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Synergetic effect of NbSe2 and Cr2Nb on the tribological and electrical behavior of Cu-based electrical contact composites

机译:NbSe2和Cr2Nb对Cu基电接触复合材料的摩擦学和电学行为的协同效应

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The Cu-based electrical contact composites containing reinforcement (Cr2Nb particles) and solid lubricants (NbSe2 particles) were fabricated by a powder metallurgy method, and their mechanical and electrical properties were investigated. The wear tests of Cu-based composites were performed on a ball on disc under dry sliding conditions in a laboratory atmosphere and the worn surface of the Cu-based composites was observed by using scanning electron microscopy. Experimental results indicated that Cu-based composite materials containing Cr2Nb and NbSe2 nanofibers possessed lower electrical resistivity and better prominent tribological properties than Cu/NbSe2 and Cu/Cr2Nb composites, and that the friction coefficient and wear rate of the composites gradually decreased with the increase of NbSe2 nanofiber content. The lubricating effect of the Cu-based composites containing 25 wt% NbSe2 nanofibers and 10 wt% Cr2Nb particles was outstanding with a friction coefficient close to 0.15. The tribological properties of Cu-based composites were affected by the size and morphology of NbSe2 particles, and Cu-based composites with NbSe2 nanofibers have been proven to be more effective to reduce friction and wear compared to Cu-based composites containing commercially available NbSe2 micro-particles under dry sliding conditions. Furthermore, the addition of Cr2Nb could improve the hardness and oxidation resistance of composites, and consequently enhance wear resistance and conductivity of Cu-based composites.
机译:采用粉末冶金法制备了含增强剂(Cr2Nb颗粒)和固体润滑剂(NbSe2颗粒)的铜基电接触复合材料,研究了其力学性能和电性能。在实验室环境中,在干式滑动条件下,在圆盘上的球上进行了铜基复合材料的磨损测试,并通过使用扫描电子显微镜观察了铜基复合材料的磨损表面。实验结果表明,与Cr / NbSe2和Cu / Cr2Nb复合材料相比,含Cr2Nb和NbSe2纳米纤维的Cu基复合材料具有较低的电阻率和突出的摩擦学性能,并且随着摩擦系数的增加,复合材料的摩擦系数和磨损率逐渐降低。 NbSe2纳米纤维含量。包含25wt%的NbSe 2纳米纤维和10wt%的Cr 2 Nb颗粒的Cu基复合材料的润滑效果非常好,摩擦系数接近0.15。铜基复合材料的摩擦学性能受NbSe2颗粒的大小和形态的影响,并且与含市售NbSe2微米的铜基复合材料相比,具有NbSe2纳米纤维的铜基复合材料已被证明能更有效地减少摩擦和磨损。 -在干滑条件下的颗粒。此外,Cr2Nb的添加可以提高复合材料的硬度和抗氧化性,从而提高铜基复合材料的耐磨性和导电性。

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