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Analytical and finite element studies on hybrid FRP strengthened RC column elements under axial and eccentric compression

机译:轴向和偏心压缩作用下混合FRP加固RC柱单元的分析和有限元研究

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摘要

AbstractAnalytical and finite element studies on the behavior of Reinforced Concrete (RC) column elements strengthened using a hybrid Carbon Fiber Reinforced Polymer (CFRP) laminates and externally bonded fabric is explored in this study. The main objective of this study is to evaluate the effect of hybrid strengthening on the initial and post-cracking stiffness, peak and post-peak behavior, and change in failure modes of RC column elements. Both axial and eccentric loads are considered in this study. Experimental program is carried out by testing the column elements with and without different FRP strengthening. Analytical predictions are obtained using the strain compatibility approach based on the existing constitutive models for unconfined and confined concrete, steel and FRP composites. A numerical model of column elements is developed using a commercial software ABAQUS. The predictions obtained from the analytical and FE analysis were validated with the experimental results. Analytical and FE predictions exhibited a fair correlation with discrepancy of less than 5% when compared to test results. A parametric study is carried out using the validated FE analysis by varying the CFRP fabric ratio, CFRP laminate ratio and their hybrid combinations. Hybrid strengthening technique is found to be more efficient in improving the initial and post-cracking stiffness, strength and ultimate displacement ductility of RC column elements under compression.
机译: 摘要 使用混合碳纤维增强聚合物(CFRP)层压板增强的钢筋混凝土(RC)柱单元的性能的分析和有限元研究这项研究探索了外部粘合织物。这项研究的主要目的是评估混合强化对开裂初始和刚度,峰和峰后行为以及RC柱单元破坏模式变化的影响。这项研究考虑了轴向和偏心载荷。实验程序是通过测试带有和不带有不同FRP加固的柱单元来执行的。基于现有的本构模型,用于无限制和承压混凝土,钢和FRP复合材料,使用应变相容性方法可获得分析预测。使用商业软件ABAQUS开发了列元素的数值模型。通过分析和有限元分析获得的预测结果与实验结果相吻合。与测试结果相比,分析和有限元预测显示出显着的相关性,差异小于5%。使用经过验证的有限元分析通过更改CFRP织物比率,CFRP层压比率及其混合组合来进行参数研究。研究发现,采用混合加固技术可以更有效地提高受压钢筋混凝土柱构件的开裂前后的刚度,强度和极限位移延性。

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