To date, limited investigations have been carried out to address this concern. This paper presents a numerical investigation by developing a nonlinear finite element (FE) model to study the response of a cantilever reinforced concrete T-beam strengthened in shear with side bonded CFRP fabric strips and subjected to cyclic loading. A detailed 3D nonlinear finite element model that takes into account the orthotropic nature of the polymer's fibers is developed. In order to simulate the bond between the CFRP sheets and concrete, a layer having the material properties of the adhesive epoxy resin is introduced in the model as an interface between the CFRP sheets and concrete surface. Appropriate numerical modeling strategies were used and the response envelope and the load-displacement hysteresis loops of the FE model were compared with the experimental response at all stages of the cyclic loading. It is observed that the responses of the FE beam model are in good agreement with those of the experimental test. A parametric study was conducted using the validated FE model to investigate the effect of spacing between CFRP sheets, number of CFRP layers, and fiber orientation on the overall performance of the T-beam. It is concluded that successful FE modeling provides a practical and economical tool to investigate the behavior of such strengthened beams when subjected to cyclic loading.
机译:近年来,碳纤维增强聚合物(CFRP)在弯曲和剪切作用下增强钢筋混凝土梁的用途得到了迅速的发展。当梁在循环荷载下加载时,具有外部粘结CFRP层压板或织物条的抗剪梁的性能引起了很多关注。这些问题需要在循环载荷下对这种梁进行实验,分析和数值研究。迄今为止,已经进行了有限的研究来解决这个问题。本文通过开发非线性有限元(FE)模型来进行数值研究,以研究侧向CFRP织物条带在剪力作用下承受循环载荷的悬臂式钢筋混凝土T梁的响应。建立了详细的3D非线性有限元模型,该模型考虑了聚合物纤维的正交各向异性性质。为了模拟CFRP板和混凝土之间的粘结,在模型中引入了具有粘性环氧树脂材料特性的层作为CFRP板和混凝土表面之间的界面。使用适当的数值建模策略,并将有限元模型的响应包络和载荷-位移磁滞回线与循环载荷所有阶段的实验响应进行比较。可以看出,FE光束模型的响应与实验测试的响应非常吻合。使用经过验证的有限元模型进行了参数研究,以研究CFRP板之间的间距,CFRP层数以及纤维取向对T型梁总体性能的影响。结论是,成功的有限元建模提供了一种实用且经济的工具来研究这种加强梁在承受周期性荷载时的行为。

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