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Concrete slabs strips reinforced with epoxy-bonded carbon laminates into slits

机译:用环氧粘结的碳层压板加固的混凝土板条切缝

摘要

A promising strengthening strategy, using carbon fiber reinforced polymer (CFRP) materials, consists in applying CFRP laminate strips into pre-cut slits opened in the concrete cover of the elements to strengthen. Since both faces of the laminate are bonded to concrete by epoxy adhesive, the maximum attainable strain in the CFRP at the failure of the strengthened element is higher than when the CFRP is externally bonded. This strengthening technique is designated by Near Surface Mounted and has been successfully used to increase the flexural and the shear resistance of concrete and masonry structures. In the present work, the effectiveness of this technique to increase the service and ultimate load carrying capacity of reinforced concrete slabs is assessed by an experimental program. A numerical strategy was developed to predict the load-deflection relationship of this type of elements. The results are presented and analyzed, and the performance of the numerical model is appraised.
机译:使用碳纤维增强聚合物(CFRP)材料的一种有前途的加固策略是将CFRP层压板条应用到预先切割的狭缝中,该狭缝在元件的混凝土覆盖层中开口以进行加固。由于层压板的两个面都通过环氧胶粘剂粘结到混凝土上,因此在CFRP加固元件失效时的最大可承受应变要高于CFRP外部粘结时的应变。这种加固技术由近表面安装技术指定,并且已成功用于增加混凝土和砖石结构的抗弯强度和抗剪强度。在目前的工作中,通过实验程序评估了该技术提高钢筋混凝土板的服务能力和最终承载能力的有效性。开发了一种数值策略来预测这种类型的单元的载荷-挠度关系。给出并分析了结果,并对数值模型的性能进行了评估。

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