Improvement of Operational Parameters for Precision Rolling Bearings by Cleaning Working Surfaces from Micro Pollution of Various Nature

Q3 Environmental Science Tikrit Journal of Engineering Sciences Pub Date : 2023-01-01 DOI:10.21272/jes.2023.10(1).a5
A. Stelmakh, R. Kostyunik, O. Mikosianchyk, A. Kushchev, T. Ibraimov, O. Sydorenko, N. Zaichuk, S. Shymchuk
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Abstract

In manufacturing high-precision rolling bearings for aviation and urban machinery, the key tasks are to reduce the cost of production of such products, increase their efficiency and resource, and ensure their reuse after performing appropriate repair work. The results of many years of research show that these tasks can be successfully solved by cleaning the working surfaces of the parts of such precision tribonodes by non-contact pulse methods, particularly by using variable electromagnetic fields. The article describes the process of deep cleaning the working surfaces of parts of various high-precision ball bearings (from overall to miniature). During this cleaning, ferromagnetic and other impurities in the form of micro-, sub-micro- and nanoparticles were removed on a developed stand that can be used on an industrial scale. Further studies of cleaned bearings showed improved operational parameters such as reduced noise and vibration and the degree of magnetization. To achieve the specified results, appropriate cleaning methods were developed and tested.
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通过清除各种性质的微污染改善精密滚动轴承的工作参数
在制造用于航空和城市机械的高精度滚动轴承时,关键任务是降低此类产品的生产成本,提高其效率和资源,并确保在进行适当的修复工作后重新使用。多年的研究结果表明,通过非接触脉冲方法,特别是使用可变电磁场,可以成功地清洁这些精密三极体零件的工作表面。本文介绍了各种高精度球轴承零件工作表面的深度清洗过程(从整体到微型)。在清洗过程中,铁磁性和其他微、亚微和纳米颗粒形式的杂质在可用于工业规模的先进支架上被去除。对清洁轴承的进一步研究表明,改进了操作参数,如降低了噪音和振动以及磁化程度。为了达到规定的结果,开发和测试了适当的清洁方法。
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来源期刊
CiteScore
1.50
自引率
0.00%
发文量
56
审稿时长
8 weeks
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