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Thermal Mechanical Properties of Graphene Nano-Composites with Kevlar-Nomex Copolymer: A Comparison of the Physical and Chemical Interactions

机译:凯夫拉 - Nomex共聚物的石墨烯纳米复合材料的热力学性能:物理和化学相互作用的比较

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摘要

This paper reports the preparation of Kevlar-Nomex copolymer nano-composites with exfoliated pristine and functionalized graphene sheets (Grs). The graphene oxide (GrO) platelets were amidized by the reaction of amine-terminated aramid (Ar) with the functional groups present on the GrO surface to prepare the nano-composites films with different loadings of GrO. Chemical changes involved during the oxidation and subsequent amidation were monitored by Raman, FTIR and XP spectroscopic analyses. Morphology of the composite films was studied by atomic force and scanning electron microscopies. Viscoelastic properties of the hybrid films were studied for their glass transition temperature (Tg) and storage modulus by dynamical mechanical thermal analysis (DMTA). A higher shift in glass transition temperature was obtained by chemically binding the aramid copolymer chains on the functionalized Gr sheets. The increase in tensile strength and modulus at various loadings of GrO are compared with the composites using pristine Gr. The effect of interfacial interactions between the matrix chains and the reinforcement on the properties of these hybrids have been explained.
机译:本文报道了具有剥离原始和官能化石墨烯片(GRS)的Kevlar-Nomex共聚物纳米复合材料的制备。通过胺封端的芳族聚酰胺(Ar)与存在于Go表面上的官能团的官能团的反应酰胺化石墨烯氧化物(Gea)血小板,以制备具有不同载荷的纳米复合材料膜。通过拉曼,FTIR和XP光谱分析监测氧化过程中涉及的化学变化和随后的酰胺化。通过原子力和扫描电子显微镜研究了复合膜的形态。通过动力学机械热分析(DMTA)对其玻璃化转变温度(TG)和储存模量进行了杂种膜的粘弹性。通过在官能化GR片上化学结合芳族聚酰胺共聚物链来获得玻璃化转变温度的更高偏移。使用原始GR的复合材料比较Gro的各种载荷的拉伸强度和模量的增加。已经解释了基质链与增强对这些杂种物质之间的界面相互作用的影响。

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