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Damage detection and conductivity evolution in carbon nanofiber epoxy via electrical impedance tomography

机译:碳纳米纤维环氧树脂的电阻抗层析成像检测损伤和导电性演变

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摘要

Utilizing electrically conductive nanocomposites for integrated self-sensing and health monitoring is a promising area of structural health monitoring (SHM) research wherein local changes in conductivity coincide with damage. In this research we conduct proof of concept investigations using electrical impedance tomography (EIT) for damage detection by identifying conductivity changes and by imaging conductivity evolution in a carbon nanofiber (CNF) filled epoxy composite. CNF/epoxy is examined because fibrous composites can be manufactured with a CNF/epoxy matrix thereby enabling the entire matrix to become self-sensing. We also study the mechanisms of conductivity evolution in CNF/epoxy through electrical impedance spectroscopy (EIS) testing. The results of these tests indicate that thermal expansion is responsible for conductivity evolution in a CNF/epoxy composite.
机译:利用导电纳米复合材料进行集成的自感测和健康监测是结构健康监测(SHM)研究的一个有希望的领域,其中电导率的局部变化与损伤一致。在这项研究中,我们使用电阻抗断层扫描(EIT)进行概念验证研究,以通过识别电导率变化并通过对碳纳米纤维(CNF)填充的环氧复合材料中的电导率演变进行成像来进行损伤检测。之所以要检查CNF /环氧树脂,是因为可以用CNF /环氧树脂基体制造纤维复合材料,从而使整个基体变得自感应。我们还通过电阻抗光谱(EIS)测试研究了CNF /环氧树脂中电导率演化的机理。这些测试的结果表明,热膨胀是CNF /环氧树脂复合材料中电导率演变的原因。

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