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The piezoresistive effect in polypropylene-carbon nanofibre composites obtained by shear extrusion

机译:剪切挤压制得的聚丙烯-碳纳米纤维复合材料的压阻效应

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The piezoresistive effect on poly(propylene) (PP)-carbon nanofibre (CNF) composites fabricated by twin-screw extrusion and compression moulding has been investigated. The electrical and mechanical properties of PP/CNF composites have been obtained as a function of CNF concentration. Electrical conductivity exhibited low thresholds and values close to the required levels for EMI shielding applications at 2.4vol%. Meanwhile the elastic modulus showed an enhancement with a maximum up to 130% for one of the composites at 0.9vol% loading. Further, the piezoresistive response has been evaluated in four-point bending. Positive gauge factors between 2 and 2.5 have been obtained. The highest gauge factors are found within the percolation threshold. The characteristics of the materials and the production technique make them suitable for large scale applications.
机译:研究了双螺杆挤压成型和压塑成型对聚丙烯(PP)-碳纳米纤维(CNF)复合材料的压阻效应。已获得PP / CNF复合材料的电气和机械性能,它是CNF浓度的函数。电导率显示出较低的阈值,其值接近于2.4%的EMI屏蔽应用所需的水平。同时,弹性模量显示出增强,其中一种复合物在0.9vol%的载荷下最大增加到130%。此外,已经在四点弯曲中评估了压阻响应。已获得2到2.5之间的正规格系数。在渗滤阈值内发现最高的规格因子。材料的特性和生产技术使其适合大规模应用。

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