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Determination of boundary effect on mode II fracture energy of FRP sheet-to-concrete bonded joints

机译:FRP板上混凝土粘合接头模式II裂缝能量的边界效应的测定

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摘要

Fracture energy is a crucial parameter in describing the interfacial debonding process in concrete structures externally bonded with FRP plates or sheets. This paper is mainly concerned with the boundary effect on the mode II (shear) fracture energy of FRP-to-concrete bonded joints. An analytical model was proposed to predict the maximum pull-out load of FRP sheet from concrete, which is then related to the local fracture energy at the shear crack-tip region. Based on the comparisons between the analytically predicted and experimentally determined load-carrying capacity, the crack-tip local fracture energy indeed varies with the initial shear crack length. A bi-linear model was presented to well describe the mode II local fracture energy distribution along the overlapping length indicating the boundary effect. The size-independent mode II fracture energy is 550 N/m. (C) 2017 Elsevier Ltd. All rights reserved.
机译:裂缝能量是在外部与FRP板或板材外部结合的混凝土结构中的界面脱粘过程中的关键参数。 本文主要涉及FRP - 混凝土粘合接头的模式II(剪切)断裂能的边界效应。 提出了一种分析模型来预测来自混凝土的最大拉出载荷,然后与剪切裂纹尖端区域的局部断裂能量有关。 基于分析预测和实验确定的负载能力之间的比较,裂缝尖端骨折能量确实随着初始剪切裂缝长度而变化。 提出了双线性模型,沿着指示边界效应的重叠长度描述了模拟II局部断裂能量分布。 尺寸无关的模式II裂缝能量为550 n / m。 (c)2017 Elsevier Ltd.保留所有权利。

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