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Application of electrical impedance tomography to an anisotropic carbon fiber-reinforced polymer composite laminate for damage localization

机译:电阻抗层析成像技术在各向异性碳纤维增强聚合物复合材料层压板上的损伤定位

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摘要

Electrical impedance tomography (EIT) is an emerging method for assessing the structural condition of composite structures. In this work, EIT's damage localization capability is investigated through its application upon a commercial laminated anisotropic carbon fiber reinforced polymer plate. Aluminum rivets were used as electrodes. EIT reconstructs the spatial conductivity within a defined space by using its boundary voltage response. The algorithm starts with a forward simulation of the voltage distributions within the boundary, hence the orthotropic conductivity of the CFRP plate was first characterized experimentally. It was found that the in homogeneous fiber contacts through the thickness are influencing the reconstruction results. A detailed 3D finite element simulation was built to model the conductivity distribution. Different current injection patterns were attempted with their reconstruction results being evaluated via four criteria. It was found that the diagonal current injection and the difference evaluation lead to the best results.
机译:电阻抗断层扫描(EIT)是一种用于评估复合结构的结构状况的新兴方法。在这项工作中,通过在商业化的层压各向异性碳纤维增强聚合物板上的应用,研究了EIT的损伤定位能力。铝铆钉用作电极。 EIT通过使用其边界电压响应在定义的空间中重建空间电导率。该算法首先对边界内的电压分布进行正演模拟,因此首先通过实验表征了CFRP板的正交各向异性电导率。发现通过厚度的均质纤维接触影响重构结果。建立了详细的3D有限元模拟以模拟电导率分布。尝试了不同的电流注入方式,并通过四个标准评估了其重建结果。发现对角电流注入和差异评估导致最佳结果。

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