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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Effect of humidity on the synergy of friction and wear properties in ternary epoxy-graphene-MoS2 composites
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Effect of humidity on the synergy of friction and wear properties in ternary epoxy-graphene-MoS2 composites

机译:湿度对三元环氧树脂 - 石墨烯-MOS2复合材料中摩擦和磨损性能协同作用的影响

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Graphene and molybdenum-disulfide are considered to be one of the multifunctional materials that are extensively used in lubrication. However, the combined effects of these two materials on the tribological properties under different humidity are less explored. In this study, novel epoxy-graphene-MoS2 ternary composites are prepared by considering different particle concentrations of 5, 10, and 20 wt%. For analyzing the suitability of these composites in a humid environment, their tribological properties are tested under 40%, 60%, and 80% relative humidity and compared with pristine epoxy, binary epoxygraphene, and binary epoxy-MoS2 composites. The reported friction coefficient and wear rate of ternary composites are significantly lower than those in each binary composite. A synergistic effect in ternary composites leads to much low friction coefficient and wear rate ranging between 0.0019 and 0.01 and 1.0 and 1.48 x 10(-7) mm(3)/N-m, respectively. The formation of functional-graphene influences the wear mechanism in the ternary composite. In a similar environment, friction coefficient and wear rate of binary epoxy-graphene (0.017-0.028, 1.35-1.59 x 10(-7) mm(3)/N-m) and binary epoxy-MoS2 (0.07-0.23, 1.4-1.67 x 10(-7) mm(3)/N-m) composites are high. The ultralow friction values and light-weight of ternary composites make them suitable for practical application in the automotive industry for designing lightweight and rolling/sliding components such as bearings for ball joints. (c) 2019 Elsevier Ltd. All rights reserved.
机译:将石墨烯和钼 - 二硫化物被认为是多官能材料之一,其广泛用于润滑。然而,这两种材料对不同湿度下的摩擦学性质的综合影响不太探索。在该研究中,通过考虑不同的5,10和20wt%的不同颗粒浓度来制备新的环氧树脂 - 石墨烯-MOS2三元复合材料。为了分析这些复合材料在潮湿环境中的适用性,其摩擦学性质在40%,60%和80%的相对湿度下测试,并与原始环氧树脂,二元环氧树脂和二元环氧-MOS2复合材料相比。报告的三元复合材料的摩擦系数和磨损率明显低于每个二进制复合材料的磨损率。三元复合材料中的协同效应可以分别导致摩擦系数和磨损率大大,磨损率为0.0019至0.01和1.0和1.48×10(-7)mm(3)/ n-m。功能 - 石墨烯的形成影响三元复合材料中的磨损机构。在类似的环境下,二元环氧树脂 - 石墨烯的摩擦系数和磨损率(0.017-0.028,1.35-1.59×10(-7)mm(3)/ nm)和二元环氧-MOS2(0.07-0.23,1.4-1.67 x 10(-7)mm(3)/ nm)复合材料很高。超级摩擦值和三元复合材料的轻量级使其适用于汽车行业的实际应用,用于设计轻质和滚动/滑动部件,例如球形接头的轴承。 (c)2019年elestvier有限公司保留所有权利。

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