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Behaviour of seawater and sea sand concrete filled FRP square hollow sections

机译:海水和海砂混凝土填充FRP方形空心截面的性能

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摘要

FRP tube could serve as formwork in new constructions and the square cross-section is convenient for connections. This paper presents an experimental and theoretical study on seawater sea sand concrete (SWSSC)-filled glass/carbon/basalt FRP square hollow section (SHS) stub columns and beams. FRP SHS includes fibres oriented in +/- 15 degrees, +/- 40 degrees and +/- 75 degrees with respect to the longitudinal axis so that the hoop and axial strengths are comparable. Both unfilled FRP SHS and SWSSC-filled FRP SHS were tested under axial compressive, three-point or fourpoint bending loads. SWSSC-filled FRP columns failed by FRP rupture, whereas the failure mode for beams was the crushing of compressive flanges. In this paper, the stress-strain behaviour of columns and moment-strain curves of beams were discussed and compared to the corresponding SWSSC-filled stainless steel (SS) SHS specimens. It was found that existing stress-strain models, which were originally derived for rectangular concrete confined by FRP wrap, cannot precisely capture the stress-strain response of SWSSC-filled FRP columns. Existing models are improved to more accurately predict the ultimate axial strains and stress-strain relationship. A theoretical model is proposed to estimate the moment capacity of SWSSC-filled FRP beams with reasonable accuracy.
机译:玻璃钢管可作为新建筑的模板,方形截面便于连接。本文介绍了填充海水/海砂混凝土(SWSSC)的玻璃/碳/玄武岩FRP方形空心截面(SHS)短柱和梁的实验和理论研究。 FRP SHS包括相对于纵轴以+/- 15度,+ /-40度和+/- 75度定向的纤维,因此环向和轴向强度是可比的。未填充的FRP SHS和填充了SWSSC的FRP SHS均在轴向压缩,三点或四点弯曲载荷下进行了测试。 SWSSC填充的FRP柱因FRP断裂而失效,而梁的失效模式是压紧法兰的挤压。本文讨论了柱的应力-应变特性和梁的弯矩-应变曲线,并将其与相应的SWSSC填充不锈钢(SS)SHS试样进行了比较。结果发现,现有的应力-应变模型最初是为用FRP包裹的矩形混凝土推导的,无法精确地捕获SWSSC填充的FRP柱的应力-应变响应。对现有模型进行了改进,以更准确地预测极限轴向应变和应力-应变关系。提出了一种理论模型,以合理的精度估算SWSSC填充的FRP梁的弯矩承载力。

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