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Experimental and numerical investigations on the performance evaluation of shear deficient and GFRP strengthened reinforced concrete beams

机译:GFRP加固钢筋混凝土梁抗剪性能的试验与数值研究。

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摘要

The present study is focused on the experimental investigation and nonlinear finite element simulations of shear deficient and glass fibre reinforced plastic (GFRP) strengthened reinforced concrete beams. Three levels of shear deficiency are considered in the design. Two layers of GFRP fabric are used for strengthening in the shear zone. The behavior of control, shear deficient and GFRP strengthened beams under two-point monotonic loading is studied. Detailed 3D non-linear finite element analyses with perfect bonding as well as with cohesive zone modelling are carried out to simulate the behavior of shear deficient beams. The responses, in terms of load-deflection behavior, failure loads and crack patterns, obtained from numerical simulations are validated with that of the experimental investigations. The validated numerical models are then used for studying the efficacy and effectiveness of various strengthening schemes using epoxy impregnated GFRP fabric where the number of layers, orientation and distribution of fibres are considered as parameters.
机译:本研究的重点是抗剪和玻璃纤维增​​强(GFRP)增强钢筋混凝土梁的试验研究和非线性有限元模拟。设计中考虑了三个水平的剪切不足。两层GFRP织物用于在剪切区进行加固。研究了两点单调荷载下控制梁,抗剪梁和GFRP加固梁的性能。进行了详细的3D非线性有限元分析,具有完美的粘结以及内聚区建模,以模拟剪切力不足梁的行为。从数值模拟获得的关于载荷-挠度行为,破坏载荷和裂纹模式的响应已通过实验研究得到了验证。然后,将经过验证的数值模型用于研究使用环氧树脂浸渍的GFRP织物的各种加固方案的功效和有效性,其中纤维的层数,取向和分布均作为参数。

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