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Microstructural, mechanical and tribological properties of suspension plasma sprayed YSZ/h-BN composite coating

机译:悬浮等离子体喷涂YSZ / H-BN复合涂层的微观结构,机械和摩擦学性能

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摘要

Brittleness, relative high friction coefficient and wear rate limit the applications of ceramic coatings as wear-resistant layers. However, because embedding additives with ceramic matrix has demonstrated to be an effective way to improve coating performances, different contents and size of h-BN were added into an YSZ suspension. Afterwards, the YSZ/h-BN composite coatings were manufactured by suspension plasma spray and their tribological analysis indicated that: i) the reduction of the friction coefficient and wear rate can be achieved by incorporating h-BN into YSZ coating. ii) finer h-BN particle is more helpful to enhance the tribological properties of the coating. iii) the optimum content is dependent on h-BN particle sizes. iv) when the contents and the size of the h-BN inclusion increase, the probability distribution of the micro-hardness can become bi-modal. Three worn surface conditions were summarized and their wear mechanisms were discussed as well.
机译:脆性、相对较高的摩擦系数和磨损率限制了陶瓷涂层作为耐磨层的应用。然而,由于在陶瓷基体中嵌入添加剂已被证明是改善涂层性能的有效方法,因此在YSZ悬浮液中添加了不同含量和尺寸的h-BN。随后,采用悬浮等离子喷涂法制备了YSZ/h-BN复合涂层,其摩擦学分析表明:i)在YSZ涂层中加入h-BN可以降低摩擦系数和磨损率。ii)更细的h-BN颗粒更有助于提高涂层的摩擦学性能。iii)最佳含量取决于h-BN粒径。iv)当h-BN夹杂物的含量和尺寸增加时,显微硬度的概率分布可以变成双峰分布。总结了三种磨损表面状态,并讨论了它们的磨损机理。

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