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Electric-field induced filler association dynamics and resulting improvements in the electrical conductivity of polyester/multiwall carbon nanotube composites

机译:电场诱导的填充剂关联动力学和产生的聚酯/多壁碳纳米管复合材料的电导率改善

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The effects of electric fields on the filler response dynamics and electrical percolation of poly(ethylene succinate)/multiwall carbon nanotube (MWCNT) composites are studied. When subjected to AC electric fields in their melt state, PESu/MWCNT composites exhibit dramatic improvements in their transverse electrical conductivity. More importantly, the elevated conductivity values are preserved after matrix solidification. Overall, the experimental results show that the electrified composites exhibit the same electrical conductivity levels as their non-electrified counterparts at approximately threefold less filler content. The dynamics of the insulator-to-conductor transition under an electric field also are studied for these composites and correlate reasonably well with operating parameters, such as electric field intensity, matrix viscosity, and filler content through a relatively simple model. Such a model can serve as an enabling tool in the determination of process conditions for the manufacturing of electrically conducting MWCNT/polymer composites. POLYM. COMPOS., 38:1571-1578, 2017. (c) 2015 Society of Plastics Engineers
机译:研究了电场对聚(乙烯琥珀酸盐)/多壁碳纳米管(MWCNT)复合材料的填充响应动力学和电渗流的影响。当在其熔体状态下进行交流电场时,PESU / MWCNT复合材料在其横向导电性上表现出显着的改进。更重要的是,在基质凝固后保留升高的电导率值。总的来说,实验结果表明,电气化复合材料在大约三倍较少的填充含量下表现出与它们的非电气化对应物相同的电导率水平。对于这些复合材料,还研究了在电场下的绝缘体与导体过渡的动态,并且通过相对简单的模型,通过操作参数,例如电场强度,基质粘度和填充物含量相当好地相关。这种模型可以用作确定用于制造导电MWCNT /聚合物复合材料的过程条件的能力工具。聚合物。 Compos。,38:1571-1578,2017。(c)2015年塑料工程师协会

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