首页> 外文期刊>Journal of surface science and technology >Wear and Hardness Studies of Graphene Decorated with Graphene Quantum Dots (G-D-GQD) Embedded Epoxy Nano Composites
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Wear and Hardness Studies of Graphene Decorated with Graphene Quantum Dots (G-D-GQD) Embedded Epoxy Nano Composites

机译:石墨烯量子点(G-D-GQD)嵌入环氧纳米复合材料装饰石墨烯的磨损和硬度研究

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The paper discusses about the wear and micro hardness behavior of Graphene Decorated with Graphene Quantum Dots (G-D-GQD) reinforced epoxy composites. The samples were prepared by open mold casting method by adding 0.25-1 wt. % (in an interval of 0.25%) of GDGQD and evaluated on a reciprocating wear tester configuration for wear and coefficient of friction properties. The micro-hardness testing of the G-D-GQD particles embedded epoxy composites has been performed and the hardness value results were compared with neat epoxy to find the improvement in hardness. Significant improvements in the hardness and wear resistance of the epoxy nanocomposites was obtained by the embedding of G-D-GQD fillers, which is due to the efficient bonding of GDGQD filler with the epoxy matrix. Scanning Electron Microscope (SEM) images of the worn composites were analysed to get an insight into the morphology of the surfaces. Furthermore, the coefficient of friction of the composites got increased with the wt. % of fillers in the base material, but due to the superior bond strength and lesser agglomeration of the particles, the Vicker's hardness improved and the wear loss reduced. Hence the surface area coverage of G-D-GQDs got a significant role in the reduced wear loss and thereby coming to a threshold value. The study concludes by suggesting that 0.25 wt. % GDGQD/epoxy composites shown a least wear rate and increased hardness of 0.023% and 26%, respectively thereby suggesting application involving reduced wear rates.
机译:本文讨论了石墨烯量子点(G-D-GQD)增强环氧复合材料的石墨烯的磨损和微硬度行为。通过加入0.25-1重量,通过开口模塑方法制备样品。 GDGQD的%(间隔为0.25%),并在磨损和摩擦系数的往复系数上进行评估。已经进行了G-D-GQD颗粒嵌入环氧复合材料的微硬度测试,并将硬度值结果与整齐的环氧树脂进行比较,以找到硬度的改善。通过嵌入G-D-GQD填料获得环氧纳米复合材料的硬度和耐磨性的显着改善,这是由于GDGQD填料与环氧基质的有效键合。分析扫描电子显微镜(SEM)图像的磨损复合材料以了解表面的形态。此外,复合材料的摩擦系数随着重量而增加。基材中的填料%,但由于颗粒的粘合强度和较小的聚集,Vicker的硬度改善,磨损损失减少。因此,G-D-GQD的表面积覆盖在降低的磨损损失中具有重要作用,从而得到阈值。这项研究通过表明0.25重量%。 %GDGQD /环氧复合材料分别示出了最小的磨损率和增加的硬度为0.023%和26%,从而暗示涉及减少磨损率的应用。

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