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Preparation and thermo-mechanical properties of functionalized graphene/silicone rubber nanocomposites

机译:功能化石墨烯/硅橡胶纳米复合材料的制备及热机械性能

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Silicone rubber is widely used in electronic packaging materials. Electronic appliances have become miniaturized which need more outstanding packaging materials. Functionalized grapheme/scilicon rubber composites is one of the development to improve the performance of the silicone rubber. Graphite oxide (GO) was modified by KH-550, and then the modified graphite oxide was reduced by hydrazine hydrate to get functionalized graphene (FG). In order to get functionalized graphene /silicon rubber nanocomposites, FG was dispersed into 107 gum. The structure and morphology of both the nanocomposites and FG were characterized by FTIR, SEM, XRD and TG. The results show that KH-550 was bonded with GO, the layer of FG was expanded to 0.4nm. Compared with the pure silicon rubber, the initial decomposition temperature of all the functionalized graphene/silicon rubber nanocomposites were improved. Mechanical property tests show that the tensile strength of the nanocomposites with 0.7wt% FG are 2.46 MPa which increases by 198.39% compared with neat silicone rubber, and the elongation at break of composite increases by 171.89%, which is about triple of the pure silicone rubber. Thermal conductivity test shows that the thermal conductivity of the composites with 1.0wt% FG reaches 0.18 W /(m·K).
机译:硅橡胶广泛用于电子包装材料中。电子设备已经小型化,需要更出色的包装材料。功能化石墨烯/硅橡胶复合材料是改善硅橡胶性能的发展之一。用KH-550对石墨氧化物(GO)进行改性,然后用水合肼还原改性后的石墨氧化物,得到功能化的石墨烯(FG)。为了获得功能化的石墨烯/硅橡胶纳米复合材料,将FG分散在107胶中。通过FTIR,SEM,XRD和TG对纳米复合材料和FG的结构和形貌进行了表征。结果表明,KH-550与GO结合,FG层扩展到0.4nm。与纯硅橡胶相比,所有功能化石墨烯/硅橡胶纳米复合材料的初始分解温度均得到提高。力学性能测试表明,FG为0.7wt%的纳米复合材料的拉伸强度为2.46 MPa,与纯硅橡胶相比,提高了198.39%,复合材料的断裂伸长率提高了171.89%,约为纯硅橡胶的三倍。橡胶。导热系数测试表明,FG含量为1.0wt%的复合材料的导热系数达到0.18 W /(m·K)。

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