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Effective bond length of CFRP sheets externally bonded to concrete beams under marine environment

机译:海洋环境下外部粘结到混凝土梁的CFRP板的有效粘结长度

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Externally strengthened marine concrete structures by using carbon fiber-reinforced polymer (CFRP) are being used more extensively because of their exceptional properties, including high corrosion/environmental degradation resistance. Debonding of CFRP sheet from the concrete substrate is one of the typical failure modes observed by using this technique. Therefore, the strengthening technique efficiency strongly depends on the effectiveness of the CFRP-concrete bond. Numerous experimental studies have been conducted to investigate the bond behavior and most of the proposed bond strength models considering the influence of the effective bond length. This study was conducted to experimentally investigate the effective bond length of CFRP sheets subjected to marine environment exposure, which is identified as one the major gaps in this discipline. The concrete beam specimens exposed to marine environment were tested to determine the effective bond length. The three-point bending-type shear bond test was used to obtain the stress versus load relationship. The test variables were the type and exposure duration. The test results showed that the marine environmental exposure significantly influenced bond stress and effective bond length. Two factors, CFRP stiffness and concrete compressive strength, contributed to fix the effective bond length of the CFRP-concrete interface. The maximum bond stress, after 12 months of wet/dry cyclic exposure, was found higher than that subjected to full immersion exposure. The average maximum bond stress decreased with an increase in full-immersion exposure time to 12 months. Results indicated that the exposure condition influences the capacity of CFRP-concrete bond and resulted in a reduction in effective bond length by 16-29%. Moreover, debonding was observed as the dominating mode of failure for all tested specimens. The prediction models of effective bond length, considering the influence of marine environment, are also established. Therefore, the outcome of this study will help to resolve one of the debonding issues in strengthening marine structures. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过使用碳纤维增强聚合物(CFRP)进行外部加固的海洋混凝土结构,由于其优异的性能(包括高耐腐蚀性/耐环境降解性)而得到了广泛的应用。 CFRP板从混凝土基材上剥离是使用该技术观察到的典型破坏模式之一。因此,强化技术的效率很大程度上取决于CFRP-混凝土键的有效性。考虑到有效粘结长度的影响,已经进行了许多实验研究来研究粘结行为和大多数提出的粘结强度模型。进行这项研究的目的是实验研究暴露于海洋环境中的CFRP板的有效粘结长度,这被确定为该学科的主要缺陷之一。测试了暴露在海洋环境中的混凝土梁样品,以确定有效粘结长度。使用三点弯曲型剪切粘结试验获得应力与载荷的关系。测试变量是类型和暴露持续时间。测试结果表明,海洋环境暴露显着影响了键应力和有效键长。 CFRP刚度和混凝土抗压强度这两个因素有助于固定CFRP-混凝土界面的有效粘结长度。湿/干循环暴露12个月后,最大粘合应力高于完全浸入暴露。随着最大浸入时间增加到12个月,平均最大粘结应力降低。结果表明,暴露条件会影响CFRP-混凝土粘结的能力,并导致有效粘结长度减少16-29%。此外,对于所有测试样品,观察到剥离是破坏的主要方式。建立了考虑海洋环境影响的有效键长预测模型。因此,这项研究的结果将有助于解决加强海洋结构中的一种脱胶问题。 (C)2018 Elsevier Ltd.保留所有权利。

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