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High elastic polyurethane/carbon nanotube composite laminate for structure health monitoring by gain shifting of antenna sensing element

机译:高弹性聚氨酯/碳纳米管复合层压板,用于通过天线感应元件的增益偏移来监视结构健康

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摘要

The composite of carbon nanotubes and polyurethane (PU) was prepared by simple filtration technique. The PU nonwoven filtration membrane was prepared by electrospinning. A layer of carbon nanotubes was prepared by vacuum filtration on the surface of PU membrane. The resulting composite was subsequently placed on highly elastic polyurethane substrate. The contribution shows an efficient method of preparing the sensing element for monitoring the state of strain of loaded structures by using highly elastic polyurethane / carbon nanotubes composite. This sensor has been involved as passive antenna with stable resonance frequency of 650 MHz. When it is get deformed in the range from 0 to 3.5% the sensor gain was changing from -39 dB to - 19.45 dB. But if it is get deformed by 15% and again measured strain from 0 to 3.5%, sensor gain was changing from -33 dB to -12.3 dB, which clearly indicates the damage of structure. © Published under licence by IOP Publishing Ltd.
机译:通过简单的过滤技术制备了碳纳米管和聚氨酯(PU)的复合材料。通过电纺丝制备PU非织造过滤膜。通过真空过滤在PU膜的表面上制备碳纳米管层。随后将所得复合材料置于高弹性聚氨酯基底上。该贡献显示了一种通过使用高弹性聚氨酯/碳纳米管复合材料来制备用于监视加载结构的应变状态的传感元件的有效方法。该传感器已被用作具有650 MHz稳定谐振频率的无源天线。当它在0到3.5%的范围内变形时,传感器增益将从-39 dB变为-19.45 dB。但是,如果它变形15%,并再次将应变从0降低到3.5%,则传感器增益将从-33 dB变为-12.3 dB,这清楚地表明了结构的损坏。 ©由IOP Publishing Ltd许可发布。

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