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Pulse electro co-deposition of submicron-sized TiC reinforced Ni–W coatings: tribological and corrosion properties

机译:脉冲电极CONICRO沉积亚微米的TIC加固Ni-W涂层:摩擦学和腐蚀性

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摘要

Nickel–Tungsten–Titanium carbide (Ni–W–TiC) coatings were produced by pulse electrodeposition from a Ni–W electrolyte containing TiC particles. The effects of TiC concentration in the electrolyte on the morphology, crystallite size, microstrain, mechanical, tribology and electrochemical properties of TiC reinforced Ni–W co-depositions were investigated. The highest hardness of 8.3 GPa and modulus of elasticity of 207 GPa were observed in the case of the coating produced at 15 g/L TiC concentration in the electrolyte. The increase in the H/E and H3/E2 ratios led to displaying excellent wear resistance of the Ni–W–TiC co-depositions besides high resistance to plastic deformation. A direct correlation was observed between nanoindentation and wear resistance results of reinforced TiC co-depositions. It has also been shown by electrochemical impedance spectroscopy and potentiodynamic polarization analysis that TiC particles can improve the electrochemical properties of the co-depositions because of their barrier effect.
机译:镍 - 钨 - 钛碳化物(镍W-TiC等)涂料通过从含有的TiC颗粒镍-W电解质脉冲电产生的。的TiC浓度在电解质上的形态,微晶尺寸,微应变,机械的,摩擦学和TiC的电化学性质的影响增强Ni-W共沉积进行了研究。在电解质中的15g / L的浓度的TiC产生的涂层的情况下,观察到8.3吉帕最高的硬度和207 GPA的弹性模量。在导致除了塑性变形的高电阻显示在Ni-W-TIC共沉积的优异的耐磨损性的H / E和H3 / E2比例的增加。增强的TiC共沉积的纳米压痕和耐磨损性的结果之间观察到直接的相关性。还已经通过电化学阻抗谱和极化分析认为的TiC颗粒可以提高,因为它们的屏障作用的共沉积的电化学性质所示。

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