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Bond-slip model for FRP-to-concrete bonded joints under external compression

机译:外部压缩下玻璃纤维混凝土粘结节点的粘结滑移模型

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摘要

The influence of compressive stresses exerted on FRP-concrete joints created by external strengthening of structural members on the performance of the system requires better understanding especially when mechanical devices are used to anchor the externally bonded reinforcement (EBR). The numerical modelling of those systems is a tool that permits insight into the performance of the corresponding interfaces and was used in the present study, essentially directed to analyse the effectiveness of EBR systems under compressive stresses normal to the composite surface applied to GFRP-to-concrete interfaces. The compressive stresses imposed on the GFRP-to-concrete interface model the effect produced by a mechanical anchorage system applied to the EBR system. An experimental program is described on which double-lap shear tests were performed that created normal stresses externally applied on the GFRP plates. A corresponding bond-slip model is proposed and the results of its introduction in the numerical analysis based in an available 3D finite element code are displayed, showing satisfactory agreement with the experimental data. The results also showed that lateral compressive stresses tend to increase the maximum bond stress of the interface and also originate a residual bond stress which has significant influence on the interface strength. Also, the strength of the interface increases with the increase of the bonded length which have consequences on the definition of the effective bond length. (C) 2015 Elsevier Ltd. All rights reserved.
机译:需要对由结构构件的外部加强所产生的FRP混凝土接头上的压缩应力对系统性能的影响有更好的了解,尤其是在使用机械设备锚固外部结合的加强件(EBR)时。这些系统的数值建模是一种工具,可用于深入了解相应界面的性能,并且已在本研究中使用,主要用于分析EBR系统在垂直于GFRP-to-GFRP复合材料表面的压应力下的有效性。具体接口。施加在GFRP到混凝土界面上的压应力模拟了将机械锚固系统应用于EBR系统所产生的效果。描述了一个实验程序,在该程序上执行了双搭接剪切测试,该测试产生了外部施加在GFRP板上的法向应力。提出了相应的粘结滑移模型,并在可用的3D有限元代码的基础上,显示了其在数值分析中的引入结果,表明与实验数据令人满意。结果还表明,侧向压应力趋向于增加界面的最大结合应力,并且还产生残余结合应力,其对界面强度具有重要影响。而且,界面的强度随着结合长度的增加而增加,这对有效结合长度的定义有影响。 (C)2015 Elsevier Ltd.保留所有权利。

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