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Experimental bond behaviour of GFRP and masonry bricks under impulsive loading

机译:GFRP与砖石在冲击荷载作用下的粘结性能

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Fibre reinforced polymers (FRP) have become a popular material for strengthening of masonry structures. The performance of this technique is strongly dependent on the bond between the FRP and the substrate. Understanding the strain rate effect on these materials and strengthening techniques is important for proper design and proper modelling of these systems under impacts or blast loads. This work aims to study the behaviour of the bond between glass fibre reinforced polymer and brick at different strain rates. A drop weight impact machine specially developed for pull-off tests (single shear tests) is used with different masses and different heights introducing different deformation rates. The strain rate effect on the failure mode, shear capacity and effective bond length is determined from the experimental results. Empirical relations of dynamic increase factors for these materials and techniques are also presented.
机译:纤维增强聚合物(FRP)已成为增强砖石结构的流行材料。该技术的性能在很大程度上取决于FRP与基材之间的键合。理解应变率对这些材料和强化技术的影响,对于在冲击或爆炸载荷下正确设计和正确建模这些系统非常重要。这项工作旨在研究玻璃纤维增​​强聚合物和砖在不同应变速率下的粘结行为。专门为拉拔试验(单剪切试验)开发的落锤式冲击机使用了不同的质量和不同的高度,从而引入了不同的变形率。由实验结果确定应变速率对破坏模式,剪切能力和有效粘结长度的影响。还介绍了这些材料和技术的动态增加因子的经验关系。

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