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Single Wall Carbon Nanotube-Based Structural Health Sensing Materials

机译:单壁碳纳米管基结构健康传感材料

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Single wall carbon nanotube (SWCNT)-based materials represent the future aerospace vehicle construction material of choice based primarily on predicted strength-to-weight advantages and inherent multifunctionality. The multifunctionality of SWCNTs arises from the ability of the nanotubes to be either metallic or semi-conducting based on their chirality. Furthermore, simply changing the environment around a SWCNT can change its conducting behavior. This phenomenon is being exploited to create sensors capable of measuring several parameters related to vehicle structural health (i.e. strain, pressure, temperature, etc.) The structural health monitor is constructed using conventional electron-beam lithographic and photolithographic techniques to place specific electrode patterns on a surface. SWCNTs are then deposited between the electrodes using a dielectrophoretic alignment technique. Prototypes have been constructed on both silicon and polyimide substrates, demonstrating that surface-mountable and multifunctional devices based on SWCNTs can be realized.
机译:基于单壁碳纳米管(SWCNT)的材料主要基于预测的强度重量优势和固有的多功能性,代表了未来航空航天器车建筑材料的选择。 SWCNT的多功能性源于纳米管基于其手性而成为金属或半导体的能力。此外,仅改变SWCNT周围的环境就可以改变其导电行为。利用这种现象来创建能够测量与车辆结构健康相关的多个参数(即应变,压力,温度等)的传感器。结构健康监测器是使用常规电子束光刻和光刻技术构建的,以在其上放置特定的电极图案表面。然后,使用介电泳对准技术将SWCNT沉积在电极之间。在硅和聚酰亚胺衬底上均已构建了原型,这表明可以实现基于SWCNT的可表面安装和多功能设备。

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