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Optimal Electrode Selection for Electrical Resistance Tomography in Carbon Fiber Reinforced Polymer Composites

机译:碳纤维增强聚合物复合材料电阻层析成像的最佳电极选择

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摘要

Electrical Resistance Tomography (ERT) offers a non-destructive evaluation (NDE) technique that takes advantage of the inherent electrical properties in carbon fiber reinforced polymer (CFRP) composites for internal damage characterization. This paper investigates a method of optimum selection of sensing configurations for delamination detection in thick cross-ply laminates using ERT. Reduction in the number of sensing locations and measurements is necessary to minimize hardware and computational effort. The present work explores the use of an effective independence (EI) measure originally proposed for sensor location optimization in experimental vibration modal analysis. The EI measure is used for selecting the minimum set of resistance measurements among all possible combinations resulting from selecting sensing electrode pairs. Singular Value Decomposition (SVD) is applied to obtain a spectral representation of the resistance measurements in the laminate for subsequent EI based reduction to take place. The electrical potential field in a CFRP laminate is calculated using finite element analysis (FEA) applied on models for two different laminate layouts considering a set of specified delamination sizes and locations with two different sensing arrangements. The effectiveness of the EI measure in eliminating redundant electrode pairs is demonstrated by performing inverse identification of damage using the full set and the reduced set of resistance measurements. This investigation shows that the EI measure is effective for optimally selecting the electrode pairs needed for resistance measurements in ERT based damage detection.
机译:电阻层析成像(ERT)提供了一种无损评估(NDE)技术,该技术利用碳纤维增强聚合物(CFRP)复合材料的固有电学特性来进行内部损伤鉴定。本文研究了一种使用ERT的厚交叉层板中用于分层检测的传感配置的最佳选择方法。减少感测位置和测量的数量对于最大限度地减少硬件和计算工作是必要的。本工作探索了最初提出的有效独立性(EI)措施在实验振动模态分析中用于传感器位置优化的方法。 EI度量用于在选择感应电极对产生的所有可能组合中选择最小的电阻测量集。应用奇异值分解(SVD)以获得层压板中电阻测量值的频谱表示,以进行随后的基于EI的还原。 CFRP层压板中的电势场是使用有限元分析(FEA)来计算的,该模型应用了两种不同层压板布局的模型,其中考虑了一组指定的分层尺寸和具有两种不同传感布置的位置。 EI测量在消除冗余电极对中的有效性通过使用电阻测量的全套和减少项进行损坏的逆向识别得到了证明。这项研究表明,EI措施可有效地优化选择基于ERT的损伤检测中电阻测量所需的电极对。

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