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Durability of Functionalized Carbon Structures with Optical Fiber Sensors in a Highly Alkaline Concrete Environment

机译:高碱性混凝土环境中具有光纤传感器的官能化碳结构的耐久性

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摘要

The paper presents an investigation into the durability of functionalized carbon structures (FCS) in a highly alkaline concrete environment. First, the suitability of optical fibers with different coatings—i.e., acrylate, polyimide, or carbon—for the FCS was investigated by subjecting fibers with different coatings to micro/macro bending and a 5% sodium hydroxide (NaOH) (pH 14) solution. Then, the complete FCS was also subjected to a 5% NaOH solution. Finally, the effects of spatial variation of the fiber embedded in the FCS and the bonding strength between the fiber and FCS was evaluated using different configurations —i.e., fiber integrated into FCS in a straight line and/or with offsets. All three coatings passed the micro/macro bending tests and show degradation after alkaline exposure, with the carbon coating showing least degradation. The FCS showed relative stability after exposure to 5% NaOH. The optimum bonding length between the optical fiber and the carbon filament was found to be ≥150 mm for adequate sensitivity.
机译:本文提出了对高碱性混凝土环境中官能化碳结构(FCS)耐久性的调查。首先,通过对不同涂层的纤维进行微/宏弯曲和5%氢氧化钠(NaOH)(pH1​​4)溶液,研究了具有不同涂层 - 即丙烯酸酯,聚酰亚胺或碳用于FCS的光纤 - 即丙烯酸酯,聚酰亚胺或碳的适用性研究。然后,完整的FCS也进行5%的NaOH溶液。最后,使用不同的配置评估FCS中嵌入Fcs中的光纤的空间变化的影响以及纤维和Fcs之间的粘合强度 - I.,光纤集成到直线和/或偏移的FCS中。所有三种涂层通过微/宏弯曲试验并在碱性曝光后显示出降解,碳涂层显示出少于降解。在暴露于5%NaOH后,FCS显示出相对稳定性。发现光纤和碳丝之间的最佳粘接长度为≥150mm,可充分灵敏度。

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