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Design of strain sensors based on the resistivity-percolation curves and piezoresistivity curves of different conductive composites

机译:基于不同导电复合材料的电阻率-渗流曲线和压阻曲线的应变传感器设计

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This paper concentrates on conductive composites with conductive fillers and their use for strain sensing based on piezoresistivity. Percolation curves of resistivity were summarized and validated as the basic for the design of such conductive composites-made piezoresistivity-based strain sensors, with percolation zoon and percolation slope as the key. A detailed comparison between cement-based and resin-based conductive composites with fibrous and particulate fillers were made and discussed in this work for further understanding the design of such sensors based on percolation curves. Magnetic field was introduced as an extrinsic factor for the design of the percolation curves and further for the design of such sensors' piezoresistivity curves, which was proved to be quite an effective way. Concluded speaking, when making more full use of the designability of percolation curves, we can make better strain sensors used for structural health monitoring.
机译:本文专注于导电填料的导电复合材料及其用于基于压阻性的应变感测。总结和验证了电阻率的渗透曲线作为基于基于电压的压阻性的压阻性的应变传感器的基础,渗透Zoon和渗透斜率作为钥匙。在这项工作中进行并讨论了基于水泥基和基于树脂的导电复合材料的详细比较,并讨论了基于渗透曲线的这种传感器的设计。引入磁场作为设计渗透曲线的外本因子,并且进一步用于设计这种传感器的压阻曲线,这被证明是非常有效的方式。在说话时,在更充分利用渗透曲线的可设计性时,我们可以制作用于结构健康监测的更好的应变传感器。

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