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为了提高超高分子量聚乙烯的热性能,本文通过溶液共混的方法利用氧化石墨烯改性不同分子量的超高分子量聚乙烯,然后利用红外测试( FTIR)、X射线衍射测试( XRD)、扫描电镜测试( SEM)、差热扫描量热分析仪( DSC)和热失重分析( TG)的方法对超高分子量聚乙烯/石墨烯纳米复合材料的结构、表面形态和性能进行了研究.通过分析测试表明氧化石墨烯在超高分子量聚乙烯/石墨烯纳米复合材料中的分散性良好,氧化石墨烯的添加量为0.3%时,石墨烯/超高分子量聚乙烯的复合材料的热稳定性等性能最好,与原材料相比提高了3℃.

In order to improve the thermal stability of UHMWPE, UHMWPE of different molecular weights were modified with GNS prepared by solution blend method, X?ray diffraction ( XRD ) , scanning electron microscope (SEM),differential thermal scanning calorimetry (DSC) and thermogravimetric (TG) were used to characterized the structure,surface morphology and property of the ultra?high molecular weight polyethylene ( UHMWPE)/GNS nanocomposite.The result shows that GNS are well distributed into nanocomposite,when an amount of 0.3% GNS(weight percent) was used,the thermal stability and performance of nanocomposite is best of all, and it wsa increased 3 ℃ compared with the raw material.

参考文献

[1] 黄安平;朱博超;贾军纪;李艳芹.超高分子量聚乙烯的研发及应用[J].高分子通报,2012(4):127-132.
[2] 何春霞;顾红艳.不同材料填充超高分子量聚乙烯复合材料的力学性能分析[J].塑料工业,2002(5):29-31.
[3] 龚国芳;漆宗能;杨华勇.两类高岭土填充UHMWPE基复合材料及其摩擦磨损特性[J].复合材料学报,2002(6):82-86.
[4] Xiao Huang;Xiaoying Qi;Freddy Boey.Graphene-based composites[J].Chemical Society Reviews,20122(2):666-686.
[5] Balandin AA;Ghosh S;Bao WZ;Calizo I;Teweldebrhan D;Miao F;Lau CN.Superior thermal conductivity of single-layer graphene[J].Nano letters,20083(3):902-907.
[6] 苏鹏;郭慧林;彭三;宁生科.氮掺杂石墨烯的制备及其超级电容性能[J].物理化学学报,2012(11):2745-2753.
[7] Williams JR;DiCarlo L;Marcus CM.Quantum hall effect in a gate-controlled p-n junction of graphene[J].Science,20075838(5838):638-641.
[8] 任鹏刚.石墨烯及石墨烯基复合材料研究进展[J].中国印刷与包装研究,2012(03):1-9.
[9] Weikun Li;Yu Jun Yang.The reduction of graphene oxide by elemental copper and its application in the fabrication of graphene supercapacitor[J].Journal of solid state electrochemistry,20146(6):1621-1626.
[10] 陈元锋 .氧化石墨烯增强超高分子量聚乙烯复合材料的性能研究[D].兰州理工大学,2012.
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