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Durability of seawater and sea sand concrete filled filament wound FRP tubes under seawater environments

机译:海水和海砂混凝土填充丝缠绕丝管耐久性海水环境下的耐久性

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Using fibre reinforced polymer (FRP) composites together with seawater and sea sand concrete (SWSSC) in coastal areas will overcome the environmental issues of using ordinary concrete and corrosion problems of conventional steel reinforcements. The present research investigates the mechanical properties of different SWSSC filled FRP tubes after exposure to seawater. Glass, carbon, and basalt filament wound FRP tubes were filled with SWSSC and exposed to seawater for different exposure durations at different temperatures. A total number of 567 Hoop tension and compression tests were carried out after conditioning to investigate the mechanical properties degradation of the tubes. In addition, scanning electron microscopy (SEM) and micro computed tomography (micro-CT) analyses were conducted on representative samples to study the degradation mechanisms and damage progression. Finally, the long-term mechanical performance of SWSSC filled tubes under seawater was predicted based on Arrhenius theory and using the experimental data. According to the test data, generally, the samples with multiple fibres direction showed better durability compared to the tubes with fibres oriented in hoop directions. Moreover, carbon tubes experienced the smallest degradation while glass and basalt tubes showed almost the same range of degradation.
机译:使用纤维增强聚合物(FRP)复合材料与海水和海砂混凝土(SWSC)在沿海地区将克服使用普通混凝土和常规钢筋腐蚀问题的环境问题。本研究研究了暴露于海水后不同SWSSC填充FRP管的机械性能。玻璃,碳和玄武岩长丝缠绕FRP管填充SWSSC,并在不同温度下暴露于不同的曝光持续时间的海水。在调节后,进行567箍张力和压缩试验的总数,以研究管子的机械性能。此外,对代表性样品进行扫描电子显微镜(SEM)和微型计算机断层扫描(Micro-CT)分析,以研究降解机制和损伤进展。最后,基于Arrhenius理论和使用实验数据,预测了海水下SWSSC填充管的长期力学性能。根据测试数据,通常,与具有在箍方向上定向的纤维的管相比,具有多纤维方向的样品显示出更好的耐久性。此外,碳管经历了最小的降解,而玻璃和玄武岩管显示出几乎相同的降解。

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