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Development of Stiff Tough and Conductive Composites by the Addition of Graphene Nanoplatelets to Polyethersulfone/Epoxy Composites

机译:通过将石墨烯纳米片加入聚醚砜/环氧复合材料中来开发硬韧性和导电复合材料

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摘要

In this study, polyethersulfone (PES) was blended into epoxy resins to improve the fracture toughness of the epoxy resin without loss of mechanical properties, and then two grades of pristine graphene nanoplatelets (GnPs) were separately introduced into the PES/epoxy system to fabricate thermally conductive GnPs/PES/epoxy composites with high toughness as well as high stiffness. It was observed that the addition of GnPs obviously affected the final phase morphology by suppressing the phase separation process of the PES modified epoxy due to the increased viscosity and cure-reaction rate of PES/epoxy. The GnPs with a larger lateral dimension revealed a greater reinforcing effect, and the inclusion of 3 wt % GnPs (~5 μm in diameter) endowed the PES/epoxy matrix with a good thermal conductivity and improved the tensile, flexural, and storage modulus by 27.1%, 17.5%, and 15.6% (at 30 °С), respectively. Meanwhile, the fracture toughness was further enhanced by about 29.5% relative to the PES modified epoxy at the same GnPs concentration. The positive results suggest that the modification of epoxy resins using the PES and GnPs is an attractive approach for fabricating tougher and stiffer epoxy-based nanocomposites with multifunctional properties, which could widen the industrial applications of the epoxy resins.
机译:在这项研究中,将聚醚砜(PES)掺入环氧树脂中以提高环氧树脂的断裂韧性而又不损失机械性能,然后将两种等级的原始石墨烯纳米片(GnPs)分别引入到PES /环氧体系中进行制备具有高韧性和高刚度的导热GnPs / PES /环氧树脂复合材料。观察到,由于增加的PES /环氧树脂的粘度和固化反应速率,GnPs的添加通过抑制PES改性的环氧树脂的相分离过程而明显地影响了最终的相形态。具有较大横向尺寸的GnPs表现出更大的增强作用,并且加入3 wt%的GnPs(直径约5μm)赋予PES /环氧树脂基体良好的导热性,并改善了拉伸,弯曲和储能模量。在30°C时分别为27.1%,17.5%和15.6%。同时,相对于相同GnPs浓度的PES改性环氧树脂,断裂韧性进一步提高了约29.5%。积极的结果表明,使用PES和GnPs改性环氧树脂是一种有吸引力的方法,可用于制造更坚韧,具有更多功能的环氧基纳米复合材料,这可能会扩展环氧树脂的工业应用。

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