INFLUENCE OF THE METAL UNDERLAYER ON THE CAVITATION RESISTANCE OF NITRIDED STEEL WITH Mo2N COATING

IF 0.5 Q4 PHYSICS, NUCLEAR Problems of Atomic Science and Technology Pub Date : 2024-04-11 DOI:10.46813/2024-150-101
Yu.A. Zadneprovskiy, V. Belous, I. Domnich, V.I. Kovalenko, H. Rostova, I.G. Tantsyurа, G. Tolmachova, M.G. Ishchenko, А.S. Kuprin
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Abstract

A complex modification of 25CrMoV steel has been carried out, which includes nitriding in arc-enhanced glow discharge plasma, deposition of metallic sublayer (Mo, Cr or Ti) and deposition of top layer of Mo2N coating. The structure studies showed that depending on the material and the thickness of the sublayer (1.5...6 µm), defects and delaminations could form at the interfaces, while no defects were observed in the absence of the metallic sublayer. The concentration of nitrogen in the complex modified layers depends on the composition of the metallic sublayer, but does not affect the total depth of nitriding of the hardened steel ~ 160 µm. The hardness of the nitrided layer is ~ 12 GPa, and the hardness of the Mo2N coating is ~ 30 GPa. The cavitation resistance of complex-modified 25CrMoV steel without the metal sublayer is 2 times higher than the initial steel.
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带 Mo2N 涂层的氮化钢的抗塌陷能力受金属底层的影响
对 25CrMoV 钢进行了复杂的改性,包括在电弧增强辉光放电等离子体中进行氮化、沉积金属亚层(Mo、Cr 或 Ti)以及沉积顶层 Mo2N 涂层。结构研究表明,根据材料和亚层厚度(1.5...6 微米)的不同,在界面上可能会形成缺陷和分层,而在没有金属亚层的情况下则不会出现缺陷。复合改性层中的氮浓度取决于金属亚层的成分,但不会影响淬火钢的氮化总深度 ~ 160 µm。氮化层的硬度约为 12 GPa,Mo2N 涂层的硬度约为 30 GPa。无金属亚层的复合改性 25CrMoV 钢的抗气蚀性能是初始钢的 2 倍。
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来源期刊
CiteScore
0.70
自引率
50.00%
发文量
0
审稿时长
2-4 weeks
期刊介绍: The journal covers the following topics: Physics of Radiation Effects and Radiation Materials Science; Nuclear Physics Investigations; Plasma Physics; Vacuum, Pure Materials and Superconductors; Plasma Electronics and New Methods of Acceleration.
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