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MECHANICAL, THERMAL AND ELECTRICAL PROPERTY ENHANCEMENT OF GRAPHENE-POLYMER NANOCOMPOSITES

机译:石墨烯 - 聚合物纳米复合材料的机械,热和电性能提高

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In this work, NanoXplore's proprietary graphene nanoplatelets, heXo-G V20, are melt-extruded into thermoplastics LLDPE, HDPE and TPU. Graphene is shown to effectively increase the stiffness and the strength of a matrix TPU. The flexural and tensile moduli increase with loading levels of graphene whereas the tensile strength increases at low loading levels, but does not further increase at higher graphene concentrations. A ten fold increase in thermal conductivity was achieved by adding heXo-G V20 graphene to LLDPE matrix. The thermal conductivity percolation threshold was reached at 10% loading. At 1% loading of graphene the onset of the decomposition temperature and maximum weight loss temperatures were shifted by about 50°C, significantly improving the thermal stability of the PE matrix. Fourteen orders of magnitude increase in electrical conductivity of HDPE was obtained at 30% loading of graphene. Excellent EMI shielding of 40 dB was achieved with 20 wt% addition of graphene in a TPU matrix.
机译:在这项工作中,纳米克雷尔的专有石墨烯纳米克罗特族己烯-GV20熔融挤出成热塑性塑料LLDPE,HDPE和TPU。图石墨烯显示有效地增加基质TPU的刚度和强度。弯曲和拉伸模量随装载水平的石墨烯增加,而拉伸强度在低负荷水平下增加,但在更高的石墨烯浓度下不进一步增加。通过向LLDPE基质中加入己酸-GV20石墨烯来实现导热率的10倍。在10%负载下达到导热渗透阈值。在1%加载石墨烯时,分解温度和最大重量损失温度的开始偏移约50℃,显着提高了PE基质的热稳定性。在30%的石墨烯中获得HDPE电导率的十四个响度级增加。通过在TPU基质中加入20wt%的石墨烯来实现40dB的优异EMI屏蔽。

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