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Mechanical and Thermal Properties of Graphene Nanoplates and Functionalized Carbon-Nanotubes Hybrid Epoxy Nanocomposites

机译:石墨烯纳米板和功能化碳纳米管混合环氧树脂纳米复合材料的机械和热性能

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The effect of dispersion of carbon nanofillers on mechanical properties, wettabiliy and thermal stability of epoxy nanocomposites prepared by direct mixing method were studied. Field Emission Scanning Electron Microscopy (FESEM) was used to study dispersion of carbon nanofiller in epoxy matrix. The tensile properties of the prepared Epoxy/GNPs nanocomposites by direct mixing method using (0, 0.1, 0.25, 0.5, 0.75 and 1 wt %) GNPs showed significant improvement (ca. 59% and 62%) in the ultimate tensile strength and Young's modulus of nanocomposites respectively at a loading of 0.5 wt % GNPs. At loading higher than 0.5%, the mechanical properties start to decrease but still higher than that of neat epoxy due to agglomeration of GNPs. The Epoxy/ GNPs-FMWNTs nanocomposites was prepared using 0.5 wt % GNPs:FMWNTs nanofiller with different GNPs:CNTs mixing ratio (1:9, 2.5:7.5, 5:5, 7.5:2.5, and 9:1). The best improvements in mechanical properties was found at two mixing ratios of GNPs: FMWNTs (5:5) and (9:1). Water absorption of neat epoxy was 0.56% and decreases to 0.48% by adding 1 wt % of GNPs, and decrease to 0.49% by adding 0.5 wt. % FMWNTs. The contact angle of neat epoxy was 43.5°. The hydrophilic of epoxy resin decreases by adding 1 wt % GNPs where contact angle is 67.5°.
机译:研究了碳纳米填料的分散对直接混合法制备的环氧纳米复合材料的力学性能,润湿性和热稳定性的影响。场发射扫描电子显微镜(FESEM)用于研究碳纳米填料在环氧基质中的分散。使用(0、0.1、0.25、0.5、0.75和1 wt%)GNP的直接混合方法制备的环氧树脂/ GNPs纳米复合材料的拉伸性能显示出极限拉伸强度和杨氏值的显着改善(分别为59%和62%)。纳米复合材料的模量分别为0.5 wt%GNPs。在高于0.5%的负载量下,由于GNP的团聚,机械性能开始下降,但仍高于纯环氧树脂。环氧树脂/ GNPs-FMWNTs纳米复合材料是使用0.5 wt%的GNPs:FMWNTs纳米填料制备的,具有不同的GNPs:CNTs混合比例(1:9、2.5:7.5、5:5、7.5:2.5和9:1)。在两种GNP混合比例下发现了机械性能的最佳改善:FMWNTs(5:5)和(9:1)。纯环氧树脂的吸水率为0.56%,通过添加1 wt%的GNP,吸水率降至0.48%,通过添加0.5 wt%的吸水率降至0.49%。 %FMWNT。纯环氧树脂的接触角为43.5°。环氧树脂的亲水性通过添加1 wt%的GNP(接触角为67.5°)而降低。

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