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Experimental study on the bond behaviour of a transversely compressed mechanical anchorage system for externally bonded reinforcement

机译:横向压缩外锚固机械锚固系统粘结性能的试验研究

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This paper presents an experimental programme aiming at studying the bond behaviour of carbon-FRP (CFRP) for externally bonded reinforcement (EBR) systems mechanically anchored to concrete. Eleven large scale pullout tests were carried out using concrete blocks of 200 mm x 500 mm x 800 mm. In each block a single CFRP laminate was mounted using the EBR technique and mechanically fixed to concrete through a commercial mechanical anchorage with different levels of transverse compression. The blocks were tested under a pull-out configuration until failure. The study of the CFRP EBR system comprises not only the mechanical anchorage but also the subsequent CFRP EBR laminate bonded to concrete. The debonding load is observed to be dependent on the laminate width, as expected, and a good relationship between the experimental results and analytical predictions is found. A model of the local bond shear stress-slip law in the bonded zone is adopted and calibrated to the experimental results taking into account the roughness of the concrete surface. Moreover, the effects of the laminate width and the compressive stress level on the anchorage effectiveness are evaluated. Results show that the mechanical anchorage generally provides adequate transverse compression of the CFRP laminate to concrete surface.
机译:本文提出了一个实验程序,旨在研究碳纤维增强塑料(CFRP)的粘结性能,以机械锚固到混凝土的外部粘结增强(EBR)系统。使用200毫米x 500毫米x 800毫米的混凝土砌块进行了11次大规模拉拔试验。在每个块中,使用EBR技术安装单个CFRP层压板,并通过具有不同横向压缩水平的商业机械锚固将其机械固定在混凝土上。这些块在拉出配置下进行测试,直到出现故障。 CFRP EBR系统的研究不仅包括机械锚固,还包括随后粘结到混凝土上的CFRP EBR层压板。如预期的那样,观察到剥离力取决于层压板的宽度,并且在实验结果和分析预测之间发现了良好的关系。考虑到混凝土表面的粗糙度,采用了粘结区局部粘结剪切应力-滑动规律的模型,并根据实验结果进行了校准。此外,评估了层压板宽度和压应力水平对锚固效果的影响。结果表明,机械锚固通常可将CFRP层压板充分横向压缩到混凝土表面。

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