Evaluating Storage and Effective Moduli of In Situ Polymerised and Melt Extruded PA6 Graphite (G) Composites

M. Umar, M. Ofem, Auwal Sani Anwar, M. Usman
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Abstract

Four  PA6/graphite  (G)  composites  systems  were  made.  Two  using  in  situ  polymerisation  equivalent  in mixing strain and two systems melt extrusion of equivalent processing strain. The effective modulus of the carbons, room temperature storage modulus and storage modulus  at  80⁰C  were  evaluated.  The composite/unfilled PA6 ratios at E25 and that at E80 for the in situ polymerised system IG 40/10 are 1.37 and  1.63,  respectively.  For  the  in  situ  polymerised  system  IG  20/20,  the  same  were  1.96  and  2.28, respectively. For the melt-extruded systems, G 100/6 had the best E25 ratio of 1.67 and E80 of 2.03, whereas the same for G 200/3 system were respectively 1.87 and 2.64. While the better storage modulus properties exhibited by IG 20/20 in the in situ polymerised system is associated with a better filler connectivity network that enhanced heat dissipation. The better values shown in the G 200/3 melt-extruded system is associated with the lesser extrusion, which significantly reduced the tendency to thermal decay. Effective modulus for the in situ polymerised systems IG 40/10 and IG 20/20 were 7.5GPa and 8.9GPa while that of melt-extruded systems G200/3 and G100/6 tallied at 8.2 GPa.
评价原位聚合和熔融挤压PA6石墨(G)复合材料的储存和有效模量
制备了四种PA6/石墨(G)复合材料体系。两种采用原位聚合等效混合应变和两种系统熔体挤出等效加工应变。碳的有效模量、室温储能模量和80时的储能模量⁰C进行评估。原位聚合系统IG 40/10在E25和E80时的复合物/未填充PA6比率分别为1.37和1.63。对于原位聚合系统IG 20/20,其分别为1.96和2.28。对于熔体挤出系统,G 100/6具有1.67的最佳E25比和2.03的E80比,而G 200/3系统的相同E25比分别为1.87和2.64。而IG 20/20在原位聚合系统中表现出的更好的储能模量特性与增强散热的更好的填料连接网络有关。G200/3熔体挤出系统中显示的较好值与较小的挤出量有关,这显著降低了热衰减的趋势。原位聚合体系IG 40/10和IG 20/20的有效模量分别为7.5GPa和8.9GPa,而熔体挤出体系G200/3和G100/6的有效模量为8.2GPa。
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