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Preparation and Tribological Study of Graphene Coating on Glass Fiber-Reinforced Composite Using Modified Percolating-Assisted Resin Film Infusion Method

机译:改进的渗流辅助树脂薄膜灌注法在玻璃纤维增​​强复合材料上制备石墨烯涂层及其摩擦学研究

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摘要

Tribological properties of glass fiber-reinforced polymer (GFRP) composites used in reciprocating contact should be improved to secure the efficiency and safety because of risks of abrasion, adhesion, and fatigue deficiency amidst fiber, matrix, or interphase. This paper investigates the influence of graphene reinforcement on the wear resistance of a GFRP composite. Graphene was integrated into a typical GFRP composite as the surface coating using a modified resin film infusion method with the percolating paper assisted. Dry reciprocating sliding tests were performed against a stainless steel ball moving in a direction 45 degrees to the fiber orientation. The morphology of the worn surface was observed, and the corresponding wear mechanisms are discussed. Results suggest that the prepared graphene coating improves the wear resistance of the GFRP composite. The protected GFRP laminates remained intact during the first 20 min of the wear test and only a small fraction of fibers were broken after 60 min test. Furthermore, abrasive debris and fiber breaks originating from composite were markedly reduced, likely owing to the formation of a protective transfer film between the surface of the modified composite and the rubbing counterpart.
机译:由于存在纤维,基体或中间相之间的磨损,粘附和疲劳不足的风险,因此应改善往复接触式玻璃纤维增​​强聚合物(GFRP)复合材料的摩擦学性能,以确保效率和安全性。本文研究了石墨烯增强对GFRP复合材料耐磨性的影响。使用改进的树脂薄膜灌注方法,在渗滤纸的辅助下,将石墨烯整合到典型的GFRP复合材料中作为表面涂层。对在与纤维取向成45度角的方向上移动的不锈钢球进行了干式往复滑动测试。观察磨损表面的形态,并讨论了相应的磨损机理。结果表明,所制备的石墨烯涂层改善了GFRP复合材料的耐磨性。在磨损测试的前20分钟内,受保护的GFRP层压板保持完好无损,在60分钟的测试后,只有一小部分纤维断裂。此外,可能由于在改性复合材料的表面和摩擦对应物之间形成了保护性转移膜而显着减少了来自复合材料的磨料碎片和纤维断裂。

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