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A Novel Methodology for Spatial Damage Detection and Imaging Using a Distributed Carbon Nanotube-Based Composite Sensor Combined with Electrical Impedance Tomography

机译:使用分布式碳纳米管基复合传感器与电阻抗断层扫描相结合的空间损伤检测和成像的新方法

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摘要

This paper describes a novel non-destructive evaluation methodology for imaging of damage in composite materials using the electrical impedance tomography (EIT) technique applied to a distributed carbon nanotube-based sensor. The sensor consists of a nonwoven aramid fabric, which was first coated with nanotubes using a solution casting approach and then infused with epoxy resin through the vacuum assisted resin transfer molding technique. Finally, this composite sensor is cured to become a mechanically-robust, electromechanically-sensitive, and highly customizable distributed two-dimensional sensor which can be adhered to virtually any substrate. By assuming that damage on the sensor directly affects its conductivity, a difference imaging-based EIT algorithm was implemented and tailored to offer two-dimensional maps of conductivity changes, from which damage location and size can be estimated. The reconstruction is based on a newly defined adjacent current-voltage measurement scheme associated with 32 electrodes located along the boundary of the sensor. In this paper, we evaluate our methodology first by introducing well-defined damage where sections are either removed or narrow cuts are made on a series of sensor specimens. Finally, a more realistic damage scenario was investigated to show the capability of our methodology to detect impact damage on a composite laminate. The resulting EIT maps are compared to visual inspection and thermograms taken with an infrared camera.
机译:本文介绍了一种用于使用应用于分布式碳纳米管的传感器的电阻抗断层扫描(EIT)技术的复合材料损坏的新型非破坏性评价方法。传感器由非织造芳族聚酰胺织物组成,该织物首先使用溶液浇铸方法涂覆纳米管,然后通过真空辅助树脂转移模塑技术注入环氧树脂。最后,该复合传感器固化以成为机械稳固的,电机敏感的和高度可定制的分布式二维传感器,其可以粘附到几乎任何基板上。通过假设传感器对传感器的损坏直接影响其电导率,实现了基于差异成像的EIT算法,并定制了提供的电导率变化的二维图,从而可以估计损坏位置和尺寸。重建基于与沿传感器边界的32个电极相关联的新定义的相邻电流测量方案。在本文中,我们首先通过引入明确定义的损坏来评估我们的方法,其中部分被移除或窄切割是在一系列传感器样本上进行的。最后,研究了更现实的损害情景,以显示我们的方法论以检测复合层压板的影响损伤。将得到的EIT映射与用红外相机拍摄的视觉检查和热图进行比较。

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