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Influence of injection molding parameters on the electrical resistivity of polycarbonate filled with multi-walled carbon nanotubes

机译:注射成型参数对填充多壁碳纳米管的聚碳酸酯的电阻率的影响

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摘要

Two polycarbonate (PC) composites with 2 and 5 wt% multi-walled carbon nanotube (MWNT) content were injection molded using a two-level, four-factor factorial design to evaluate the influences of holding pressure, injection velocity, mold temperature, and melt temperature on the electrical surface and volume resistivities. For both composites variations in resistivity of the injection-molded plates up to six orders of magnitude were found. The highest impact was determined for the injection velocity followed by the melt temperature and the interaction of both. The resistivity varied also locally within the plates showing differences up to five orders of magnitude for 2 wt% and up to two orders for 5 wt% MWNT. Thereby, areas of equal resistivity are formed in a semicircular shape with values increasing with the flow path. Transmission electron microscopy (TEM) investigations indicated a skin layer with highly oriented nanotubes in case of high injection velocity and low melt temperature, but a network-like structure even in the skin area at low injection velocity and high melt temperature.
机译:使用两级,四因子析因设计,将两种具有2和5 wt%的多壁碳纳米管(MWNT)含量的聚碳酸酯(PC)复合材料注塑成型,以评估保压压力,注塑速度,模具温度和温度的影响。电气表面的熔体温度和体积电阻率。对于这两种复合材料,发现注塑板的电阻率变化高达六个数量级。确定了最高的注射速度影响,其次是熔体温度以及两者的相互作用。板内的电阻率也局部变化,显示出对于2wt%的MWNT,高达5个数量级的差异;对于5wt%的MWNT,高达2个级别的差异。由此,电阻率相等的区域形成为半圆形,其值随流路而增加。透射电子显微镜(TEM)研究表明,在高注射速度和低熔体温度的情况下,表层具有高度取向的纳米管,但即使在低注射速度和高熔体温度下的皮肤区域中,也具有网状结构。

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