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Hard coating by plasma-assisted CVD on plasma nitrided stellite

机译:通过等离子氮化CVD在等离子氮化的司太立特硬涂层

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摘要

To maximize an abrasive-wear-resistant function of stellite 6B, a cobalt-base superalloy, a duplex treatment combined with diffusion-dominated plasma nitriding of the substrate and a multilayer coating system of titanium compounds TiN-Ti(C, N)-TiC by plasma-assisted CVD has been designed and developed. Its treatment process has been optimized to impart both smoothness on the top surface of the coating system and a very low level of chlorine in the multilayers. It has also been optimized to be a continuous process at a constant temperature in the same unit simply by changing the flow of reactive and inactive gases, plasma power (gradually) and treatment time, responding to an individual step of the combined process. This developed duplex treatment at 650 degrees C was well applied to the surface of a stellite 6B workpiece that had been under severe abrasive wear. (C) 1998 Elsevier Science S.A. [References: 11]
机译:为了最大程度地提高Stellite 6B的耐磨性能,需要使用钴基高温合金,将基体扩散为主的等离子渗氮与双相处理相结合,并采用钛化合物TiN-Ti(C,N)-TiC的多层涂层系统由等离子体辅助CVD法设计和开发的。它的处理工艺已经过优化,既可以使涂层系统的顶面保持光滑,又可以使多层膜中的氯含量非常低。还可以通过简单地改变反应性和非活性气体的流量,等离子功率(逐渐)和处理时间,对组合过程的各个步骤做出响应,将其优化为在同一单元中在恒定温度下连续进行的过程。这种在650摄氏度下进行的双相处理很好地应用于了遭受严重磨蚀的Stellite 6B工件表面。 (C)1998 Elsevier Science S.A. [参考:11]

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