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Tribological properties of unbalanced magnetron sputtered nano-scale multilayer coatings TiAlN/VN and TiAlCrYN deposited on plasma nitrided steels

机译:非平衡磁控溅射纳米级多层涂层TiAln / Vn和Tialcryn沉积在等离子体氮化钢上的摩擦学性质

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摘要

Unbalanced magnetron sputtered multilayer coatings TiAlN/VN and TiAlCrYN grown on pulse plasma nitriding pre-treated low alloy steel P20 have been characterised by using X-ray diffraction (XRD), scanning electron microscope (SEM), micro-indentation, scratch and pin-on-dise wear tests. A 160-mu m-thick nitrided case was formed on the steel surface containing a pure Fe3N and Fe4N compound layer and showing hardness up to 8.5 GPa, which led to improved load bearing ability and adhesion behaviour of the coating-substrate system. The coatings deposited on non-nitrided P20 showed poor adhesion and severe cracking and spalling wear. In contrast, the TiAlN/VN and TiAlCrYN deposited on nitrided substrates showed only mild polishing and oxidation wear mechanisms and extremely low wear coefficients in the scales of 10(-17) and 10(-16) m(3) N-1 m(-1), respectively. In drilling solution treated 304 austenite stainless steel, the TiAlN/VN-coated drills showed a lifetime 50% longer than TiAlN-coated drills. Plasma nitriding pre-treatment led to further increases of lifetime by 33%. (c) 2004 Elsevier B.V. All rights reserved.
机译:使用X射线衍射(XRD),扫描电子显微镜(SEM),微压痕,划痕和针头,表征了不平衡磁控溅射的多层涂层TiAln / Vn和Tialcryn在脉冲等离子体氮化预处理的低合金钢P20。禁止磨损测试。在含有纯Fe3N和Fe4N化合物层的钢表面上形成160μmM厚的氮壳,并且显示出高达8.5GPa的硬度,导致涂层基板系统的载荷能力和粘合性能提高。沉积在非氮化P20上的涂层显示出差的粘附性和严重的裂缝和剥落磨损。相反,沉积在氮化基板上的TiAln / Vn和Tialcryn仅显示温和的抛光和氧化磨损机构,并且在10(-17)和10(-16)m(3)n-1m( -1)分别。在钻孔溶液处理的304奥氏体不锈钢中,TiAln / VN涂层钻头显示出比TiAlN涂层钻头长50%的寿命。等离子体氮化预处理导致寿命进一步增加33%。 (c)2004年elestvier b.v.保留所有权利。

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