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Detection of spatially distributed damage in fiber-reinforced polymer composites

机译:检测纤维增强聚合物复合材料中空间分布的损伤

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摘要

This work describes a novel method of embedded damage detection within glass fiber-reinforced polymer composites. Damage detection is achieved by monitoring the spatially distributed electrical conductivity of a strain-sensitive multi-walled carbon nanotube thin film. First, thin films were spray-deposited directly upon glass fiber mats. Second, using electrical impedance tomography, the spatial conductivity distribution of the thin film was determined before and after damage-inducing events. The resolution of the sensor was determined by drilling progressively larger holes in the center of the composite specimens, and the corresponding electrical impedance tomography response was measured by recording the current-voltage data at the periphery of the monitored composite sample. In addition, the sensitivity to damage occurring at different locations in the composite was also investigated by comparing electrical impedance tomography spatial conductivity maps obtained for specimens with sets of holes drilled at different locations in the sensing area. Finally, the location and severity of damage from low-velocity impact events were detected using the electrical impedance tomography method. The work presented in this study indicates a paradigm shift in the available possibilities for structural health monitoring of fiber-reinforced polymer composites.
机译:这项工作描述了一种在玻璃纤维增​​强的聚合物复合材料中进行嵌入式损伤检测的新方法。通过监视应变敏感的多壁碳纳米管薄膜的空间分布电导率来实现损伤检测。首先,将薄膜直接喷涂在玻璃纤维垫上。其次,使用电阻抗层析成像技术,在引起损伤之前和之后确定薄膜的空间电导率分布。传感器的分辨率是通过在复合材料样本的中心逐渐钻出更大的孔来确定的,相应的电阻抗层析成像响应是通过在受监测复合材料样本的周围记录电流-电压数据来测量的。此外,还通过比较为样品获得的电阻抗层析成像空间电导率图与在感测区域中不同位置钻孔的一组孔,研究了复合材料中不同位置发生的损伤的敏感性。最后,使用电阻抗层析成像方法检测了低速撞击事件造成的损坏的位置和严重性。这项研究中提出的工作表明,在纤维增强的聚合物复合材料的结构健康监测的可用可能性方面发生了范式转变。

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