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Corroded steel beams with various corrosion aspect ratios - A rehabilitation technique using basalt fibre fabric

机译:具有各种腐蚀纵横比的腐蚀钢梁 - 一种使用玄武岩纤维织物的康复技术

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摘要

As the structural integrity of North America's aging infrastructure decreases, there is an urgent need for finding new and cost-effective methods for rehabilitating these structures. Previous studies showed that Carbon Fibre Reinforced Polymer (CFRP) and Glass Fibre Reinforced Polymer (GFRP) are effective in rehabilitating steel and concrete structures. In the current research, the feasibility of Basalt Fibre Reinforced Polymer (BFRP) in rehabilitating steel beams with various corrosion shapes was evaluated. Both experimental and finite element methods were used in this study. The current study found that BFRP is effective in increasing the yield and ultimate load capacities of steel beams that have developed corrosion defect of various aspect ratios. The findings also indicated that the ductility of the rehabilitated beams is lower than that of the undamaged beam, however, the ductility of the rehabilitated beams increases with increasing number of BFRP layers. The structural behavior of rehabilitated steel beams including the complex behavior of rupture in the BFRP was successfully modelled using a commercially available finite element software. A good correlation between finite element models and the experimental results was obtained. Validated finite element models were used to obtain a design equation that can be used to determine the optimum BFRP layers required to completely restore the ultimate load capacity of the steel beams corroded with various shapes.
机译:随着北美老化基础设施的结构完整性降低,迫切需要寻找新的和经济高效的方法来恢复这些结构。以前的研究表明,碳纤维增强聚合物(CFRP)和玻璃纤维增​​强聚合物(GFRP)在康复钢和混凝土结构方面是有效的。在目前的研究中,评价玄武岩纤维增强聚合物(BFRP)在恢复具有各种腐蚀形状的钢梁中的可行性。本研究中使用了实验和有限元方法。目前的研究发现,BFRP在增加具有各种纵横比的腐蚀缺陷的钢梁的产量和最终负载能力方面是有效的。结果还表明,恢复梁的延展性低于未损坏的光束的延展性,然而,恢复梁的延展性随着BFRP层数量的越来越多地增加。使用市售的有限元件软件成功建模了包括BFRP中破裂的复杂行为的恢复钢束的结构行为。获得有限元模型与实验结果之间的良好相关性。验证的有限元模型用于获得可用于确定完全恢复用各种形状腐蚀的钢梁的最终负载容量所需的最佳BFRP层的设计方程。

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