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Effect of Particle Size on Current-Carrying Friction and Wear Properties of Copper-Graphite Composites by Spark Plasma Sintering

机译:粒度对火花等离子体烧结铜石墨复合材料的载流摩擦和磨损性能的影响

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Copper-graphite composites were prepared by spark plasma sintering (SPS) with copper powder and copper-coated graphite powder. The effect of particle size of raw material powder on the current-carrying friction properties of copper-graphite composites was studied. The results show that the friction coefficient of the composites decreased with the decrease of the particle size of copper-coated graphite powder, the friction coefficient of the composites increased with the decrease of the particle size of the copper powder, the wear rate of the composites increased with the decrease of the particle size of the copper-coated graphite powder, and the wear rate of the composites increased significantly with the decrease of the particle size of the copper-coated graphite powder. The current carrying properties of composites with different particle size ratios and QCr0.5 pairs are good and fluctuate little. The current-carrying friction properties of 150 μm copper powder and 75 μm copper-coated graphite powder were found to be the best. The wear surface could be divided into mechanical wear area and arc erosion area. The main area of arc erosion was less than 15% of the total area, and it was mainly distributed in the friction outlet area. The main forms of mechanical wear included furrow, rolling deformation, cold welding, and tearing, among other forms. Graphite film was formed on the surface. The surface quality of the composite prepared by 150 μm copper powder and 75 μm copper-coated graphite powder was the best, the Sa was 3.22 μm, rolling deformation was the most adequate, no large tear pit and furrow appeared, and the carbon content on the worn surface was much higher than that in the composite. The behavior of arc erosion was mainly melting and splashing, and the particle size of the original powder had little effect on it.
机译:铜粉和覆铜石墨粉通过火花等离子体烧结(SPS)制备了铜-石墨复合材料。研究了原料粉末的粒径对铜-石墨复合材料载流摩擦性能的影响。结果表明,复合材料的摩擦系数随覆铜石墨粉粒度的减小而降低,复合材料的摩擦系数随铜粉粒度的减小,复合材料的磨损率的增加而增大。随着覆铜石墨粉粒度的减小,复合材料的磨损率增加;随着覆铜石墨粉粒度的减小,复合材料的磨损率显着增加。不同粒径比和QCr0.5对的复合材料的载流性能良好,并且波动很小。发现150μm铜粉和75μm覆铜石墨粉的载流摩擦性能最佳。磨损面可分为机械磨损区和电弧腐蚀区。电弧腐蚀的主要区域不到总面积的15%,主要分布在摩擦出口区域。机械磨损的主要形式包括沟槽,轧制变形,冷焊和撕裂等。在表面形成石墨膜。 150μm铜粉和75μm覆铜石墨粉制备的复合材料的表面质量最好,Sa为3.22μm,滚动变形最充分,没有大的裂坑和沟槽,并且碳含量高。磨损的表面远高于复合材料。电弧侵蚀的行为主要是熔化和飞溅,原始粉末的粒径对其影响不大。

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