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Duplex surface treatments combining plasma electrolytic nitrocarburising and plasma-immersion ion-assisted deposition

机译:结合等离子体电解氮碳共渗和等离子体浸没离子辅助沉积的双重表面处理

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This paper discusses the feasibility of improving the tribological performance of AISI 304 stainless steel by applying a duplex surface treatment which combines the methods of plasma electrolytic nitrocarburising (PEN/C) and plasma-immersion ion-assisted deposition (PIAD) of a diamond-like carbon (DLC) coating. The effects of different regimes of plasma electrolytic diffusion treatment on the surface microstructural, mechanical and tribological characteristics of the stainless steel substrate are studied. The major advantages of the PEN/C technique are shown to be extremely high growth rate of the N/C diffusion layer (typically 3-6 mum/min) and the near-ambient (bulk) treatment temperature; this combination of characteristics far exceeds the capabilities of most conventional methods of diffusion treatment. Diffusion hardened layers 15-60 mum thick were produced after 5-10 min treatment, consisting predominantly of expanded austenite (gamma (N,C)) with a Knoop microhardness of 800-1400 HK10, providing significant improvement in the substrate load bearing capacity for subsequent deposition of a PIAD DLC coating. Reciprocating-sliding friction and wear tests against a WC-Co sintered-carbide or SAE 52100 chromium-steel ball counterface have shown that the application of a duplex treatment promotes a change in wear mechanism of the friction pair from relatively severe adhesion/abrasion to mild asperity deformation and 'polishing'. This results in simultaneous reduction of the volumetric wear rate from similar to 10(-4) to similar to 10(-7) mm(3)/Nm and of the friction coefficient from (0.59-0.63) and (0.68-0.74) to (0.09-0.13) and (0.24-0.32) for WC-Co and chromium-steel counterfaces, respectively. It is also shown that the ball-on-plate impact wear resistance of the PIAD DLC coating can be considerably increased by application of a nitrocarburised load-supporting sublayer. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 14]
机译:本文讨论了通过结合等离子体电解氮碳共渗(PEN / C)和等离子体浸没离子辅助沉积(PIAD)的类金刚石表面进行双重表面处理来提高AISI 304不锈钢的摩擦学性能的可行性碳(DLC)涂层。研究了等离子电解扩散处理方式对不锈钢基体表面微观结构,力学和摩擦学特性的影响。 PEN / C技术的主要优势在于N / C扩散层的生长速率极高(通常为3-6 mum / min)和接近室温(大容量)的处理温度;这种特性的组合远远超出了大多数常规扩散处理方法的能力。在5-10分钟的处理后,产生了15-60微米厚的扩散硬化层,主要由膨胀奥氏体(伽玛(N,C))组成,努氏显微硬度为800-1400 HK10,为提高基板的承载能力提供了显着改善随后沉积PIAD DLC涂层。针对WC-Co烧结硬质合金或SAE 52100铬钢球对接面的往复滑动摩擦和磨损测试表明,双相处理的应用促进了摩擦副的磨损机理从相对严重的粘附/磨损变为轻度粗糙变形和“抛光”。这导致体积磨损率从相似的10(-4)同时降低到相似的10(-7)mm(3)/ Nm,摩擦系数从(0.59-0.63)和(0.68-0.74)降低到WC-Co和铬钢对接分别为(0.09-0.13)和(0.24-0.32)。还显示出,通过施加氮碳共渗的负载支撑子层,可以显着提高PIAD DLC涂层的板对球的耐冲击磨损性。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:14]

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