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Numerical simulation of FRP-strengthened RC slabs anchored with FRP anchors

机译:FRP锚固的FRP加固RC板的数值模拟

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Reinforced concrete (RC) members such as beams and slabs can be strengthened in flexure by bonding fibre-reinforced polymer (FRP) composite plates to their tension face. Experimental studies have shown that anchorage of the FRP plates with anchors made from FRP (i.e. FRP anchors) can delay and even eliminate premature debonding failure. This paper reports on the finite element (FE) analysis of a series of FRP-strengthened RC test slabs anchored with FRP anchors. Prior to introducing the FE modelling strategy, a semi-empirical load-slip model is proposed for modelling the FRP anchors. The load-slip model, which is calibrated from FRP-to-concrete joint tests, is novel and is also essential for the analysis of the slabs. The numerically simulated results of load, deflection and strain for the test slabs are shown to be in good agreement with test measurements. The results help provide needed insight to the influence of FRP anchors upon FRP-strengthened members. (C) 2018 Elsevier Ltd. All rights reserved.
机译:可以通过将纤维增强聚合物(FRP)复合板粘结到其受拉面上来增强诸如梁和楼板之类的钢筋混凝土构件的挠曲性。实验研究表明,用FRP制成的锚(即FRP锚)将FRP板锚固可以延迟甚至消除过早的脱胶失败。本文报告了一系列用FRP锚固的FRP加固的RC测试板的有限元分析。在介绍有限元建模策略之前,提出了一个用于FRP锚建模的半经验滑移模型。荷载滑移模型是通过FRP到混凝土的联合试验进行校准的,它是新颖的,对于板的分析也是必不可少的。试验板的载荷,挠度和应变的数值模拟结果与试验测量结果非常吻合。结果有助于提供有关FRP锚对FRP加固构件的影响所需的见解。 (C)2018 Elsevier Ltd.保留所有权利。

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