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首页> 外文期刊>Journal of Materials Engineering and Performance >Low Friction Stainless Steel Coatings Graphite Doped Elaborated by Air Plasma Sprayed
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Low Friction Stainless Steel Coatings Graphite Doped Elaborated by Air Plasma Sprayed

机译:空气等离子喷涂工艺制备的低摩擦不锈钢涂层石墨涂层

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A new process has been developed to incorporate graphite particles into a stainless steel coating during its formation. Four means have been tested to inject the graphite particles outside the plasma jet and its plume: graphite suspension, a graphite rod rubbed on the rotating sample, powder injection close to the substrate with an injector, or a specially designed guide. The last process has been shown to be the most versatile and the most easily controllable. It allows the incorporation of between 2 and 12 vol. percent of graphite particles (2-15 mum) within the plasma sprayed stainless steel coatings. A volume fraction of 2 percent seems to give the best results with a slight decrease (6 percent) of the coating hardness. This volume fraction also gave the best results in dry friction on the pin-on-disk apparatus. Depending on the sliding velocity (0.1-0.5 m/s) and loads (3.7-28 N), the dry friction coefficient against a 100C6 pin is reduced by between 1.5 and 4 compared with that obtained with plasma sprayed stainless steel.
机译:已经开发出一种新方法,以在其形成过程中将石墨颗粒掺入不锈钢涂层中。已经测试了将石墨颗粒注入等离子流及其羽流外部的四种方法:石墨悬浮液,在旋转的样品上摩擦的石墨棒,使用注射器将粉末注入靠近基材的位置或专门设计的导向器。事实证明,最后一个过程是最通用,最容易控制的。它允许掺入2至12 vol。等离子喷涂不锈钢涂层中石墨颗粒(2-15微米)的百分比。体积分数为2%似乎可以得到最好的结果,但涂层硬度略有降低(6%)。该体积分数在销盘式设备上的干摩擦方面也给出了最佳结果。与等离子喷涂不锈钢相比,取决于滑动速度(0.1-0.5 m / s)和负载(3.7-28 N),与100C6销的干摩擦系数降低1.5至4。

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