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Effect of electrodeposition conditions and reinforcement content on microstructure and tribological properties of nickel composite coatings

机译:电沉积条件和补强量对镍复合涂层组织和摩擦学性能的影响

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摘要

In this work, pure nickel and nickel composite coatings (Ni-Al_2O_3, Ni-SiC, and Ni-ZrO_2) were deposited from Watts bath using direct current (DC), pulsed current (PC), and pulsed reverse current (PRC) electrodeposition conditions. Detailed investigations on the effect of deposition conditions on the evolution of surface microstructure, crystallographic micro-texture, microhardness, and sliding wear behavior of pure nickel and nickel composite coatings are presented. For all the coatings, the PC and PRC deposition conditions resulted in more random/weak crystallographic texture compared to DC deposition. The composite coatings deposited using PC and PRC deposition also exhibited significant improvement in microhardness and wear resistance due to enhanced reinforcement of nanoparticles in the coatings. Also, the effect of nanoparticle content of the electrolyte bath on the surface microstructure, tribological properties, and level of reinforcement in the Ni-Al_2O_3 composite coating is investigated. The reinforcement of nanoparticles in the Ni-Al_2O_3 composite coatings increased linearly with the amount of nanoparticle loading in the electrolyte bath. The microhardness and wear resistance of the Ni-Al_2O_3 composite coatings also improved with increasing Al_2O_3 content in the coatings.
机译:在这项工作中,使用直流电(DC),脉冲电流(PC)和脉冲反向电流(PRC)电沉积从瓦特浴中沉积了纯镍和镍复合涂层(Ni-Al_2O_3,Ni-SiC和Ni-ZrO_2)条件。提出了有关沉积条件对纯镍和镍复合涂层表面微观结构,晶体学微观结构,显微硬度以及滑动磨损行为的影响的详细研究。对于所有涂层,与DC沉积相比,PC和PRC沉积条件导致更多的随机/弱晶体学纹理。由于增强了涂层中纳米颗粒的增强作用,使用PC和PRC沉积方法沉积的复合涂层在显微硬度和耐磨性方面也表现出显着改善。此外,研究了电解液中纳米粒子含量对Ni-Al_2O_3复合涂层中表面微观结构,摩擦学性能和增强水平的影响。 Ni-Al_2O_3复合涂层中纳米颗粒的增强与电解质浴中纳米颗粒的负载量呈线性关系。随着涂层中Al_2O_3含量的增加,Ni-Al_2O_3复合涂层的显微硬度和耐磨性也得到改善。

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