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Effect of reinforcement ratios on shear behavior of concrete beams strengthened with CFRP sheets

机译:配筋率对碳纤维布加固混凝土梁抗剪性能的影响

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Carbon fiber reinforcement polymer (CFRP) sheets are the most commonly materials that are used to strengthen reinforced concrete members due to high strength-to-weight ratio, excellent mechanical strength, and good fatigue properties. In this research program seven reinforced concrete beams were tested under four points loading with different shear span-to-depth ratiosavd, longitudinal and vertical reinforcement ratios. A numerical analysis using ANSYS software program was done by modeling 27 reinforced concrete beams with and without CFRP sheets. The beam dimensions, concrete strength, strengthening configuration of the CFRP sheets (full wrapped, U shape, and side bonding), and FRP thickness were considered as the main parameters of the numerical analysis. A comparison between the finite element (FE) results and the ACI standard code demonstrated the validity of the computational models in capturing the structural response of FRP contribution with variation varied from (10–16)%, (12–20)% and (13–19)% for full wrapping, U-jacketing, and side bonding, respectively. The finite element models were able to accurately predict the load capacities for the simulated RC beams strengthened in shear with CFRP composites. The results obtained using ANSYS finite element are relatively identical to the experimental ones, showing reasonable agreement with variation not more than 5% in all the specimens.
机译:碳纤维增强聚合物(CFRP)板是最常用的用于增强钢筋混凝土构件的材料,因为它们具有高的强度重量比,出色的机械强度和良好的疲劳性能。在该研究程序中,在四个点荷载下以不同的剪切跨度-纵深比avd,纵向和竖向配筋比对七个钢筋混凝土梁进行了测试。使用ANSYS软件程序通过对27个带或不带CFRP板的钢筋混凝土梁进行建模来进行数值分析。数值分析的主要参数是梁的尺寸,混凝土强度,CFRP片材的增强结构(完全包裹,U形和侧面粘结)以及FRP厚度。有限元(FE)结果与ACI标准代码之间的比较表明,计算模型在捕获FRP贡献的结构响应时的有效性,其变化范围为(10–16)%,(12–20)%和(13) –19)%分别用于完全包裹,U形护套和侧面粘结。有限元模型能够准确预测CFRP复合材料在剪力作用下加固的模拟RC梁的承载能力。使用ANSYS有限元获得的结果与实验结果相对相同,表明所有样本中的偏差均不超过5%的合理一致性。

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