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首页> 外文期刊>Polymers >Synchronously Tailoring Strain Sensitivity and Electrical Stability of Silicone Elastomer Composites by the Synergistic Effect of a Dual Conductive Network
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Synchronously Tailoring Strain Sensitivity and Electrical Stability of Silicone Elastomer Composites by the Synergistic Effect of a Dual Conductive Network

机译:通过双重导电网络的协同效应同步调整有机硅弹性体复合材料的应变敏感性和电稳定性

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The use of conductive polymer composites (CPCs) as strain sensors has been widely investigated. A wide range of strain sensitivities and high repeatability are vital for different applications of CPCs. In this study, the relations of the conductive filler network and the strain-sensing behavior and electrical stability under fatigue cycles were studied systematically for the first time based on the conductive polymethylvinylsiloxane (PMVS) composites filled with both carbon nanotubes arrays (CNTAs) and carbon black (CB). It was proved that the composites could be fabricated with large strain-sensing capability and a wide range of strain sensitivities by controlling the volume ratio of CNTA/CB and their amounts. Additionally, the CNTA/CB/PMVS composite with 3 vol % content of fillers showed high sensitivity (GF is 10 at 60% strain), high repeatability (the relative standard deviation (RSD) of the max R / R 0 value is 3.58%), and electrical stability under fatigue cycles (value range of R / R 0 is 1.62 to 1.82) at the same time due to the synergistic effects of the dual conductive network of CNTAs and CB. This could not be achieved by relying on a single CNTA or CB conductive network. This study may provide guidance for the preparation of high performance CPCs for applications in strain sensors.
机译:导电聚合物复合材料(CPC)作为应变传感器的用途已得到广泛研究。多种应变敏感性和高重复性对于CPC的不同应用至关重要。在这项研究中,首次基于填充有碳纳米管阵列(CNTA)和碳纳米管的导电聚甲基乙烯基硅氧烷(PMVS)复合材料,系统地研究了导电填料网络与疲劳循环下的应变感应行为和电稳定性之间的关系。黑色(CB)。通过控制CNTA / CB的体积比及其含量,可以证明该复合材料具有较大的应变传感能力和较大的应变敏感性。此外,具有3%(体积)填料的CNTA / CB / PMVS复合材料显示出高灵敏度(GF在60%应变下为10),高重复性(最大R / R 0值的相对标准偏差(RSD)为3.58% ),以及由于CNTA和CB的双重导电网络的协同效应,同时在疲劳周期(R / R 0的值范围为1.62至1.82)下的电稳定性。依靠单个CNTA或CB导电网络无法实现这一点。这项研究可能为制备用于应变传感器的高性能CPC提供指导。

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