Friction and Wear Characteristics of Brush Plating Ni/nano-Al2O3 Composite Coating under Sand-Containing Oil
LingzhongDU, BinshiXU, ShiyunDONG, Xinli, Huayang, WeiyiTU, ZixinZHU
Abstract
LingzhongDU, BinshiXU, ShiyunDONG, Xinli, Huayang, WeiyiTU, ZixinZHU
Abstract
Ni-matrix composite coating containing Al2O3 nano-particles is prepared by brush plating. The effects of the nanoparticles on the microstructure, microhardness and tribological properties of the composite coating under the lubrication of a diesel oil containing sand are investigated. The results show that the microstructure of the composite coating is finer than that of the pure nickel coating due to the codeposition of the nano-particles. When the nano-particle concentration in the electroplating bath reaches 20 g/L, the microhardness, and wear resistance of the composite coating is as much as 1.6 times and 1.3~2.5 times of those of the pure nickel coating respectively. The main hardening mechanism of the composite coating is superfine crystal grain strengthening and dispersion strengthening. The composite coating is characterized by scuffing as it slides against Si3N4 under the present test conditions.
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Ni-matrix composite coating containing Al2O3 nano-particles is prepared by brush plating. The effects of the nanoparticles on the microstructure, microhardness and tribological properties of the composite coating under the lubrication of a diesel oil containing sand are investigated. The results show that the microstructure of the composite coating is finer than that of the pure nickel coating due to the codeposition of the nano-particles. When the nano-particle concentration in the electroplating bath reaches 20 g/L, the microhardness, and wear resistance of the composite coating is as much as 1.6 times and 1.3~2.5 times of those of the pure nickel coating respectively. The main hardening mechanism of the composite coating is superfine crystal grain strengthening and dispersion strengthening. The composite coating is characterized by scuffing as it slides against Si3N4 under the present test conditions.
Key concepts: Materials science, Coating, Composite number, Microstructure, Indentation hardness, Electroplating, Tribology, Composite material