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Flexural behaviour of CFST members strengthened using CFRP composites

机译:CFRP复合材料增强了CFST构件的抗弯性能

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Concrete filled steel tubular members (CFST) become a popular choice for modern building construction due to their numerous structural benefits and at the same time aging of those structures and member deterioration are often reported. Therefore, actions like implement of new materials and strengthening techniques become essential to combat this problem. The application of carbon fibre reinforced polymer (CFRP) with concrete structures has been widely reported whereas researches related to strengthening of steel structures using fibre reinforced polymer (FRP) have been limited. The main objective of this study is to experimentally investigate the suitability of CFRP to strengthening of CFST members under flexure. There were three wrapping schemes such as Full wrapping at the bottom (fibre bonded throughout entire length of beam), U-wrapping (fibre bonded at the bottom throughout entire length and extended upto neutral axis) and Partial wrapping (fibre bonded in between loading points at the bottom) introduced. Beams strengthened by U-wrapping exhibited more enhancements in moment carrying capacity and stiffness compared to the beams strengthened by other wrapping schemes. The beams of partial wrapping exhibited delamination of fibre and were failed even before attaining the ultimate load of control beam. The test results showed that the presence of CFRP in the outer limits was significantly enhanced the moment carrying capacity and stiffness of the beam. Also, a non linear finite element model was developed using the software ANSYS 12.0 to validate the analytical results such as load-deformation and the corresponding failure modes.
机译:钢管混凝土构件(CFST)由于其众多的结构优点而成为现代建筑的一种流行选择,与此同时,经常报告这些结构的老化和构件劣化。因此,采取新材料和加强技术之类的行动对于解决这一问题至关重要。碳纤维增强聚合物(CFRP)在混凝土结构中的应用已得到广泛报道,而与使用纤维增强聚合物(FRP)增强钢结构有关的研究却受到限制。这项研究的主要目的是通过实验研究CFRP在挠曲下对CFST构件加固的适用性。共有三种包裹方案,例如在底部完全包裹(在整个梁的整个长度上粘结纤维),在U包裹(在整个长度的下半部分粘结在光纤上并延伸到中性轴)和局部包裹(在两个装载点之间粘结)在底部)介绍。与其他包裹方案加固的梁相比,U形包裹加固的梁在弯矩承载力和刚度方面表现出更多的增强。部分包裹的梁表现出纤维分层,甚至在达到控制梁的极限载荷之前就失效了。测试结果表明,在外部极限中CFRP的存在显着增强了梁的承载力和刚度。此外,使用软件ANSYS 12.0开发了非线性有限元模型,以验证分析结果,例如载荷变形和相应的破坏模式。

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