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Comparison of numerical behaviors of FRP reinforced concrete beams using three smeared crack models

机译:三种涂抹裂缝模型对FRP钢筋混凝土梁数值性能的比较

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摘要

The numerical behaviors of fiber reinforced polymer (FRP) bar reinforced concrete beams using three non-linear finite element models are compared with the recorded data. First approach is based on strain decomposition into elastic and crack strain and is capable of simulating multiple non-orthogonal cracks. The remaining two approaches are based on the total strain crack model and include a rotating crack model (RCM) and an orthogonal fixed crack model (FCM). The analysis is carried out with the help of 2D-isoparametric plane-stress elements. Compression softening and tension stiffening effects of cracked concrete are considered. Tension reinforcement consists of either steel or FRP bars. The accuracy of the models has been discussed with reference to the authors' tests as well as various studies reported in the literature. Both RCM and orthogonal FCM models showed good agreement with the recorded data which was also found consistent with every type of FRP bar.
机译:将纤维增强聚合物(FRP)钢筋混凝土梁的三种非线性有限元模型的数值特性与记录数据进行了比较。第一种方法是基于将应变分解为弹性应变和裂纹应变,并且能够模拟多个非正交裂纹。其余两种方法基于总应变裂纹模型,包括旋转裂纹模型(RCM)和正交固定裂纹模型(FCM)。分析是借助2D等参平面应力元素进行的。考虑了开裂混凝土的压缩软化和拉伸刚性效应。抗拉强度由钢或FRP筋组成。已经参考作者的测试以及文献中报道的各种研究讨论了模型的准确性。 RCM和正交FCM模型均与记录的数据显示出良好的一致性,这也发现与每种类型的FRP钢筋都一致。

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