首页> 外文期刊>Polymer engineering and science >Effects of An Aminosilane and A Tetra-Functional Epoxy on the Physical Properties of Di-Functional Epoxy/Graphene Nanoplatelets Nanocomposites
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Effects of An Aminosilane and A Tetra-Functional Epoxy on the Physical Properties of Di-Functional Epoxy/Graphene Nanoplatelets Nanocomposites

机译:氨基硅烷和四官能团环氧对双官能团环氧/石墨烯纳米片纳米复合材料物理性能的影响

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摘要

The physical properties of difunctional epoxies would be improved by adding nanofillers and multifunctional epoxies. Therefore, in this study, a tetrafunctional epoxy was added to difunctional epoxy/GNPs nanocomposites. An aminosilane was used to improve the interfacial bonding between GNPs and the epoxy matrix. The physical properties of the epoxy/GNPs nanocomposites were investigated by DSC, TMA, DMA, and electrical resistivity test. The glass transition temperature and storage modulus of the nanocomposites increased with increasing GNPs content. Adding the aminosilane resulted in a marginal increase in the glass transition temperature of the nanocomposites. However, adding the tetrafunctional epoxy resulted in a considerable increase in the glass transition temperature, thermal dimensional stability, and storage modulus of the nanocomposites. SEM images of the fracture surfaces of the nanocomposites showed that the aminosilane improved the interfacial bonding. The aminosilane and tetrafunctional epoxy made the sheet resistance of the nanocomposites higher. The sheet resistance data showed electrical percolation at 1-2 phr of GNPs.
机译:通过添加纳米填料和多功能环氧树脂,可以改善双官能环氧树脂的物理性能。因此,在这项研究中,将四官能环氧树脂添加到双官能环氧树脂/ GNPs纳米复合材料中。氨基硅烷用于改善GNP与环氧基质之间的界面键合。通过DSC,TMA,DMA和电阻率测试研究了环氧/ GNPs纳米复合材料的物理性能。纳米复合材料的玻璃化转变温度和储能模量随GNPs含量的增加而增加。添加氨基硅烷导致纳米复合材料的玻璃化转变温度略有增加。然而,添加四官能环氧树脂导致纳米复合材料的玻璃化转变温度,热尺寸稳定性和储能模量显着增加。纳米复合材料断裂表面的SEM图像表明,氨基硅烷改善了界面键合。氨基硅烷和四官能环氧树脂使纳米复合材料的薄层电阻更高。薄层电阻数据显示在1-2 phr的GNP处发生电渗透。

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