影响磁流变弹性体压电阻率的非理想现象的实验研究

D. Grivon, Y. Civet, Z. Pataky, Y. Perriard
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引用次数: 0

摘要

磁流变弹性体(MREs)是一种新兴的复合材料,由分散在高弹性聚合物基体中的小磁性颗粒组成。粒子与外部场(磁场和电场)和外部应力的相互作用导致材料的流变学和物理性质的变化。特别是,MRE样品表现出压阻性,即在受到外部应力时材料电阻率的变化。虽然文献报道了旨在建立MREs压阻特性和传感能力的实验会议,但评估MREs多次加载/卸载循环的迟滞和循环漂移存在的测试并没有扩散。然而,这些资料对于建立一个传感系统的质量和可靠性是至关重要的。提出的工作解决了对不同MRE样品的这种寄生现象的调查,以评估它们的存在和相关性,提供更详细和全面的MRE压阻效应描述,并启发进一步的重要元素,以确定使用此类材料实现力或压力传感器的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of non-ideal phenomena affecting magneto-rheological elastomers piezoresistivity
Magneto-Rheological Elastomers (MREs) represent emerging composite materials consisting of small magnetic particles dispersed in a highly elastic polymeric matrix. Particles interactions with external fields (magnetic and electric) and external stresses result in a variation of rheological and physical properties of the material. In particular, MRE samples exhibit piezoresistivity, i.e. a change in the intrinsic material resistivity if subjected to an external stress. While literature reports experimental sessions aimed to establish the MREs piezoresistive characteristics and sensing capabilities, tests assessing the presences of hysteresis and cyclic drifts for multiple loading/unloading cycles of the MREs are not diffused. Nevertheless, these information are crucial to establish the quality and reliability of a sensing system. The presented work addresses the investigation of such parasitic phenomena for different MRE samples in order to assess their existence and relevance, to provide a more detailed and comprehensive description of the MRE piezoresistive effect as well as to enlighten further important elements useful to determine the possibility of using such materials for the realization of force or pressure sensors.
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