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Wear-Resistant Graphene-Silicone Rubber Composites

机译:耐磨石墨烯 - 硅橡胶复合材料

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Both the mechanical properties and friction characterization of graphene-silicone rubber composites were investigated systemically. Graphene-silicone rubber composites were prepared by means of solution and flocculation process to improve the processing performance and avoid agglomeration. It was found that the tensile strength, elongation at break, and tear strength of graphene-silicone rubber composites with 2.0% graphene were respectively 32.8, 21.1, and 23.5% higher than those for pure rubber. Both the friction coefficient and the abrasion loss of silicone rubber composites of 0.75 wt% graphene were 50.6 and 72.8% lower than those for the pure specimen. The microscopic fracture and friction mechanism of graphene-silicone rubber composites were analyzed, which indicated that both the wear resistance and mechanical properties of silicone rubber were influenced by the lubrication, reinforcement, and agglomeration of graphene. These results will play an important role in the design and evaluation of the friction and wear properties of graphene-silicone rubber composites.
机译:全身研究石墨烯 - 硅橡胶复合材料的机械性能和摩擦表征均进行研究。通过溶液和絮凝过程制备石墨烯 - 硅橡胶复合材料,以改善加工性能并避免附聚。发现抗拉强度,突破处的伸长率和石墨烯 - 硅橡胶复合材料的撕裂强度分别比纯橡胶的32.8,21.1和23.5%高。摩擦系数和0.75wt%石墨烯的摩擦系数和磨损损失均为50.6〜72.8%,低于纯试样的72.8%。分析了石墨烯 - 硅橡胶复合材料的微观断裂和摩擦机理,表明硅橡胶的耐磨性和机械性能受到润滑,增强和石墨烯附聚的影响。这些结果将在石墨烯 - 硅橡胶复合材料的摩擦和磨损性能的设计和评估中发挥重要作用。

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