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Effect of corner radius and aspect ratio on compressive behavior of rectangular concrete columns confined with CFRP

机译:角半径和长宽比对CFRP约束矩形混凝土柱抗压性能的影响

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This paper investigates the behavior of rectangular concrete columns confined with carbon fiber reinforced polymer (CFRP) composites, considering the effect of corner radius and cross section aspect ratio. Nonlinear behavior of confined concrete and orthotropic behavior of fiber-reinforced polymer (FRP) composite have been incorporated in the finite element modeling. The CFRP rupture was modeled in the state of biaxial stresses by using Tsai-Wu's failure criterion. Therefore, the effects of axial stresses on rupture of FRP as well as the effects of hoop stresses were taken into consideration. Furthermore, to provide more precise modeling and analysis, Tsai-Wu's criterion and a modified Drucker-Prager plasticity model were applied concurrently in simulating. The finite element analysis was verified by simulating CFRP confined cylindrical and rectangular columns. Concrete columns with cross section aspect ratios of 1.00, 1.25, 1.54 and 2.00, and different corner radii including 5, 15, 25 and 38 mm were modeled. Corner radii of 45,60 and 75 mm were also modeled in square sections. Results showed that both decreasing the corner radius and increasing the aspect ratio, decrease the compressive strength and ductility enhancement of the confined column. Results of simulating rectangular confined columns led to a design-oriented model for predicting the compressive strength of these sections with different corner radii. The proposed simple model is shown to be in good agreement with the existing test results in the literature, showing the applicability of the model for design purposes for FRP-confined concrete columns.
机译:考虑角半径和横截面纵横比的影响,本文研究了碳纤维增强聚合物(CFRP)复合材料约束的矩形混凝土柱的性能。有限元建模中已经纳入了约束混凝土的非线性行为和纤维增强聚合物(FRP)复合材料的正交各向异性行为。使用蔡武的破坏准则,在双轴应力状态下模拟了CFRP破裂。因此,考虑了轴向应力对FRP断裂的影响以及环向应力的影响。此外,为了提供更精确的建模和分析,在仿真中同时应用了Tsai-Wu准则和改进的Drucker-Prager可塑性模型。通过模拟CFRP约束的圆柱和矩形柱,验证了有限元分析。对截面为1.00、1.25、1.54和2.00且截面角半径包括5、15、25和38 mm的混凝土柱进行建模。在正方形截面中还模拟了45,60和75 mm的角半径。结果表明,减小拐角半径和增大长宽比均会降低承压柱的抗压强度和延性。模拟矩形承压柱的结果导致了一个面向设计的模型,用于预测这些具有不同角半径的截面的抗压强度。结果表明,所提出的简单模型与文献中的现有测试结果非常吻合,表明该模型可用于FRP约束混凝土柱的设计目的。

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