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Design and Development of a Flexible Strain Sensor for Textile Structures Based on a Conductive Polymer Composite

机译:基于导电聚合物复合材料的织物结构柔性应变传感器的设计与开发

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摘要

The aim of this work is to develop a smart flexible sensor adapted to textile structures, able to measure their strain deformations. The sensors are “smart” because of their capacity to adapt to the specific mechanical properties of textile structures that are lightweight, highly flexible, stretchable, elastic, etc. Because of these properties, textile structures are continuously in movement and easily deformed, even under very low stresses. It is therefore important that the integration of a sensor does not modify their general behavior. The material used for the sensor is based on a thermoplastic elastomer (Evoprene)/carbon black nanoparticle composite, and presents general mechanical properties strongly compatible with the textile substrate. Two preparation techniques are investigated: the conventional melt-mixing process, and the solvent process which is found to be more adapted for this particular application. The preparation procedure is fully described, namely the optimization of the process in terms of filler concentration in which the percolation theory aspects have to be considered. The sensor is then integrated on a thin, lightweight Nylon fabric, and the electromechanical characterization is performed to demonstrate the adaptability and the correct functioning of the sensor as a strain gauge on the fabric. A normalized relative resistance is defined in order to characterize the electrical response of the sensor. Finally, the influence of environmental factors, such as temperature and atmospheric humidity, on the sensor performance is investigated. The results show that the sensor's electrical resistance is particularly affected by humidity. This behavior is discussed in terms of the sensitivity of the carbon black filler particles to the presence of water.
机译:这项工作的目的是开发一种适用于纺织结构的智能柔性传感器,能够测量其应变变形。这些传感器之所以“智能”,是因为它们能够适应轻巧,高度柔韧性,可拉伸,有弹性等纺织结构的特定机械性能。由于这些特性,即使在恶劣的环境下,纺织结构也可以连续运动并容易变形。非常低的压力。因此,重要的是传感器的集成不会改变其一般性能。用于传感器的材料基于热塑性弹性体(Evoprene)/炭黑纳米颗粒复合材料,并具有与纺织品基材强烈相容的一般机械性能。研究了两种制备技术:常规的熔融混合工艺和发现更适合该特定应用的溶剂工艺。充分描述了制备过程,即根据填料浓度优化工艺,其中必须考虑渗滤理论方面。然后将传感器集成在薄而轻的尼龙织物上,并进行机电表征,以证明传感器作为织物上的应变仪的适应性和正确功能。定义了归一化的相对电阻,以表征传感器的电响应。最后,研究了温度和大气湿度等环境因素对传感器性能的影响。结果表明,湿度特别影响传感器的电阻。根据炭黑填料颗粒对水的敏感性来讨论这种行为。

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