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Damage Quantification and Location Detection in Carbon Nanotube Enhanced Composite Panels

机译:碳纳米管增强复合板的损伤量化和位置检测

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Epoxy resin based composite panels enhanced with carbon nanotube were subjected to damage while their electrical resistivity was monitored. The objective of the study was to utilize the composite piezoresistivity as means of damage quantification and location detection. Two different multi walled CNT-epoxy composites were manufactured for this study: one was CNT enhanced epoxy resin and the second was glass fabric reinforced CNT epoxy resin. Rectangular panels of various proportions were studied. Disks made out of copper foil were affixed to surfaces of CNT epoxy specimen, while in glass fabric CNT epoxy specimen the disks were embedded inside the samples. The disks acted as electrodes, enabling resistivity measurements using Kelvin in-line four-probe technique. The technique minimizes contact resistance between electrodes and the composite. Two different configurations of electrode network were employed to scan resistivity of entire samples. The networks included evenly spaced electrodes that spanned the entire surface of the panel, and one that covered the panel's diagonals and its edges. To further investigate influence of electrodes distribution, finite element methods were employed to solve for the electrical potential distribution in the panel simulating various damage location and extent. Pre and post damage resistivity change was used as gauge in determining the damage location and its extent quantification. The finite element method simulation results matched experimental data closely allowing further studies with electrodes distribution, damage geometry and location. The results indicated that a relatively small spaced electrode network is capable of determining location and quantification of visible and hardly visible damages. As spacing between electrodes is increased they become less responsive to smaller damages.
机译:用碳纳米管增强的环氧树脂基复合板受到损害,同时监测其电阻率。该研究的目的是利用复合压阻作为损伤量化和位置检测的手段。本研究生产了两种不同的多壁CNT-环氧树脂复合材料:一种是CNT增强环氧树脂,第二种是玻璃纤维增​​强CNT环氧树脂。研究了不同比例的矩形面板。将由铜箔制成的圆盘固定在CNT环氧样品的表面,而在玻璃纤维CNT环氧样品中,将这些圆盘嵌入样品内部。圆盘充当电极,可使用开尔文在线四探针技术进行电阻率测量。该技术可最大程度地减少电极与复合材料之间的接触电阻。电极网络的两种不同配置用于扫描整个样品的电阻率。这些网络包括均匀分布的电极,这些电极横跨面板的整个表面,一个电极覆盖面板的对角线及其边缘。为了进一步研究电极分布的影响,采用有限元方法模拟了各种损伤的位置和程度来求解面板中的电势分布。损伤前后的电阻率变化被用作确定损伤位置及其程度定量的量规。有限元方法的仿真结果与实验数据非常吻合,从而可以进一步研究电极的分布,损坏的几何形状和位置。结果表明,相对较小间隔的电极网络能够确定可见和几乎不可见的损坏的位置并进行量化。随着电极之间间距的增加,它们对较小损伤的响应变小。

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