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Fabricating fast triggered electro-active shape memory graphite/silver nanowires/epoxy resin composite from polymer template

机译:从聚合物模板制备快速触发的电活性形状记忆石墨/银纳米线/环氧树脂复合材料

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摘要

In recent years shape-memory polymers have been under intense investigation due to their unique mechanical, thermal, and electrical properties that could potentially make them extremely valuable in numerous engineering applications. In this manuscript, we report a polymer-template-assisted assembly manufacturing strategy used to fabricate graphite/silver nanowires/epoxy resin (PGSE) composite. In the proposed method, the porous polymer foams work as the skeleton by forming three-dimensional graphite structure, whereas the silver nanowires act as the continuous conductive network. Preliminary testing on hybrid foams after vacuum infusion showed high electrical conductivity and excellent thermal stability. Furthermore, the composites were found to recover their original shape within 60 seconds from the application of a 0.8 V mm−1 electric field. Notably, the reported shape-memory polymer composites are manufactured with readily-available raw materials, they are fast to manufacture, and are shape-controlled.
机译:近年来,形状记忆聚合物由于其独特的机械,热和电性能而受到了广泛的研究,这可能使其在众多工程应用中具有极高的价值。在此手稿中,我们报告了一种用于制造石墨/银纳米线/环氧树脂(PGSE)复合材料的聚合物模板辅助组装制造策略。在提出的方法中,多孔聚合物泡沫通过形成三维石墨结构而充当骨架,而银纳米线充当连续的导电网络。真空灌注后对混合泡沫的初步测试显示出高电导率和出色的热稳定性。此外,发现复合材料在施加0.8 V mm -1 电场后60秒内即可恢复其原始形状。值得注意的是,所报道的形状记忆聚合物复合材料是用容易获得的原材料制造的,它们的制造速度快且形状可控。

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