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Bond-slip models for FRP sheets/plates bonded to concrete

机译:用于粘结到混凝土的FRP板/板的粘结滑移模型

摘要

An accurate local bond-slip model is of fundamental importance in the modelling of FRP-strengthened RC structures. In this paper, a review of existing bond strength models and bond-slip models is first presented. These models are then assessed using the results of 253 pull tests on simple FRP-to-concrete bonded joints, leading to the conclusion that a more accurate model is required. In the second half of the paper, a set of three new bond-slip models of different levels of sophistication is proposed. A unique feature of the present work is that the new bond-slip models are not based on axial strain measurements on the FRP plate; instead, they are based on the predictions of a meso-scale finite element model, with appropriate adjustment to match their predictions with the experimental results for a few key parameters. Through comparisons with the large test database, all three bond-slip models are shown to provide accurate predictions of both the bond strength (i.e. ultimate load) and the strain distribution in the FRP plate.
机译:精确的局部粘结滑移模型对于FRP加固的RC结构的建模至关重要。本文首先介绍了现有的粘结强度模型和粘结滑移模型。然后使用253个简单的FRP到混凝土粘结节点的拉力试验结果评估这些模型,得出结论,需要更精确的模型。在本文的后半部分,提出了一组三个新的,不同复杂程度的新的键滑模型。当前工作的一个独特之处在于,新的粘结滑移模型不是基于FRP板上的轴向应变测量值;而是基于FRP板的轴向应变测量。相反,它们基于中尺度有限元模型的预测,并进行了适当的调整以使它们的预测与一些关键参数的实验结果相匹配。通过与大型测试数据库的比较,显示了所有三个粘结滑移模型可以提供粘结强度(即极限载荷)和FRP板中应变分布的准确预测。

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