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EXPERIMENTAL RESEARCH ON SLENDER CIRCULAR TUBULAR STEEL BRACES STRENGTHENED BY CARBON FIBER REINFORCED POLYMER

机译:碳纤维增强的细长圆管钢管支架的试验研究

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Although the application of carbon fiber reinforced polymers (CFRP) on strengthening of concrete structures has been reported widely due to its superior mechanical and physical properties: high strength-to-weight ratio, corrosion resistance, easy application and construction, there are relatively few applications to steel structures, especially to tubular steel structures. This paper firstly reviews previous and on-going filed projects, experimental and theoretical researches on retrofitting of tubular steel structures by CFRP. In order to investigate the performance of circular tubular steel braces retrofitted with CFRP, five long circular steel braces (88.9 mmX 4 mm) wrapped with different longitudinal CFRP sheets, compared with two control specimens without CFRP retrofitting, are tested to study the effects of CFRP on overall buckling behavior. In all CFRP-retrofitted braces, axial compression and lateral deflections are reduced. The experimental findings show that externally bonded longitudinal CFRP sheets are effective in increasing the axial strength and stiffness of slender braces. For the specimen tested, depending on the number of CFRP sheet layer, the percentage increase in strength ranged from 26.33% to 84.03%. A linear relationship between the axial compression load and the number of CFRP sheet layers is developed based on the test results at the same time. The possibility of the application of CFRP on strengthening steel structures in offshore engineering is also discussed in this paper.
机译:尽管碳纤维增强聚合物(CFRP)具有优异的机械和物理性能(强度/重量比高,耐腐蚀,易于施工和施工),但已广泛报道了其在混凝土结构加固中的应用。适用于钢结构,尤其是管状钢结构。本文首先回顾了CFRP改造管状钢结构的先前和正在进行的项目,实验和理论研究。为了研究CFRP加固的圆形钢管支架的性能,测试了五个长圆形钢管支架(88.9 mmX 4 mm),它们包裹有不同的纵向CFRP板,与两个未进行CFRP加固的对照样品相比,测试了CFRP的效果整体屈曲行为在所有经过CFRP加固的支架中,轴向压缩和横向变形都减小了。实验结果表明,外部粘结的纵向CFRP板可有效提高细长支撑的轴向强度和刚度。对于测试的样品,取决于CFRP薄板层的数量,强度增加的百分比在26.33%至84.03%的范围内。同时根据试验结果得出了轴向压缩载荷与CFRP板层数之间的线性关系。本文还讨论了CFRP在海上工程中加强钢结构的应用可能性。

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