SELECTION OF THE OPTIMAL PARAMETERS OF THE SURFACE LAYERS OF THE STRUCTURE TRIBOSYSTEMS TAKING INTO ACCOUNT THE MECHANICAL PROPERTIES OF THE GRADIENT
Article Sidebar
Main Article Content
Abstract
The practical application of methodology to predict the optimal structure of the surface layers, formed during the operations of tribological conjunction elements, is addressed. The technique is based on the determination of the mean value of surface layers micro-hardness of the material at some local area of deformed by friction contact surfaces up to 80 mkm depth. The possibility of predicting the wear of contact surfaces, under rolling with varying degrees of slipping, from the value of the effective (“Integral”) micro-hardness, taking into account the micro-hardness of the surface of the metal layers in the process of structural adaptability at friction and gradient distribution of micro-hardness depth of the deformable layer is presented. The correlation is established between the wear of tribological conjunction elements and micro-hardness values of both tribosystems surface layers and its gradient distribution and allows to develop practical recommendations for modification of technological modes of elements of friction units.
Article Details
This work is licensed under a Creative Commons Attribution 4.0 International License.
О. MIKOSYANCHIK, National Aviation University, Kyiv, Ukraine
канд. техн. наук, доц.
В. LYASHENKO, G.S. Pisarenko Institute for Problems of Strength, Kiyv, Ukraine
д-р техн. наук, проф.
N. KUZІN, Львовский филиал Днепропетровского национального университета железнодорожного транспорта им. академика В. Лазаряна, Украина
д-р техн. наук, доц.
A. DUDAN, Polotsk State University
канд. техн. наук, доц.
References
Оптимизация технологии нанесения покрытий по критериям прочности и износостойкости / Б.А. Ляшенко [и др.] ; под ред. В.В. Харченко. – К. : Ин-т проблем прочности, 2010. – 193 с.
Ognjanovic М. Progressive Gear Teeth Wear and Failure Probability Modeling / М. Ognjanovic // Tribology in industry. – 2004. – Vol. 26, № 3&4. – P. 44–49.
Проблема оценки износа сопряжений зубчатых колес транспортных машин и энергетического оборудования / А.П. Бурдуков [и др.] // Ползуновский вестник. – 2010. – № 1. – С. 99–105.
Кинетика изнашивания контактных поверхностей при использовании добавки фуллерена С60 к моторному маслу / Н.Ф. Дмитриченко [и др.] // Трение и износ. – 2009. – Т. 30, № 6. – С. 550–555.
Surfactant effects on the residual internal stresses in hydrated mineral binders / E.D. Shchukin [et al.] // Abstracts of the 13-th International Symposium on Surfactants in Solution, Gainesville, Florida, June 11–16, 2000. – Р. 163.
Механизм формирования защитного граничного смазочного слоя / Б.И. Ковальский [и др.] // Изв. ТулГУ : Технические науки. – 2014. – Вып. 3. – С. 26–32.
Hutchings, I.M. Tribology: friction and wear of engineering materials / I.M. Hutchings ; ed. Butterworth. – Heinemann, Oxford, 1992. – P. 58–76.
Magalhães, L. Austempered ductile iron (ADI) gears : Power loss, pitting and micropitting / L. Magalhães, J. Seabra and R. Martins // Wear. – 2007. – Vol. 264. – P. 839–849.
Cheng, H.S. Elastohydrodynamic Lubrication, in Handbook of lubrication / H.S. Cheng, E.R. Booser ; Ed. CRC Pres : Boca Raton, 1983. – P. 155–160.
A fracture mechanics model for the analysis of micro-pitting in regard to lubricated rolling – sliding contact problems / B. Zafosnik [et al.] // International Journal of Fatigue. – 2007. – Vol. 29, Iss. 9–11. – P. 1950–1958.
Sadeghi, F. Subsurface Stresses in Rolling / Sliding Machine Components / F. Sadeghi, C. Ping Sui // International Compressor Engineering Conference, 1988. – P. 680.
Tobie, Т. Case Depth and Load Capacity of Case-Carburized Gears / T. Tobie, P. Oster, B. Höhn // Gear Technology. – 2002. – March/April. – P. 31–38.
Пристрій для оцінки триботехнічних характеристик трибоелементів : корисна модель UA 88748 / О.О. Мікосянчик. – Опубл. 25.03.14.
Выбор критерия при оценке параметров прочности функционально-градиентных конструкций / Н.О. Кузин [и др.] // Технологічний аудит та резерви виробництва. – 2015. – № 6/1(26). – С. 4–8.
Most read articles by the same author(s)
- V. SENYUT, V. ZHORNIK, A. PARNITSKY, E. MOSUNOV, A. DUDAN, THERMOBARIC SINTERING OF DIAMOND MICROPOWDERS MODIFIED BY SILICON AND TITANIUM, Vestnik of Polotsk State University. Part B. Industry. Applied Sciences: No. 3 (2016)
- A. KASTRUK, A. DUDAN, T. VIGERINA, IMPROVEMENT OF TECHNOLOGY TRAINING OF RECONSTRUCTION OF DETAILS DUE TO THEIR CLASSIFICATION, Vestnik of Polotsk State University. Part B. Industry. Applied Sciences: No. 11 (2015)
- M. BELOTSERKOVSKY, A. SOSNOVSKY, A. YALOVIK, A. DUDAN, ESTIMATION OF USE THE HYPERSONIC METALLIZATION TO RESTORATION OF HYDRAULIC SYSTEMS ELEMENTS, Vestnik of Polotsk State University. Part B. Industry. Applied Sciences: No. 11 (2015)
- A. DUDAN, A. HUSHCHA, METHODS AND MEANS TRIBOMODIFITSIROVANIYA FRICTION, Vestnik of Polotsk State University. Part B. Industry. Applied Sciences: No. 11 (2015)
- V. NICOLAICHUK, A. DUDAN, E. KOZHEVNIKOVA, L. LOPATA, DETERMINING THE OPTIMAL TIMING OF THE ELECTROCONTACT SINTERING PROCESS FOR POWDER COATINGS, Vestnik of Polotsk State University. Part B. Industry. Applied Sciences: No. 3 (2015)
- A. KASTRUK, A. DUDAN, T. VIGERINA, RESTORATION OF DETAILS OF CARS TAKING INTO ACCOUNT INFLUENCE OF HEATPHYSICAL AND MECHANICAL PROPERTIES OF MATERIALS, Vestnik of Polotsk State University. Part B. Industry. Applied Sciences: No. 3 (2015)