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首页> 外文期刊>Australian Journal of Structural Engineering >Durability performance of carbon fibre-reinforced polymer strengthened circular hollow steel members under cold weather
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Durability performance of carbon fibre-reinforced polymer strengthened circular hollow steel members under cold weather

机译:碳纤维增强聚合物增强的圆形空心钢构件在寒冷天气下的耐久性能

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摘要

The use of circular hollow steel members has attracted a great deal of attention during past few years because of having excellent structural properties, aesthetic appearance, corrosion and fire protection capability. However, no one can deny the structural deficiency of such structures due to reduction of strength when they are exposed to severe environmental conditions such as marine environment, cold and hot weather. Hence strengthening and retrofitting of structural steel members is now very imperative. This paper presents the findings of a research program that was conducted to study the bond durability of carbon fibre-reinforced polymer (CFRP) strengthened steel tubular members under cold weather and tested under four-point bending. Six number of CFKP-strengthened specimens and one unstrengthened specimen were considered in this program. The three specimens having sand blasted surface to be strengthened was pre-treated with MBrace primer and other three were remained untreated and then cured under ambient temperature at least four weeks and cold weather (3 ℃) for three and six months period of time. Quasi-static tests were then performed on beams to failure under four-point bending. The structural response of each specimen was predicted in terms of failure load, mid-span deflection, composite beam behaviour and failure mode. The research outcomes show that the cold weather immersion had an adverse effect on durability of CFRP-strengthened steel structures. Moreover, the epoxy based adhesion promoter was found to enhance the bond durability in plastic range. The analytical models presented in this study were found to be in good agreement in terms of predicting ultimate load and deflection. Finally, design factors are proposed to address the short-terms durability performance under cold weather.
机译:在过去的几年中,圆形空心钢构件的使用由于具有优异的结构性能,美学外观,腐蚀和防火能力而引起了广泛的关注。然而,没有人能否认由于这些结构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下而导致强度降低的结构缺陷。因此,现在非常需要对钢结构构件进行加固和翻新。本文介绍了一项研究计划的结果,该研究计划旨在研究碳纤维增强聚合物(CFRP)增强的钢管构件在寒冷天气下的粘结耐久性,并在四点弯曲下进行了测试。该程序考虑了6个CFKP增强标本和1个未增强标本。用MBrace底漆对3个表面进行喷砂处理的试样进行强化处理,其余3个试样未经处理,然后在环境温度下至少固化4周,并在寒冷的天气(3℃)下固化3到6个月。然后对梁进行四点弯曲下的准静态测试。根据破坏载荷,中跨挠度,复合梁行为和破坏模式预测了每个试样的结构响应。研究结果表明,寒冷的天气浸泡对CFRP加固钢结构的耐久性有不利影响。此外,发现基于环氧基的增粘剂可增强塑料范围内的粘合耐久性。在预测极限载荷和挠度方面,本研究中提出的分析模型被发现是非常一致的。最后,提出了设计因素以解决寒冷天气下的短期耐久性能。

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