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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Fabrication of Graphene Nanoplatelet/Epoxy Nanocomposites for Lightweight and High-Strength Structural Applications
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Fabrication of Graphene Nanoplatelet/Epoxy Nanocomposites for Lightweight and High-Strength Structural Applications

机译:石墨烯纳米薄荷/环氧纳米复合材料的制备重量轻,高强度结构应用

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摘要

Graphene nanoplatelets (GNPs), the most important mass-produced graphene, are fabricated as a mechanical reinforcement for epoxy matrix nanocomposites. Current performance of GNPs as a reinforcing filler is limited by their agglomeration and weak interfacial interaction with certain polymer matrices. Herein, an approach to produce noncovalently functionalized GNPs (F-GNPs) is reported that can be extended to the industrial level of mass production. The one-step functionalization process uses melamine, a low-cost chemical, to improve the interfacial adhesion and dispersion in an epoxy matrix. The mechanical properties of nanocomposites prepared with the F-GNP flakes are much better (94.3% and 35.3% enhancements in Young's modulus and tensile strength, respectively) than those of the unfilled pure epoxy. Experimental data are analyzed using the Halpin-Tsai model. The fabrication process developed in this paper provides a strategy to use GNPs at the industrial level in lightweight and high-strength structural applications.
机译:石墨烯纳米片(GNPS)是最重要的大规模生产的石墨烯,作为环氧基质纳米复合材料的机械增强材料制成。作为增强填料的GNP的电流性能受其附聚和与某些聚合物基质的粘聚和弱界面相互理体的限制。这里,报告了一种产生非共价官能化GNPS(F-GNP)的方法,其可以扩展到产业水平的批量生产。一步官能化方法使用三聚氰胺,低成本的化学物质,以改善环氧基质中的界面粘附和分散体。用F-GNP薄片制备的纳米复合材料的机械性能优于未填充纯环氧树脂的杨氏模量和拉伸强度为94.3%和35.3%的增强。使用Halpin-Tsai模型分析实验数据。本文开发的制造过程提供了在轻质和高强度结构应用中使用GNP的策略。

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