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Piezo-Resistive Properties of Bio-Based Sensor Yarn Made with Sisal Fibre

机译:用剑麻纤维制成的生物基传感器纱的压电性能

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摘要

In this work, a sensor yarn based on a natural sisal yarn containing a non-electro-conductive core impregnated with PVA polymer and coated by PEDOT:PSS polymer as an electro-conductive sheath was investigated. The main objectives include the development of this new sensor yarn as a first step. Then, we look towards the insertion of this sensor yarn into different woven structures followed by the monitoring of the mechanical behaviour of composite materials made with these fibrous reinforcements. The combined effect of the structural geometry and the number of PEDOT:PSS coating layers on the properties of the sensor yarns was investigated. It was found that the number of PEDOT:PSS coating layers could strongly influence the electromechanical behaviours of the sensor yarns. Different methods of characterization were employed on strain-sensor yarns with two and four coating layers of PEDOT:PSS. The piezo-resistive strain-sensor properties of these selected coating layers were evaluated. Cyclic stretching-releasing tests were also performed to investigate the dynamic strain-sensing behavior. The obtained results indicated that gauge factor values can be extracted in three strain regions for two and four coating layers, respectively. Moreover, these strain-sensor yarns showed accurate and stable sensor responses under cyclic conditions. Furthers works are in progress to investigate the mechanism behind these first results of these sisal fibre-based sensors.
机译:在这项工作中,研究了一种基于含有PVA聚合物浸渍的非导电芯的天然Sisal纱线的传感器纱线并通过PEDOT涂覆:PSS聚合物作为导电鞘。主要目标包括作为第一步的新传感器纱线的开发。然后,我们朝向将该传感器纱线插入不同的编织结构,然后监测用这些纤维增强件制成的复合材料的机械性能。研究了结构几何形状的组合效果和佩特数:PSS涂层对传感器纱线的性能进行PSS涂层。发现PEDOT的数量:PSS涂层可以强烈影响传感器纱线的机电行为。在应变 - 传感器纱线上使用不同的表征方法,其中型PEDOT的两个和四个涂层:PSS。评价这些所选涂层的压电应变 - 传感器性能。还进行循环拉伸释放试验以研究动态应变感测行为。所得结果表明,测量因子值分别可以分别在三个和四个涂层的三个应变区中提取。此外,这些应变传感器纱线在环状条件下显示出精确且稳定的传感器响应。传统的作品正在进行中,以研究这些剑束的传感器的第一个结果背后的机制。

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