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Hybrid UHPC/NSM CFRP strips vs. traditional systems for flexural upgrading of RC beams - Experimental and FE study

机译:Hybrid UHPC / NSM CFRP条与RC梁弯曲升级的传统系统 - 实验和FE研究

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摘要

In this study, the efficacy of traditional versus innovative systems for enhancing the flexural strength of RC (reinforced concrete) beams is investigated experimentally as well as numerically. Four-point bending tests were conducted on seven RC beams. Test matrix comprised of two control and five strengthened beams. Strengthening techniques included: bonded steel plate, externally attached CFRP (carbon fiber reinforced polymer) composite, NSM (near-surface mounted) steel rebars, externally attached CFRCM (carbon fiber reinforced cementitious matrix) composite, and innovative hybrid system comprising of ultra-high performance concrete (UHPC) layer combined with NSM CFRP strips. Different strengthening systems were designed to provide approximately the same flexural strength enhancement. The performance of strengthened specimens was compared in terms of load-deflection characteristics. The peak load of the tested specimens was analytically predicted using the equations of ACI 318-19 code and ACI 440.2R-17 guidelines. Nonlinear FE (finite element) modeling was also carried out, and a comparison was conducted between the experimental and FE results showing good agreement. The validated FE models were extended for some useful parametric studies of interest.
机译:在这项研究中,通过实验和数量地研究了传统与增强RC(钢筋混凝土)梁的弯曲强度的传统与创新系统的疗效。在七个RC光束上进行四点弯曲试验。测试矩阵包括两个控制和五个强化梁。加强技术包括:粘结钢板,外部附着的CFRP(碳纤维增强聚合物)复合材料,NSM(近表面安装)钢钢筋,外部附着的CFRCM(碳纤维增强胶质基质)复合材料,以及包括超高高的创新混合系统性能混凝土(UHPC)层与NSM CFRP条配合。设计不同的强化系统以提供大致相同的弯曲强度增强。在载荷偏转特性方面比较了加强标本的性能。使用ACI 318-19码和ACI 440.2R-17指南的方程来分析测试样本的峰值负荷。还进行了非线性Fe(有限元)建模,在实验和FE结果之间进行了比较,显示出良好的一致性。有效的FE模型延长了一些有用的兴趣参数研究。

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