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A partial-interaction approach for extracting FRP-to-concrete bond characteristics from environmentally loaded flexural tests

机译:从环境弯曲试验中提取FRP与混凝土粘结特性的部分相互作用方法

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Bonding fibre-reinforced polymers (FRP) to reinforced concrete (RC) members has become a popular means for enhancing load-carrying capacity and extending service life. However, the long-term durability of flexurally strengthened members remains uncertain. In this paper, a numerical solution to a previously developed partial-interaction (PI) moment-rotation approach for intermediate crack (IC) debonding in FRP-strengthened RC flexural members is applied to a set of test results in published literature to extract bond characteristics. This is significant in four respects: (1) the model is based on fundamental PI theory, which directly simulates the formation and widening of cracks associated with the tension-stiffening mechanism, and explicitly allows for any changes at bond interfaces due to environmental loading or corrosion of the steel reinforcement. (2) The model also simulates the mechanism of compressive concrete softening should it occur prior to the complete debonding of FRP laminates. (3) Changes to local bond characteristics at the FRP-to-concrete interface due to environmental loading can be quantified by matching the experimental load-deflection response of deteriorated members. (4) The approach can be applied to a wide range of flexural test data, so as to broaden the bounds of bond-slip models, which are otherwise limited to the bounds of shear bond tests. Using the approach, a set of bond characteristic deterioration factors, derived from full-range load-deflection responses of environmental loaded flexural members, indicate that bond deterioration at the FRP-to-concrete interface generally compromises the ductility and strength of flexural members. (C) 2017 Elsevier Ltd. All rights reserved.
机译:将纤维增强聚合物(FRP)粘合到钢筋混凝土(RC)构件上已成为提高承载能力和延长使用寿命的一种流行方法。但是,抗弯构件的长期耐久性仍然不确定。在本文中,将先前开发的用于FRP加固的RC挠性构件中的中间裂纹(IC)脱粘的部分相互作用(PI)矩旋转方法的数值解决方案应用于已发表文献中的一组测试结果,以提取粘结特性。这在四个方面具有重要意义:(1)该模型基于基本的PI理论,该理论直接模拟与张力-强化机制相关的裂纹的形成和扩展,并明确考虑到由于环境载荷或钢筋腐蚀。 (2)该模型还模拟了在FRP层压板完全脱粘之前发生的压缩混凝土软化机理。 (3)可以通过匹配劣化构件的实验荷载-挠度响应来量化由于环境荷载引起的FRP-混凝土界面处的局部粘结特性变化。 (4)该方法可以应用于广泛的挠曲测试数据,以扩大粘结滑移模型的范围,而该范围仅限于剪切粘结试验的范围。使用该方法,从环境载荷挠性构件的全范围载荷-挠度响应中得出的一组粘结特征劣化因子表明,FRP到混凝土界面处的粘结劣化通常会损害挠性构件的延展性和强度。 (C)2017 Elsevier Ltd.保留所有权利。

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