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Ion nitriding of tool steel in magnetic field followed by deposition of coating by vacuum arc plasma

机译:磁场中工具钢的离子渗氮,然后通过真空电弧等离子体沉积涂层

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Effect of magnetic field on ion nitriding process in glow discharge was discussed. Characteristics of discharge influenced by magnetic field was studied. Microstructure and microhardness of samples of tool steel R6M5 after ion nitriding in magnetic field followed by deposition of TiN and TiAlN composition coating by vacuum arc plasma was investigated. Found that using magnetic field while ion nitriding leads to intensification of diffusion process and ensures high process efficiency comparing to conventional nitriding methods. It was established that ion nitriding in glow discharge with magnetic field is efficient technique to support TiN and TiAlN coatings in terms of excess steel surface deformation. Based on phase modification in glow discharge with magnetic field and followed by deposition of vacuum arc plasma coating deposition, technological process of ion nitriding of tool steel parts was developed.
机译:讨论了磁场对辉光放电离子渗氮过程的影响。研究了磁场影响下的放电特性。研究了工具钢R6M5在磁场中进行离子渗氮,然后通过真空电弧等离子体沉积TiN和TiAlN成分涂层后的组织和显微硬度。发现与常规氮化方法相比,在离子氮化过程中使用磁场会导致扩散过程的加剧,并确保较高的过程效率。已经确定,在磁场辉光放电中进行离子渗氮是一种有效的技术,可以在过度钢表面变形方面支持TiN和TiAlN涂层。基于磁场辉光放电中的相变,然后进行真空电弧等离子体涂层沉积,开发了工具钢零件的离子渗氮工艺流程。

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