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Indentation damage detection in glass/epoxy composite laminates with electrically tailored conductive nanofiller

机译:带有电定制导电纳米填料的玻璃/环氧树脂复合材料层压板的压痕损伤检测

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摘要

Laminated fiber-reinforced polymer composites are known for excellent in-plane strength and stiffness per unit density, but variable susceptibility to out-of-plane impact and indentation loading on account of their relatively low interlaminar strength. Methods of monitoring damage caused by out-of-plane loads are therefore sought. This investigation aims to demonstrate the two-dimensional electrical resistance mapping method using co-cured carbon fiber electrodes, a glass fiber-reinforced composite system, and electrically tailored carbon black filler networks for sensing indentation damage. It is shown that damage sensing accuracy is improved by increasing the electrical conductivity of the carbon black network in the through-thickness direction. The anisotropic tailoring of conductivity is accomplished by using alternating-current dielectrophoresis, which entails the application of an electric field to polarize and chain the carbon black particles preferentially through the thickness during liquid processing of the composite. Co-cured carbon fiber tows arranged in a perpendicular array on the top and bottom surfaces of the laminate provide a qualitative assessment of the size and severity of the indentation damage via a two-dimensional resistance change map.
机译:层压纤维增强聚合物复合材料以优异的面内强度和每单位密度的刚度而著称,但由于其层间强度较低,因此对面外冲击和压痕载荷的敏感性不同。因此寻求一种监测由平面外载荷引起的损坏的方法。这项研究的目的是演示使用共固化碳纤维电极,玻璃纤维增​​强复合材料系统和电定制的炭黑填料网络来感测压痕损伤的二维电阻测绘方法。结果表明,通过增加厚度方向上炭黑网络的电导率,可以提高损伤检测的准确性。导电性的各向异性调整是通过使用交流电介电泳来实现的,这需要在复合材料的液体加工过程中施加电场,使碳黑颗粒优先通过厚度极化和链化。在层压板的顶面和底面上以垂直阵列排列的共固化碳纤维丝束可通过二维电阻变化图对压痕损坏的大小和严重程度进行定性评估。

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