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Numerical simulation on seismic retrofitting performance of reinforced concrete columns strengthened with fibre reinforced polymer sheets

机译:纤维增强聚合物板加固钢筋混凝土柱抗震性能的数值模拟

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摘要

This paper evaluates the seismic performance of reinforced concrete columns retrofitted with fibre reinforced polymer (FRP) sheets through numerical simulations of the load-deformation response using two-dimensional finite element analysis (2D-FEA). The relatively rational mesh configuration is verified through comparison of analysis results obtained from the different mesh configurations. The seismic performance of three reinforced concrete (RC) columns strengthened with FRP sheets is assessed through a series of parametric studies, and the applicability of existing crack models and constitutive relationships on crack discontinuity and concrete compressive behaviour are validated. Comparisons of analysis results with tests shows that an equivalent uniaxial strain model and a failure criterion can be used to accurately simulate nonlinear behaviour and the failure of concrete under a biaxial stress state, respectively. Moreover, it is shown that a modified confinement model can be simply adopted to evaluate confined effects from hoop steel and FRP on concrete, which generally operate in three-dimensional confinement. Lastly, the seismic retrofitting performance of RC columns wrapped with FRP sheets is verified by analysing load-deformation responses and the progression of stress-strain at inflection points and bottoms of the columns.
机译:本文通过使用二维有限元分析(2D-FEA)对荷载-变形响应进行数值模拟,评估了用纤维增强聚合物(FRP)片加固的钢筋混凝土柱的抗震性能。通过比较从不同网格配置获得的分析结果,可以验证相对合理的网格配置。通过一系列参数研究,评估了用玻璃纤维布加固的三个钢筋混凝土柱的抗震性能,并验证了现有裂缝模型的适用性以及本构关系对裂缝不连续性和混凝土抗压性能的影响。分析结果与试验结果的比较表明,可以使用等效的单轴应变模型和破坏准则分别精确地模拟双轴应力状态下混凝土的非线性行为和破坏。此外,结果表明,可以简单地采用修改后的约束模型来评估箍筋钢和FRP对混凝土的约束效果,这些效果通常在三维约束下进行。最后,通过分析荷载-变形响应以及柱的拐点和底部的应力-应变过程,验证了包裹有FRP板的RC柱的抗震性能。

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