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Pressure Sensibility of Conductive Rubber Based on NBR- and Polypyrrole-Designed Materials

机译:基于NBR和聚吡咯设计材料的导电橡胶的压力敏感性

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Conductive rubbers combine features such as elasticity and electrical conductivities. Here, we developed an elastic conductive material based on nitrile rubber (NBR) and polypyrrole (PPy) by melt processing. PPy was also synthesized in three different media as silver (PPy-Ag), organomontmorillonite (PPy-OMt) and silver-organomontmorillonite (PPy-Ag-OMt) before mixture with NBR. Chemical structure, morphology, and stress-strain properties were evaluated. Pressure sensibility was evaluated in the range of 0-67 MPa during ten cycles. During the compression and expansion processes, the electrical conductivity changes from high to low values and the difference of loading and unloading cycles demonstrate the repeatability and low hysteresis. The organomontmorillonite clay improves the homogeneity of particles into the matrix and based on SEM images the dispersity follows the sequence PPy-OMt, PPy-Ag-OMt and PPy-Ag-OMt. This behavior affects the electrical conductivity, mechanical and electromechanical properties. The higher elastic modulus for composites compares to neat NBR is assigned to the reinforcing effect of the fillers. NBR/PPy-Ag-OMt (5wt.%) is the best material in the absolute value of Scomp (46.3 %/MPa) and the Scomp/hysteresis ratio (8.5%). In spite of different formulations displayed the best performance on the evaluated criteria (highest absolute conductivity, the highest percentage change in conductivity, lowest hysteresis and lack of sample disruption), we can suggest that a lower amount of conducting particles benefits the reticulation process (as observed by the gel fractions values). Additionally, the possibility to use mechanical processing to obtain large scales pressure sensor materials are without doubts the most important outcomes for this research area.
机译:导电橡胶组合弹性和电导率等特征。在这里,我们通过熔融加工研制基于丁腈橡胶(NBR)和聚吡咯(PPY)的弹性导电材料。在与NBR混合之前,PPY也以三种不同的培养基为银(PPY-AG),有机心摩利酮(PPY-AMT)和银有机锰矿石(PPY-AG-OMT)合成。评估了化学结构,形态和应力 - 应变性能。在十个循环期间评估压力灵敏度在0-67MPa的范围内。在压缩和扩展过程期间,电导率从高到低值变化,负载和卸载循环的差异证明了重复性和低滞后。器官常规硅酸盐粘土将颗粒的均匀性提高到基质中,并且基于SEM图像,分散性遵循PPY-OMT,PPY-AG-OMT和PPY-AG-OMT。该行为影响导电性,机械和机电性能。复合材料的较高弹性模量与整齐NBR进行比较被分配给填料的增强效果。 NBR / PPY-AG-OMT(5WT。%)是SCOMP(46.3%/ MPa)绝对值和SCOMP /滞后比(8.5%)中的最佳材料。尽管有不同的配方显示了评估标准的最佳性能(最高的绝对电导率,导电性最高百分比变化,最低滞后和样本中断),我们可以建议较低的导电粒子有利于网状化过程(如由凝胶分数值观察)。此外,使用机械处理以获得大规模压力传感器材料的可能性毫无疑问该研究区域最重要的结果。

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