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High performance Co-Cr3C2 composite coating by jet electrodeposition

机译:喷射电沉积高性能CO-CR3C2复合涂层

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This paper studied the Co-Cr3C2 composite coatings on the nickel-based super alloy GH4169 deposited by pulse reverse jet electrodeposition in conjunction with ultrasonic vibration. The GH4169 substrates were first annealed at 500 degrees C for 20min to eliminate the internal stress, and then the surface was activated chemically. The surface activation procedure and ultrasonic pulse interval time in the jet electrodeposition were investigated. The results showed that the Cr3C2 particle contents, microhardness, wear resistance of the coatings were significantly improved, while the surface roughness and the coefficient of friction were reduced, when the ultrasonic vibration is applied in the jet electrodeposition of the Co-Cr3C2 composite coatings. It is found that the intermittent ultrasonic vibration at 8s interval time has the greatest effect on the coatings. The Cr3C2 particle content at this condition is at its maximum of 23.85%, with evenly particle distribution and good adhesion with the cobalt matrix. The hardness of the composite coating is 652 HV(0.5), and frictional coefficient is 0.15. It has also high thermal stability, and the microhardness can hold up to 800 degrees C without degradation, showing a great potential for high-temperature applications.
机译:本文研究了脉冲反向喷射电沉积的基于镍的超合金GH4169上的CO-CR3C2复合涂层,与超声波振动相结合。在500℃下首先退火GH4169底物以消除内应力,然后化学激活表面。研究了喷射电沉积中的表面活化程序和超声波脉冲间隔时间。结果表明,CR3C2颗粒含量,微硬度,涂层的耐磨性显着改善,而在CO-CR3C2复合涂层的喷射电沉积中施加超声波振动时,降低了表面粗糙度和摩擦系数。发现8S间隔时间间歇超声振动对涂层具有最大的影响。该条件的CR3C2颗粒含量最大为23.85%,均匀颗粒分布和与钴基质的良好粘附。复合涂层的硬度为652HV(0.5),摩擦系数为0.15。热稳定性也高,显微硬度可容纳高达800℃而不会降解,显示出高温应用的巨大潜力。

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