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Electrically conductive composites based on an elastomeric matrix filled with expanded graphite as a potential oil sensing material

机译:基于弹性体基质的导电复合材料,填充有膨胀石墨作为潜在的油感材料

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The preparation and properties of electrically conductive polymeric composites based on an elastomer matrix (styrene-isoprene styrene block copolymer) filled with expanded graphite are reported in this paper. The developed materials were tested as oil sensors in various modes. The operation of this sensor is based on changes in the electrical resistance R of the composites when exposed to oil. This phenomenon involves both simple geometrical changes and changes in inherent material characteristics such as the specific electrical conductivity (resistivity). An original method for the improvement of the sensors' response rate based on the application of stretched sensing films was developed. Slightly stretched films (by 4% of the original length) showed a response that was 12.5 times faster with respect to oil absorption than an un-stretched film. The specific electrical conductivity of a material strongly depends on the extent to which it is stretched. For a composite filled with 10 wt.% of the filler, it was found that the electrical conductivity remained constant up to 11% of the sample extension before sharply decreasing. It was also found that an increase in the filler content reduced the response rate of the sensors.
机译:本文报道了填充有膨胀石墨的基于弹性体基质(苯乙烯-异戊二烯苯乙烯嵌段共聚物)的导电聚合物复合材料的制备和性能。所开发的材料已在各种模式下作为机油传感器进行了测试。该传感器的操作基于暴露于油中时复合材料的电阻R的变化。这种现象既涉及简单的几何变化,也涉及固有材料特性(例如比电导率(电阻率))的变化。在拉伸传感膜的应用基础上,提出了提高传感器响应率的原始方法。轻微拉伸的薄膜(原始长度的4%)显示出的吸油响应比未拉伸的薄膜快12.5倍。材料的比电导率在很大程度上取决于其拉伸程度。对于填充有10wt。%填料的复合材料,发现在急剧降低之前,电导率保持恒定直至样品延伸的11%。还发现填料含量的增加降低了传感器的响应速度。

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