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Effects of cold weather on durability of CFRP strengthened circular hollow steel members

机译:寒冷天气对CFRP增强圆形空心钢构件耐久性的影响

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摘要

Tubular members have become progressively more popular due to excellent structural properties, aesthetic appearance, corrosion and fire protection capability. However, a large number of such structures are found structurally deficient due to reduction of strength when they expose to severe environmental conditions such as marine environment, cold and hot weather. Hence strengthening and retrofitting of structural members are in high demands. In recent times Carbon Fibre Reinforced Polymers (CFRP) composites appears to be an excellent solution to enhance the load carrying capacity and serviceability of steel structures because of its superior physical and mechanical properties. However, the durability of such strengthening system under cold environmental condition has not yet been well documented to guide the engineers. This paper presents the findings of a study conducted to enhance the bond durability of CFRP strengthened steel tubular members by treating steel surface using epoxy based adhesion promoter under cold weather subjected to bending. The experimental program consisted of six number of CFRP strengthened specimens and one bare specimen. The sand blasted surface of the three specimens to be strengthened was pre-treated with MBrace primer and other three were remained untreated and then cured under ambient temperature and cold weather (3oC) for three and six months period of time. The beams were then loaded to failure under four point bending. The structural response of each specimen was predicted in terms of failure mode, failure load and mid-span deflection. The research findings show that the cold weather immersion had an adverse effect on durability of CFRP strengthened structures. Moreover, the epoxy based adhesion promoter was found to enhance the bond durability in elastic range.
机译:由于优异的结构性能,美学外观,耐腐蚀和防火性能,管状构件已逐渐普及。然而,由于暴露于诸如海洋环境,寒冷和炎热的天气等严酷的环境条件时强度降低,因此发现许多这样的结构在结构上是不足的。因此,对结构构件的加强和改造提出了很高的要求。近年来,碳纤维增强聚合物(CFRP)复合材料由于其优异的物理和机械性能,似乎是增强钢结构的承载能力和可维修性的出色解决方案。但是,这种增强系统在寒冷环境下的耐久性尚未得到充分证明以指导工程师。本文介绍了一项研究结果,该研究结果是通过在寒冷天气下承受弯曲的条件下使用基于环氧的增粘剂处理钢表面来增强CFRP增强的钢管构件的粘结耐久性。实验程序包括6个CFRP加固试样和1个裸试样。用MBrace底漆对三个要加强的试样的喷砂表面进行了预处理,其余三个未进行处理,然后在环境温度和寒冷天气(3oC)下固化了三个六个月。然后在四点弯曲下将梁加载至破坏。根据破坏模式,破坏载荷和中跨挠度来预测每个试样的结构响应。研究结果表明,寒冷的天气浸泡会对CFRP加固结构的耐久性产生不利影响。此外,发现基于环氧基的增粘剂可增强弹性范围内的粘合耐久性。

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