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Mechanism and Properties of Piezoresistive in Rubber-matrix Nanocomposites

机译:压阻纳米复合材料压阻的机理与性能

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Advanced materials with excellent piezoresistance sensitivity are attracting more attention due that they can be used as functional materials in pressure sensors. For the researched piezoresistance nanocomposites, we employ canbon nanotubes (CNT) with difference aspect ratios as conducting functional fillers and two kinds of polymers (silicone rubber and thermoplastic elastomer) as polymer matrix, which can produce a great strain at low stress so that finally the nancomposites show outstanding piezoresistance sensitivity. Different to the carbon black (CB)/polymer composites, the CNT/polymer nanocomposites display a positive piezoresistance effect (PPRE), namely the resistance of nanocomposites increases with an increase in pressure stress. Therefore, the mechanism of PPRE is studied in this work by employing the insulating SiO_2 nanoparticles and the electrical conducting CB particles as the second kind of fillers. In addition, the effect of aspect ratio (AR) of CNT on piezoresistivity was explored. A correlation between AR of MWNCNT and piezoresistivity of the corresponding composites was established.
机译:具有优异压阻性灵敏度的先进材料由于它们可以用作压力传感器的功能材料而受到更多的关注。对于研究的压渗纳米复合材料,我们采用Cantban Nanotubes(CNT)具有差异纵横比,作为导电功能填料和两种聚合物(硅橡胶和热塑性弹性体)作为聚合物基质,这可以在低应力下产生大应变,因此最终NancIposposites显示出优异的压阻性敏感性。与炭黑(Cb)/聚合物复合材料不同,CNT /聚合物纳米复合材料显示阳性压渗效应(PPRE),即纳米复合材料的电阻随压力应力的增加而增加。因此,通过使用绝缘的SiO_2纳米颗粒和作为第二种填料的电导率Cb颗粒,在该工作中研究了PPRE的机制。此外,还探讨了CNT对压阻性率的纵横比(AR)的效果。建立了MWNCNT的AR与相应复合材料的压阻性之间的相关性。

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