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Fabrication of Extrinsically Conductive Silicone Rubbers with High Elasticity and Analysis of Their Mechanical and Electrical Characteristics

机译:高弹性本征导电硅橡胶的制备及其机械和电气性能分析

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摘要

Conductive plastics are attracting more and more interest in electronics due to their light weight and inability to rust, which are common problems associated with metals. The field of conducting plastics is not new. Much work has been done to impart electrical conductivity to mechanically strong polymers such as polypropylene, polycarbonate and epoxies, etc. However there is a need to fabricate more flexible and elastic conductive polymers such as conducting silicone rubbers for use in various applications. In this work silicone rubbers reinforced with conductive fillers have been fabricated for use as sensors in textiles to detect the resistance change produced by stretching or relaxing. The variations of electrical resistance have been investigated by stretching and releasing the strands of conductive rubbers as a function of time. Two types of silicone rubbers—addition cured and condensation cured—were compounded with different electrically conductive fillers, among which carbon fibers have shown the best results. The carbon fibers improved the electrical conductance of the rubbers, even in very low weight percentages. The increasing concentration of fillers decreases the elasticity of the rubber. In order to keep the original properties of silicones, the filler concentration was kept as low as possible to produce a significantly detectable signal. The fabricated compounds were analyzed for their mechanical properties by stress strain curves. Such materials find their applications in electronics, antistatic applications, sports and the automotive industry where they can be used as deformation sensors.
机译:导电塑料由于其重量轻和不生锈而引起了越来越多的电子兴趣,而生锈是金属常见的问题。导电塑料领域并不新鲜。为了使机械强度高的聚合物例如聚丙烯,聚碳酸酯和环氧树脂等具有导电性,已经进行了许多工作。然而,需要制造更柔韧性和弹性的导电聚合物,例如用于各种应用的导电硅橡胶。在这项工作中,已经制造了用导电填料增强的硅橡胶,用作纺织品中的传感器,以检测由拉伸或松弛产生的电阻变化。通过拉伸和释放导电橡胶股随时间变化,研究了电阻的变化。两种类型的硅橡胶(加成固化和缩合固化)与不同的导电填料混合,其中碳纤维表现出最好的效果。碳纤维即使在非常低的重量百分比下也可以改善橡胶的导电性。填充剂浓度的增加会降低橡胶的弹性。为了保持有机硅的原始性能,将填料浓度保持在尽可能低的水平,以产生明显可检测的信号。通过应力应变曲线分析了所制备的化合物的机械性能。此类材料在电子,抗静电应用,体育和汽车行业中都有应用,可以用作变形传感器。

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