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Preparation and properties of copper-plated expanded graphite/ copper composites

机译:镀铜膨胀石墨/铜复合材料的制备及性能

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摘要

The porous expanded graphite (EG) was metallized by electroless plating to improve the C-Cu interface bonding, and the copper-plated EG/Cu (EG@Cu/Cu) composites with different EG content (1-4 wt%) were fabricated by spark plasma sintering (SPS). The effects of EG content on the microstructure, physical properties, bending properties, and tribological properties of EG@Cu/Cu composites were studied in detail. The results show that the copper-plated composite powder inherits the worm structure of EG, and forms a dense copper coating with a thickness of 2-5 mu m. During electroless plating, the plating solution penetrated into the EG particles and formed a microscopic 3D Cu network. Compared with the composite without copper plating, copper coating effectively improves the interface bonding of C-Cu. EG@Cu/Cu composites retain the physical and mechanical properties of Cu matrix, and obtains lower friction coefficient and wear rate. The discrete and uniform distribution of EG improves the continuity of Cu matrix. When subjected to friction, the flexible EG could overflow from the surface within 10 min to form a saturated self-lubricating film. EG@Cu/Cu composite with 3 wt% EG has better comprehensive properties, the friction coefficient is 22.9% of pure copper, and the wear mass is 7.9% of pure copper. Abrasive wear is the main friction mechanism of EG@Cu/Cu composites.
机译:采用化学镀的方法对多孔膨胀石墨(EG)进行了金属化处理,以改善C-Cu界面结合,并对镀铜EG/Cu进行了研究(EG@Cu/采用放电等离子烧结(SPS)技术制备了不同EG含量(1-4 wt%)的铜基复合材料。研究了乙二醇含量对复合材料微观结构、物理性能、弯曲性能和摩擦学性能的影响EG@Cu/对铜基复合材料进行了详细的研究。结果表明,镀铜复合粉末继承了乙二醇的蠕虫结构,形成了厚度为2-5μm的致密铜涂层。在化学镀过程中,镀液渗入乙二醇颗粒,形成了微观的三维铜网络。与未镀铜的复合材料相比,镀铜有效地改善了C-Cu的界面结合。EG@Cu/铜基复合材料保留了铜基体的物理力学性能,获得了较低的摩擦系数和磨损率。EG的离散均匀分布改善了铜基体的连续性。当受到摩擦时,柔性EG可在10分钟内从表面溢出,形成饱和自润滑膜。EG@Cu/EG含量为3%的铜基复合材料综合性能较好,摩擦系数为纯铜的22.9%,磨损量为纯铜的7.9%。磨料磨损是摩擦磨损的主要机理EG@Cu/铜复合材料。

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