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Roles of prestrain and hysteresis on piezofesistance in conductive elastomers for strain sensor applications

机译:在应变传感器应用的导电弹性体中,预应变和磁滞对压阻的作用

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摘要

Simultaneous experimental measurements of stress, strain and electrical resistivity were carried out by exposing two carbon black filled cross-linked elastomers and two nanocomposites of thermoplastic polyurethane and multiwalled carbon nanotubes to a series of cyclic strain histories. It was found that the resistivity-strain relationships of the materials exhibited different hysteresis and dependence on prestrain. The resistivity of the nanotube filled elastomers changed dramatically with prestrain, making them suitable for memory sensor applications. During cyclic loading, the carbon black filled elastomers exhibit a lower resistivity during the loading part of the cycles than during the unloading part; the opposite effect was seen in the nanotube filled elastomers. The phenomena can be explained in terms of plastic flow processes in the thermoplastics, and of cohesive forces between carbon black particles in the cross-linked elastomers. Bending and buckling of the nanotubes give rise to a region of strain at constant resistance, making them unsuitable for real time sensing.
机译:通过将两种炭黑填充的交联弹性体和两种热塑性聚氨酯和多壁碳纳米管的纳米复合材料暴露于一系列循环应变历史中,同时进行应力,应变和电阻率的实验测量。发现材料的电阻率-应变关系表现出不同的磁滞和对预应变的依赖。纳米管填充的弹性体的电阻率随着预应变而发生了巨大变化,使其适合于存储传感器应用。在循环加载过程中,填充炭黑的弹性体在循环加载过程中的电阻率比在卸载过程中低。在填充纳米管的弹性体中观察到相反的效果。该现象可以用热塑性塑料中的塑性流动过程以及交联弹性体中炭黑颗粒之间的内聚力来解释。纳米管的弯曲和屈曲会在恒定电阻下产生应变区域,使其不适用于实时感测。

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