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Direction Dependent Electrical Conductivity of Polymer/Carbon Filler Composites

机译:聚合物/碳填料复合材料的方向相关电导率

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摘要

The method of measuring electrical volume resistivity in different directions was applied to characterize the filler orientation in melt mixed polymer composites containing different carbon fillers. For this purpose, various kinds of fillers with different geometries and aspect ratios were selected, namely carbon black (CB), graphite (G) and expanded graphite (EG), branched multiwalled carbon nanotubes (b-MWCNTs), non-branched multiwalled carbon nanotubes (MWCNTs), and single-walled carbon nanotubes (SWCNTs). As it is well known that the shaping process also plays an important role in the achieved electrical properties, this study compares results for compression molded plates with random filler orientations in the plane as well as extruded films, which have, moreover, conductivity differences between extrusion direction and perpendicular to the plane. Additionally, the polymer matrix type (poly (vinylidene fluoride) (PVDF), acrylonitrile butadiene styrene (ABS), polyamide 6 (PA6)) and filler concentration were varied. For the electrical measurements, a device able to measure the electrical conductivity in two directions was developed and constructed. The filler orientation was analyzed using the ratio σin/th calculated as in-plane conductivity σin-plane (σin) divided by through-plane conductivity σthrough-plane (σth). The ratio σin/th is expected to increase with more pronounced filler orientation in the processing direction. In the extruded films, alignment within the plane was assigned by dividing the in-plane conductivity in the extrusion direction (x) by the in-plane conductivity perpendicular to the extrusion direction (y). The conductivity ratios depend on filler type and concentration and are higher the higher the filler aspect ratio and the closer the filler content is to the percolation concentration.
机译:应用在不同方向上测量体积电阻率的方法来表征包含不同碳填料的熔融混合聚合物复合材料中填料的取向。为此,选择了具有不同几何形状和长宽比的各种填料,即炭黑(CB),石墨(G)和膨胀石墨(EG),支链多壁碳纳米管(b-MWCNT),无支链多壁碳碳纳米管(MWCNT)和单壁碳纳米管(SWCNT)。众所周知,成型过程在获得的电性能中也起着重要作用,这项研究比较了在平面中具有随机填料取向的压模板和挤出膜的结果,挤出膜在挤出之间具有导电性差异方向并垂直于平面。另外,聚合物基质类型(聚偏二氟乙烯(PVDF),丙烯腈丁二烯苯乙烯(ABS),聚酰胺6(PA6))和填料浓度也有所不同。对于电学测量,开发并构造了一种能够在两个方向上测量电导率的设备。使用以面内电导率σin-plane(σin)除以贯通面电导率σthrough-plane(σth)计算出的比率σin/ th,分析填料取向。期望随着在加工方向上更明显的填料取向,比率σin/ th增加。在挤出膜中,通过将挤出方向(x)上的面内电导率除以垂直于挤出方向(y)的面内电导率来指定平面内的取向。电导率比取决于填料的类型和浓度,并且填料的长径比越高并且填料的含量越接近渗滤浓度就越高。

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