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Effects of Die Configuration on the Electrical Conductivity of Polypropylene Reinforced Milled Carbon Fibers: An Application on a Bipolar Plate

机译:模具配置对聚丙烯增强型碳纤维电导率的影响:双极板上的应用

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摘要

Die configurations, filler orientations, electrical conductivity, and mechanical properties of polypropylene reinforced milled carbon fibers were studied as functions of their manufacturing processes. Series of manufacturing processes often deteriorate the material properties, hence, finding a suitable process aid is key to improving the electrical and mechanical properties of composite materials. Compared with the conventional manufacturing process, extrusion is a key process in the production of a highly conductive composite. A twin-screw extruder was used at a temperature of 230 °C and a rotational speed of 50 rpm before the compression molding process was carried out at 200 °C and 13 kPa. This research examined different die configurations, namely rod and sheet dies. The results indicated that the rod dies showed better mechanical properties and electrical conductivity with 25 MPa and 5 S/cm compared to the sheet dies. Moreover, rod dies are able to orientate to 86° and obtain longest filler length with 55 μm compared to the sheet dies. The alteration of the filler orientation in the produced material at a high shear rate further enhanced the electrical conductivity of the material.
机译:研究了聚丙烯增强型碳纤维的模具配置,填充取向,导电性和机械性能作为其制造方法的功能。一系列制造方法经常劣化材料特性,因此,找到合适的工艺助剂是提高复合材料的电气和力学性能的关键。与传统的制造工艺相比,挤出是生产高导电复合材料的关键过程。在200°C和13kPa下进行压缩成型工艺之前,在230℃的温度下使用双螺杆挤出机,在压缩成型过程中的旋转速度为50rpm。该研究检查了不同的模具配置,即杆和板材模具。结果表明,与片材模具相比,杆管芯显示出更好的机械性能和25mPa和5 s / cm的电导率。此外,杆管芯能够定向到86°,并与纸张管芯相比,获得55μm的最长填充长度。以高剪切速率在生产的材料中填充取向的改变进一步增强了材料的电导率。

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