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Carbon nanotube yarn sensors for structural health monitoring of composites

机译:碳纳米管纱线传感器,用于复合材料的结构健康监测

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With increasing application of composite materials, real time monitoring of composite structures becomes vital for maintenance purpose as well as prevention of catastrophic failure. It has been reported that carbon nanotubes (CNTs) have excellent piezoresistive properties, which may enable a new generation of sensors in nano or micro scales. We report here a novel prototype of carbon nanotube yarn sensors with excellent repeatability and stability for in-situ structural health monitoring. The CNT yarn is spun directly from CNT arrays, and its electrical resistance increases linearly with tensile strain, which makes it an ideal strain sensor. Importantly, it shows repeatable piezoresistive behavior under repetitive straining and unloading. Yarn sensors show stable resistances at temperatures ranging from -196°C to 110°C. Neat yarn sensors are also embedded into resin to monitor the loading conditions of the composites. With multiple yarn sensor elements aligned in the composite, the crack initiation and propagation could be monitored. Yarn sensors could be easily incorporated into composite structures with minimal invasiveness and weight penalty to enable the structure has self-sensing capabilities.
机译:随着复合材料应用的增加,复合结构的实时监控对于维护目的以及预防灾难性故障变得至关重要。据报道,碳纳米管(CNT)具有出色的压阻特性,这可能使新一代的纳米或微米级传感器成为可能。我们在这里报告了一种碳纳米管纱线传感器的新颖原型,该传感器具有出色的可重复性和稳定性,可进行现场结构健康监测。 CNT纱线直接从CNT阵列中纺出,其电阻随拉伸应变线性增加,这使其成为理想的应变传感器。重要的是,它在重复的应变和卸载下显示出可重复的压阻行为。纱线传感器在-196°C至110°C的温度范围内显示稳定的电阻。整洁的纱线传感器也嵌入到树脂中,以监控复合材料的加载条件。通过将多个纱线传感器元件排列在复合材料中,可以监测裂纹的萌生和扩展。纱线传感器可以很容易地以最小的侵入性和重量损失并入复合结构中,以使结构具有自感应功能。

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