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In situ structural health monitoring and anti-delamination of laminated composites with multifunctional carbon nanotubes films

机译:原位结构健康监测和抗分层层压复合材料,具有多官能碳纳米管膜

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The functionalized carbon nanotube interleaves were introduced to carbon fiber/epoxy(CF/E) composites. The incorporation of carbon nanotube interleaves into laminated composites was found to enhance inter-lamina strength, as well as significantly increase the electrical conductivity in the thickness direction with aim to realize the in situ structural health monitoring of laminated composites. As an example of application, the case of a Double Cantilever Beam (DCB) test was conducted, with the aim to demonstrate the damage sensing capacity of the electrical resistance change method. The result showed that the electrical resistance change increased almost linearly with crack increment, furthermore, the electrical resistance response become more sensitive respect to crack increment owing to the incorporation of conductive carbon nanotube films into laminated composites. For the purpose of in situ structural health monitoring for damaged composites laminates, a theoretical model was proposed to predict electrical response with delamination, and this theoretical prediction showed a satisfactory agreement with the experimental data.
机译:将官能化的碳纳米管交织引入碳纤维/环氧(CF / E)复合材料。发现碳纳米管交织掺入层压复合材料以增强层内强度,并且显着增加厚度方向上的电导率,目的是实现层压复合材料的原位结构健康监测。作为应用的示例,进行了双悬臂梁(DCB)测试的情况,目的是证明电阻变化方法的损伤感应能力。结果表明,由于将导电碳纳米管膜掺入层压复合材料中,电阻增压几乎线性地随着裂纹增量而增加,电阻变化几乎线性地增加了对裂纹增量的更敏感的方面。出于原位结构健康监测的损坏复合材料层压材料,提出了一种理论模型来预测与分层的电气响应,并且该理论预测显示了与实验数据的令人满意的协议。

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