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Surface modification and thermal performance of a graphene oxideovolac epoxy composite

机译:氧化石墨烯/线型环氧复合材料的表面改性和热性能

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Functionalized graphene oxide (GO) was successfully modified by grafting 1,3,5-triglycidylisocyanurate (TGIC) onto the surface of GO. The modified GO was then added to a novolac epoxy composite at various volume fractions to improve the interfacial compatibility between the filler and matrix. Samples of the modified GOovolac epoxy composite were fabricated through the hot-pressing method. Microstructural analysis revealed that the modified GO dispersed well in the matrix and formed thermal conductive pathways across the matrix. The thermal degradation temperature of 50% weight loss of the modified GOovolac epoxy composite was 166 °C higher than that of the novolac epoxy. The data for loss factor tan? δ demonstrated that when the composite contained 36.8 wt% of modified GO, the glass transition temperature of the modified GOovolac epoxy composite was 222 °C, which is 90 °C higher than that of the novolac epoxy. The thermal conductivity of the modified GOovolac epoxy composite improved from 0.044 W m ~(?1) K ~(?1) to 1.091 W m ~(?1) K ~(?1) . Results indicated that the incorporation of surface-modified GO into the novolac epoxy positively affects the thermal conductivity and various properties of the modified GOovolac epoxy composite.
机译:通过将1,3,5-三缩水甘油基异氰脲酸酯(TGIC)接枝到GO表面上,成功修饰了功能化的氧化石墨烯(GO)。然后将改性的GO以各种体积分数添加到线型酚醛清漆环氧复合材料中,以改善填料和基体之间的界面相容性。通过热压法制备了改性GO /酚醛环氧复合材料的样品。微观结构分析表明,改性的GO很好地分散在基质中,并在整个基质中形成了导热路径。改性GO /线型环氧复合材料失重50%的热降解温度比线型酚醛环氧树脂高166°C。损耗因子棕褐色的数据? δ表明,当复合材料包含36.8重量%的改性GO时,改性GO /线型环氧复合材料的玻璃化转变温度为222℃,比酚醛清漆环氧树脂的玻璃化温度高90℃。改性GO /线型环氧复合材料的导热系数从0.044 W m〜(?1)K〜(?1)提高到1.091 W m〜(?1)K〜(?1)。结果表明,将表面改性的GO掺入酚醛清漆环氧树脂中会对改性GO /线型环氧复合材料的导热性和各种性能产生积极影响。

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