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On micro to mesoscale homogenization of electrical properties for damaged laminated composites (and their potential applications in electrical tomography)

机译:对损坏的层压复合材料的电性能进行微观至中尺度的均质化(及其在电层析成像中的潜在应用)

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摘要

Efficient and optimal use of composites in structures requires tools to monitor and capture the complex degradation that can occur within the laminates over time.udStructural health monitoring (SHM) techniques uses sensors/actuators on the structure to progressively monitor the health of the structure with minimal manual intervention. Electrical tomography (ET) is a SHM technique that uses voltage measurements from the surface of the laminate to reconstruct a conductivity map of the structure. Since damage has been shown to modify the conductivity of the laminate, the conductivity map can provide an indirect measure of the damage within the material. Studies have shown the capability of ET to identify macroscale damage due to impact. But, little has been done to quantitatively assess damage using ET.udIn this work, we present a theoretical framework to link degradation mechanisms occuring at the microscale to the conductivity at the mesoscale through damage indicators.udThe mesoscale damage indicators are then shown to be intrinsic to the ply. Next, we use the knowledge obtained through mesoscale homogenization to study the detectability of transverse cracks. Last, we show how the mesoscale homogenization participates in regularization of the inverse problem and in the quantitative assessment of the reconstructed conductivity map. This is as such the first step towards turning ET into a viable quantitative health monitoring technique.
机译:要在结构中高效,优化地使用复合材料,就需要使用工具来监视和捕获随时间推移而在层压板中可能发生的复杂降解。最少的人工干预。电断层扫描(ET)是一种SHM技术,使用来自层压板表面的电压测量值来重建结构的电导率图。由于已经显示出损坏会改变层压板的导电性,因此导电率图可以间接测量材料内部的损坏。研究表明,ET具有识别由于撞击造成的宏观破坏的能力。但是,在使用ET定量评估损害方面所做的工作很少。 ud在这项工作中,我们提出了一个理论框架,通过损害指标将微观尺度上发生的降解机理与中尺度的电导率联系起来。是帘布层固有的。接下来,我们使用通过中尺度均化获得的知识来研究横向裂纹的可检测性。最后,我们显示了中尺度均质化如何参与反问题的正则化以及重构电导率图的定量评估。因此,这是将ET转变为可行的定量健康监测技术的第一步。

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    Selvakumaran Lakshmi;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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