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首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Nitrogen mass transfer and surface layer formation during the active screen plasma nitriding of austenitic stainless steels
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Nitrogen mass transfer and surface layer formation during the active screen plasma nitriding of austenitic stainless steels

机译:奥氏体不锈钢活性筛分等离子体氮化期间的氮气传质和表面层形成

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AbstractActive screen plasma nitriding (ASPN), a novel surface modification process, has been widely applied to improve various surface properties of austenitic stainless steels, such as wear resistance, electrical conductivity and corrosion resistance. All the improvement of surface properties attributes to the formation of a unique phase under low nitriding temperature, called S-phase. A “sputter – deposit – decompose –diffusion model” has been established to explain the formation of S-phase, however, the mechanism of nitrogen mass transfer to the substrate during ASPN still remains controversial. By comprehensively comparing the surface responds of three different surfaces (bare 316L stainless steel surface, Au-coated 316L stainless steel surface and Si wafer surface) during ASPN treatments, this paper provides the direct evidence and clarifies the mechanism of nitrogen mass transfer between the deposition layer and the substrate during ASPN treatment.Highlights?Three different surfaces were active-screen-plasma-nitrided simultaneously.?The surface layer formation of different surfaces was investiga
机译:<![CDATA [ 抽象 主动屏体等离子体氮化(ASPN),一种新的表面改性过程,已被广泛应用于改善各种表面特性奥氏体不锈钢等耐磨性,导电性和耐腐蚀性。表面属性的所有改善属性在低氮化温度下形成独特的相位,称为S阶段。已经建立了“溅射 - 沉积 - 分解 - 脱离模型”以解释S阶段的形成,然而,氮气传质在ASPN期间对基材的机制仍然存在争议。通过全面比较ASPN处理期间三种不同表面的表面响应(裸316L不锈钢表面,Au涂覆的316L不锈钢表面和Si晶片表面),本文提供了直接证据并阐明了沉积之间的氮气传递机理aspn治疗过程中的层和衬底。 < ce:section-title id =“sectitle0015”>亮点 三种不同的表面都是主动屏幕 - 等离子体 - 氮化同时。 不同表面的表面层形成是Investga

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