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Fabrication of stretchable composites with anisotropic electrical conductivity for compliant pressure transducers

机译:用于各向异性压力传感器的具有各向异性导电性的可拉伸复合材料的制造

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We present a simple fabrication approach for anisotropically conductive stretchable composites, towards novel flexible pressure transducers. Flexible electronic systems have gained great interest in recent years, and within this space, anisotropic conducting materials have been explored for enhanced sensing performance. However, current methods for producing these materials are complex or are limited to small fabrication areas. Our method uses film applicator coating to render commercially available conductive RTVs anisotropically conductive. A ratio of in-plane surface resistance to through-thickness resistance of 1010 was achieved using our method. Furthermore, we show that when a normal pressure is applied to such films, the in-plane resistance can be reduced by seven orders of magnitude for an applied pressure of 10 kPa. Hence these materials show great promise for the development of novel, robust pressure transducers.
机译:我们提出了一种新颖的柔性压力传感器,用于各向异性导电可拉伸复合材料的简单制造方法。近年来,柔性电子系统引起了人们的极大兴趣,并且在这个领域中,已经探索了各向异性导电材料以增强感测性能。然而,当前用于生产这些材料的方法是复杂的或限于小的制造区域。我们的方法使用涂膜器涂层来使市售的导电RTV各向异性导电。使用我们的方法,可以获得1010的面内表面电阻与全厚度电阻之比。此外,我们表明,当将正常压力施加到此类薄膜时,施加10 kPa的压力可使面内电阻降低七个数量级。因此,这些材料对新型,坚固的压力传感器的开发显示出巨大的希望。

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