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Prediction of the bond-slip law in externally laminated concrete substrates by an analytical based nonlinear approach

机译:基于分析的非线性方法预测外层混凝土基底的粘结滑移规律

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摘要

To attain a suitable strengthening system for concrete structures, adequate stress distribution between externally bonded fibre reinforced polymer (FRP) materials and the substrate is required. With the growing application of the FRP in strengthening of the structures and in order to be able to sufficiently model the strengthened structure behaviour, the need for a generic bond relationship is increasing. Hence, this article introduces a simplified analytical method to define the bond-slip law of the FRP-concrete interfaces. The advantage of this procedure is that the model is developed only based on boundary conditions and therefore can be applied to any type of the adhesively bonded joints. Subsequently, the bond characteristics obtained from the proposed model is compared with the experimental results and the previous models. A modified single lap shear test set-up is adopted during the experiments. In addition, a new relationship is proposed for determination of the fracture energy corresponding to antisymmetric in-plane shear mode. Analytical analysis indicates that the interfacial fracture energy increases for the samples with thicker bondline or lower FRP-to-concrete width ratio.
机译:为了获得适用于混凝土结构的合适的加固系统,需要在外部粘结的纤维增强聚合物(FRP)材料和基底之间分配足够的应力。随着FRP在结构增强中的应用不断增加,并且为了能够充分模拟增强的结构行为,对通用键关系的需求正在增加。因此,本文介绍了一种简化的分析方法来定义FRP-混凝土界面的粘结滑移定律。此过程的优点在于,仅基于边界条件开发模型,因此可以将其应用于任何类型的粘合接头。随后,将从提议的模型获得的键合特性与实验结果和以前的模型进行比较。实验过程中采用了改进的单搭接剪切试验装置。此外,提出了一种新的关系来确定与反对称面内剪切模式相对应的断裂能。分析分析表明,粘结层较厚或FRP与混凝土的宽度比较低的样品,其界面断裂能增加。

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