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Time-dependent behavior of RC beams strengthened with externally bonded FRP plates: interfacial stresses analysis

机译:外部粘结FRP板加固RC梁的时变行为:界面应力分析

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External bonding of fibre reinforced polymer (FRP) composites has becomes a popular technique for strengthening concrete structures all over the world. An important failure mode of such strengthened members is the debonding of the FRP plate from the concrete due to high interfacial stresses near the plate ends. For correctly installed FRP plate, failure will occur within the concrete. Accurate predictions of the interfacial stresses are prerequisite for designing against debonding failures. In particular, the interfacial stresses between a beam and soffit plate within the linear elastic range have been addressed by numerous analytical investigations. In this study, the time-dependent behavior of RC beams bonded with thin composite plate was investigated theoretically by including the effect of the adherend shear deformations. The time effects considered here are those that arise from shrinkage and creep deformations of the concrete. This paper presents an analytical model for the interfacial stresses between RC beam and a thin FRP plate bonded to its soffit. The influence of creep and shrinkage effect relative to the time of the casting and the time of the loading of the beams is taken into account. Numerical results from the present analysis are presented to illustrate the significance of time-dependent of adhesive stresses.
机译:纤维增强聚合物(FRP)复合材料的外部粘合已成为全世界增强混凝土结构的流行技术。这种加强构件的重要破坏方式是由于玻璃纤维板端部附近的高界面应力而使FRP钢板从混凝土上剥离。对于正确安装的FRP板,混凝土内部会发生故障。界面应力的准确预测是进行抗脱胶设计的前提。特别地,通过大量的分析研究已经解决了在线性弹性范围内的梁与拱腹板之间的界面应力。在这项研究中,通过考虑被粘物剪切变形的影响,从理论上研究了薄复合板粘结的RC梁的时变行为。这里考虑的时间效应是由于混凝土的收缩和蠕变引起的。本文为钢筋混凝土梁与粘结在其后表面的薄玻璃纤维板之间的界面应力提供了一个解析模型。考虑了蠕变和收缩效应相对于铸造时间和梁加载时间的影响。提出了本分析的数值结果,以说明粘合应力随时间变化的重要性。

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