CONTACT MODEL AND EVALUATION OF FRICTION FORCE MOLECULAR COMPONENT
- Авторлар: Tikhomirov V.P.1, Mikhail G. S.G.1, Izmerov M.A.1
-
Мекемелер:
- Bryansk State Technical University
- Шығарылым: № 6 (144) (2023)
- Беттер: 20-27
- Бөлім: Surface layer quality, contact interaction, friction and wear of machine parts
- URL: https://bakhtiniada.ru/2223-4608/article/view/350082
- DOI: https://doi.org/10.30987/2223-4608-2023-20-27
- ID: 350082
Дәйексөз келтіру
Толық мәтін
Аннотация
According to the level of the measurement scale, the friction force changes its nature and is determined by different depend-encies. The paper views a procedure for determining a friction force molecular component based on the evaluation of specif-ic shearing resistance of molecular links un-der the elastic interaction of a silicon nitride cantilever needle having a steel sample, used for scanning a section of a sample surface in the nanometer range with an atomic force microscope (AFM) «FemtoScan» under low loads. A sensitive element (measuring device) of an atomic force microscope acts as a force sensor for measuring both: a normal load very roughly, and a change in the force, applied to the cantilever under known stiffness, including the value of the cantilever rod form alteration. It also changes the load on the sensitive element (to assess the mo-lecular component of the friction force, the route of the «smoothest» surface itself was chosen). The paper also provides an analytical assessment of the contact interaction parameters of a cantilever needle in a nano-scale, rep-resented as a spheri-cal indenter, with an elastic half-space as a surface under study, based on the Hertz theory. Analysis of the calculation and experiment data on measuring the resistance force of the indenter during scanning of the surface under study, showed good convergence of the results with a deviation of even values from the experimental data of no more than 7,5 %. Calculations using the established formulas showed that with an increase in the load on the contact at the nanoscale, the coefficient of friction decreases due to a faster growth of contact spots in the elastic state (provided that angularity of inequalities related to sub-roughness remains constant), which was also confirmed in the course of the experiment.
Негізгі сөздер
Авторлар туралы
Victor Tikhomirov
Bryansk State Technical University
Email: dm-bgtu@yandex.ru
ORCID iD: 0000-0002-7269-8175
the Department “Pipeline Transportation Systems”, professor, doctor of technical sciences
Shalygin Mikhail G.
Bryansk State Technical University
Email: migshalygin@yandex.ru
ORCID iD: 0000-0002-8102-9918
Scopus Author ID: 57193351438
ResearcherId: N-7784-2016
Department of Turbine Engineering and Pipeline Transport Systems, docent, doctor of technical sciences
Mikhail Izmerov
Bryansk State Technical University
Хат алмасуға жауапты Автор.
Email: m.izmerov@yandex.ru
ORCID iD: 0000-0003-4170-6184
Dep. “Pipeline Transportation Systems”, docent, candidate of technical sciences
Әдебиет тізімі
Трошин А.А. Математическая модель измере-ния шероховатости сферическим щупом / А.А. Трошин, О.В. Захаров / Вестник БГТУ, 2020. №2 (87). С. 28-33. Буяновский И. А., Левченко В. А., Самусенко В.Д. Исследование структуры, состава и трибологиче-ских характеристик наноструктурных монокристалли-ческих покрытий, полученных ионно-плазменным ме-тодом // Наукоёмкие технологии в машиностроении. 2022. № 4 (130). С. 41-48. doi: 10.30987/2223-4608-2022-4-41-48; EDN: XNVUCC Тихомиров В.П., Измеров М.А., Кузнецов С.В., Горностаева А.Г. Трение металл-металлических поверхностей // Наукоёмкие технологии в машино-строении. 2022. № 3 (129). С. 40-48. doi: 10.30987/2223-4608-2022-3-40-48; EDN: TQWTDR Tabor D. Friction - the present state of our un-derstanding. // ASME journal of lubrication technology, 1981. Vol. 103. pp. 169-179. Greenwood J.A. Contact of nominally flat surfaces / J.A. Greenwood, J.B.P. Williamson / Proceed-ings of the royal society of London. Series A, Mathematical and physical sciences, 1966. Vol. 295. № 1442. pp. 300-319. Greenwood J.A. The contact of two nominally flat rough surfaces / J.A. Greenwood, J.H. Tripp / Proceedings of the institution of mechanical engineers, 1971. № 185. pp. 625-633. Adams G.G. A nano-scale multi-asperity contact and friction model / G.G. Adams, S. Müftü, N.M. Azhar / Journal of tribology, ASME transactions, 2002. P. 1-21. doi: 10.1115/IMECE2002-39305; EDN: XXOPDK Измеров М.А. Изнашивание фрактальных по-верхностей при малых нагрузках / М.А. Измеров, В.П. Тихомиров, А.Г. Горностаева // Сборник научных ста-тей 14-ой международной научно-технической конфе-ренции, посвященной 50-летию Брянской научной школы технологов-машиностроителей. Брянск, 2022. С. 38-42. Маджумдар А. Фрактальная модель упруго-пластического контакта шероховатых поверхностей / А. Маджумдар, Б. Бхушан // Современное машино-строение. Сер. Б., 1991. № 6. С.11−23. Измеров М.А., Тихомиров В.П. Трение фрак-тальных поверхностей // Транспортное машинострое-ние. 2022. № 1-2 (1-2). С. 20-28.
Қосымша файлдар


