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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Scalable and multifunctional carbon nanotube-based textile as distributed sensors for flow and cure monitoring
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Scalable and multifunctional carbon nanotube-based textile as distributed sensors for flow and cure monitoring

机译:基于可缩放和多功能碳纳米管的纺织品作为流动和固化监测的分布式传感器

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摘要

Many manufacturing processes involve flow and cure of polymeric materials and development of sensors to detect these phenomena in situ and in real-time is important to reduce processing time and improve quality. This paper reports the development of a novel multifunctional sensor where carbon nanotubes are deposited onto a nonwoven textile to create a thin and porous areal sensor. The sensor is produced using a scalable dip-coating process and carbon nanotubes form an electrically conductive network on the fabric. Vacuum assisted resin transfer molding (VARTM) for advanced fiber composites is used to validate the sensor by using global and local distributed measurements to monitor the flow of epoxy resin. Spatial flow mapping is demonstrated using electrical impedance tomography (EIT). In a series of 2-D radial flow experiments, the EIT maps demonstrate accurate estimations for the resin flow, in terms of flow front location and shape, and is able to pinpoint dry spots and unsaturated regions. During elevated temperature cure, the sensor electrical response can be correlated directly to changes in viscosity and gelation of the epoxy. The sensor offers potential as a process sensor for flow and cure as well as for structural health monitoring. (C) 2020 Elsevier Ltd. All rights reserved.
机译:许多制造方法涉及聚合物材料的流动和固化,以及传感器的发育,以原位检测这些现象,实时对减少处理时间并提高质量是重要的。本文报道了一种新型多功能传感器的发展,其中碳纳米管沉积在非织造织物上以产生薄型和多孔的面积传感器。使用可伸缩的浸涂工艺和碳纳米管在织物上形成导电网络来生产传感器。用于高级纤维复合材料的真空辅助树脂转移成型(Vartm)通过使用全局和局部分布测量来验证传感器,以监测环氧树脂的流动。使用电阻断层扫描(EIT)对空间流动映射进行说明。在一系列2-D径向流动实验中,EIT图在流动前部位置和形状方面表现出对树脂流动的精确估计,并且能够定位干斑和不饱和区域。在升高的温度固化期间,传感器电响应可以直接与环氧树脂的粘度和凝胶化的变化相关。传感器提供作为流量和固化的过程传感器以及结构健康监测。 (c)2020 elestvier有限公司保留所有权利。

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