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Tribological Properties of Aluminium Alloy Composites Reinforced with Multi-Layer Graphene—The Influence of Spark Plasma Texturing Process

机译:多层石墨烯增强铝合金复合材料的摩擦学性能-放电等离子变形工艺的影响

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摘要

Self-lubricating composites are designed to obtain materials that reduce energy consumption, improve heat dissipation between moving bodies, and eliminate the need for external lubricants. The use of a solid lubricant in bulk composite material always involves a significant reduction in its mechanical properties, which is usually not an optimal solution. The growing interest in multilayer graphene (MLG), characterised by interesting properties as a component of composites, encouraged the authors to use it as an alternative solid lubricant in aluminium matrix composites instead of graphite. Aluminium alloy 6061 matrix composite reinforced with 2–15 vol % of MLG were synthesised by the spark plasma sintering process (SPS) and its modification, spark plasma texturing (SPT), involving deformation of the pre-sintered body in a larger diameter matrix. It was found that the application of the SPT method improves the density and hardness of the composites, resulting in improved tribological properties, particularly in the higher load regime.
机译:自润滑复合材料旨在获得可降低能耗,改善运动物体之间的散热并消除对外部润滑剂的需求的材料。在散装复合材料中使用固体润滑剂总是会导致其机械性能的显着降低,这通常不是最佳解决方案。对多层石墨烯(MLG)的兴趣日益浓厚,其特征是作为复合材料的一种有趣的特性,这鼓励作者将其用作铝基复合材料的替代固体润滑剂,而不是石墨。通过火花等离子烧结工艺(SPS)及其改性,火花等离子变形(SPT)合成了含有2-15%(体积)的MLG增强的铝合金6061基复合材料,涉及到大直径基体中预烧结体的变形。已经发现,SPT方法的应用提高了复合材料的密度和硬度,从而改善了摩擦学性能,特别是在较高的载荷条件下。

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