Increasing the Wear Resistance of Structural Steel Parts by Ion Nitriding during Complex Surface Preparation Using the Dry Electropolishing Method

IF 0.5 4区 工程技术 Q4 ENGINEERING, MECHANICAL Journal of Friction and Wear Pub Date : 2024-12-12 DOI:10.3103/S1068366624700326
N. K. Krioni, A. A. Mingazheva, A. D. Mingazhev
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Abstract

The article considers the results of studies on the wear resistance of machine parts made of structural steels with nitrided layers obtained during complex surface preparation before ion implantation and subsequent ion nitriding. Nitrided layers on parts made of structural steels produced using traditional technology are not able to fully realize their potential for wear resistance, since oversaturation of grain boundaries with nitrogen leads to a decrease in the strength of their boundaries, the formation of a nitride grid and to the staining of grains and their fragments during wear friction. The method developed by the authors for activating the surface layer of parts by high-energy ion implantation treatment, in some cases, eliminates the process of nitride mesh formation. However, the microgeometric and physicomechanical heterogeneity of the nitrided surface, as well as the presence of impurities on the surface, reduces the operational properties of the nitrided layer. It is shown that the use of dry electropolishing makes it possible to achieve the lowest surface roughness compared to other polishing methods, while ensuring the most homogeneous state of the surface layer material. It is also shown that the use of electroadsorption for surface cleaning makes it possible to eliminate impurities present on the surface of parts, which contributes to the most effective use of subsequent activation of the surface layer by high-energy ion implantation. It is also shown that as a result of the application of complex surface preparation of the part, it is possible to fully realize the possibilities of ion nitriding technology. Using the example of rotors of screw pumps operating under conditions of intense wear friction, the results of comparative wear tests are presented. It is shown that the use of complex surface preparation, including dry electropolishing and electroadsorption before activation of the surface layer by high-energy ion implantation increases the wear resistance of the nitrided layer by about 2 times.

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干式电抛光法制备复杂表面时离子氮化提高结构钢件的耐磨性
本文考虑了在离子注入前和离子氮化后的复杂表面制备过程中获得的氮化层结构钢机械零件耐磨性的研究结果。使用传统技术生产的结构钢部件上的氮化层不能充分发挥其耐磨性的潜力,因为晶界中氮的过饱和会导致晶界强度下降,形成氮化网格,并在磨损摩擦中染色晶粒及其碎片。作者开发的通过高能离子注入处理激活零件表层的方法,在某些情况下,消除了氮化物网状结构的形成过程。然而,氮化表面的微观几何和物理力学的不均匀性,以及表面杂质的存在,降低了氮化层的操作性能。结果表明,与其他抛光方法相比,使用干式电抛光可以实现最低的表面粗糙度,同时确保表面层材料的最均匀状态。还表明,使用电吸附进行表面清洗可以消除零件表面存在的杂质,这有助于最有效地利用高能离子注入对表面层的后续活化。还表明,由于零件复杂表面制备的应用,有可能充分实现离子氮化技术的可能性。以螺杆泵转子在剧烈磨损条件下运行为例,给出了对比磨损试验的结果。结果表明,在高能离子注入活化表面层之前,采用干法电抛光和电吸附等复合表面处理,使氮化层的耐磨性提高了约2倍。
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来源期刊
Journal of Friction and Wear
Journal of Friction and Wear ENGINEERING, MECHANICAL-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
1.50
自引率
28.60%
发文量
21
审稿时长
6-12 weeks
期刊介绍: Journal of Friction and Wear is intended to bring together researchers and practitioners working in tribology. It provides novel information on science, practice, and technology of lubrication, wear prevention, and friction control. Papers cover tribological problems of physics, chemistry, materials science, and mechanical engineering, discussing issues from a fundamental or technological point of view.
期刊最新文献
Dependence of Tribological Characteristics on Mechanical Properties and Phase Transformations of Zirconia-Based Composite Ceramics Determination of Ultimate Functional Clearances of a Plain Bearing under Hydrodynamic Lubrication Conditions Increasing the Wear Resistance of Structural Steel Parts by Ion Nitriding during Complex Surface Preparation Using the Dry Electropolishing Method Dependence of Gear Tooth Wear on the Misalignment Angle in Gear Meshes Synergetic Principles and Regularities of Materials Fracture under Low-Cycle Fatigue Conditions
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