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Capacitance creep and recovery behavior of magnetorheological elastomers

机译:磁流变弹性体的电容蠕变和恢复行为

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摘要

As a novel conductive elastomer, magnetorheological elastomers (MREs) featuring both high sensitivity and wide working range have been employed as a new sensing material for flexible tactile sensors. Their sensing mechanism, that is, the spatial distribution rearrangement of particles under compression, completely differs from their conventional counterparts. The piezo-capacitive effect of MREs resulting from the unique mechanism of particles rearrangement is actually a response to the microscopic mechanical movement of particles. This nature brings a core concern on the intrinsic relationship between their mechanical and electrical properties. This study illuminates them from the perspective of electrical creep and recovery behavior of MREs. We give a meaningful analysis for the capacitance creep-recovery mechanism. The experimental fact strongly demonstrated that the particles rearrangement was the direct cause, while the strain creep was an indirect cause. All the behaviors were well interpreted by an evolution mechanism of the particles rearrangement driven by the mechanical strain creep of the flexible matrix under constant pressure. In simpler terms, the electrical creep was induced by the mechanical creep. We further explored the creep effect in practical applications and found a “self-healing” behavior, which indicated that the MRE sensors could obtain a stable sensing capability after a pre-processing.
机译:作为一种新型导电弹性体,具有高灵敏度和宽工作范围的磁流变弹性体(MRE)被用作柔性触觉传感器的新型传感材料。它们的传感机构,即压缩下颗粒的空间分布重新排列,完全不同于其常规对应物。由颗粒重排的独特机制产生的MRE的压电电容效应实际上是对颗粒微观机械运动的响应。这种性质对其机械和电气性质之间的内在关系带来了核心问题。本研究从电气蠕变和瑞瑞河恢复行为的角度照亮了它们。我们对电容蠕变恢复机制提供了有意义的分析。实验事实强烈证明颗粒重排成为直接原因,而应变蠕变是间接原因。所有行为都是通过在恒定压力下由柔性基质的机械应变蠕变驱动的颗粒重排的演化机制来解释。更简单,通过机械蠕变诱导电蠕变。我们进一步探讨了实际应用中的蠕变效果,发现了“自我愈合”行为,表明MRE传感器可以在预处理后获得稳定的传感能力。

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  • 作者单位

    College of Mathematics and Physics Chongqing University of Science and Technology;

    Key Laboratory of Optoelectronic Technology & Systems (Chongqing University) Education Ministry of China;

    Science and Technology on Reactor System Design Technology Laboratory Nuclear Power Institute of China;

    Key Laboratory of Optoelectronic Technology & Systems (Chongqing University) Education Ministry of China;

    Key Laboratory of Optoelectronic Technology & Systems (Chongqing University) Education Ministry of China;

    Key Laboratory of Optoelectronic Technology & Systems (Chongqing University) Education Ministry of China;

    Key Laboratory of Optoelectronic Technology & Systems (Chongqing University) Education Ministry of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrical creep; capacitance creep; particles rearrangement; time dependence; magnetorheological elastomer;

    机译:电气蠕变;电容蠕变;粒子重排;时间依赖;磁流变菌弹性体;

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