Peer-reviewed articles 17,970 +



Title: CLASSIFICATION OF NANOBEARINGS AND MATHEMATICAL FORMULATION OF THEIR OPERATION

CLASSIFICATION OF NANOBEARINGS AND MATHEMATICAL FORMULATION OF THEIR OPERATION
Alexander Vorobyov; Kirill Vorobyev; Zhamaletdin Mamasaidov; Alawiyeh Mohamad Ali; Tatiana Chekushina
10.5593/sgem2024/6.1
1314-2704
English
24
6.1
•    Prof. DSc. Oleksandr Trofymchuk, UKRAINE 
•    Prof. Dr. hab. oec. Baiba Rivza, LATVIA
Nanomechanical systems necessitate components with unparalleled precision and minimal frictional resistance to achieve optimal performance. Nanobearings represent a critical class of components that facilitate rotational or linear motion at the nanoscale. This paper presents a comprehensive classification of nanobearings, encompassing their structural attributes, materials employed, and operational mechanisms. Additionally, it provides a detailed mathematical formulation that describes the static and dynamic behavior of nanobearings, including equations for load capacity, friction torque/force, and stiffness. Numerical examples illustrate the application of these mathematical models in analyzing the performance of diverse nanobearing types. The findings provide invaluable insights for designing and optimizing nanobearing-based devices utilized in a wide range of applications spanning precision engineering, microfluidics, and biomedical engineering domains.
This expanded version delves deeper into the significance of nanobearings in nanomechanical systems and highlights the crucial role they play in enabling precise and low-friction motion at the nanoscale. It also emphasizes the importance of the mathematical formulation presented in understanding and predicting the behavior of nanobearings, which is essential for designing and optimizing nanobearing-based devices for various applications.
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[3] Vorobyov A.E., Vorobyev K.A., Dzhumagaliev N.I. Nanodiamonds of petroleum origin // "Ecology and the oil and gas complex": Collection of materials of the International scientific and practical Conference. Atyrau: Atyrau University of Oil and Gas, 2018. pp. 272-274.
[4] Mai T. N. Lianlian D. Tetsu Y. Control of nanoparticles synthesized via vacuum sputter deposition onto liquids: a review Soft Matter 2022 18 19 47 . DOI: 10.1039/D1SM01002F
[5] Gahlawat G. Chaudhary A. R. A review on the biosynthesis of metal and metal salt nanoparticles by microbes RSC Adv. 2019 9 23 12944 12967 . DOI: 10.1039/C8RA10483B [6] Vorobyov A.E., Kozhogulov K.C., Karimov E.M. Zher koch kulordun talaa izildoolor (Field studies of landslides) // Izvestiya Osh Technological University (Kyrgyzstan). 2023. No. 2-1. pp. 214-221, ISSN: 1694-660X.
[7] Vorobyov A.E., Kozhogulova G.K. Possibilities and conditions of formation of nanoparticles in rock mass // Gorny vestnik of Uzbekistan, No. 1 (92). 2023. pp. 71-76, ISSN 2181-7383, DOI: 10.54073/gv.2022.1.92.015.
[8] Vorobyov A.E., Kozhogulova G.K. Identification of the basic mechanisms and main features of the movement of landslide geomass // Gorny vestnik of Uzbekistan, No. 3(90). 2022. pp. 20-26, ISSN 2181-7383, DOI: 10.54073/gv.2022.3.90.004.
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[11] Jiang T. Wang X. Zhou J. Chen D. Zhao Z. Hydrothermal synthesis of Ag@MSiO2@Ag three core–shell nanoparticles and their sensitive and stable SERS properties Nanoscale. 2016 8 9 4908 4914 . DOI: 10.1039/C6NR00006A
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[13] Bruno E. Strano V. Mirabella S. Donato N. Leonardo S. G. Neri G. Comparison of the Sensing Properties of ZnO nanowalls-based sensors toward low concentrations of CO and NO2 Chemosensors. 2017 5 3 20 . DOI: 10.3390/chemosensors5030020
[14] Kumar N. Reddy L. Parashar V. Ngilla J. C. Controlled synthesis of microsheets of ZnAl layered double hydroxides hexagonal nanoplates for efficient removal of Cr(VI) ions and anionic dye from water J Environ Chem Eng. 2017 5 2 1718 1731 . DOI: 10.1016/j.jece.2017.03.014
[15] Prost, J.; Cihak-Bayr, U.; Neac?u, I.A.; Grundtner, R.; Pirker, F.; Vorlaufer, G. Semi-Supervised Classification of the State of Operation in Self-Lubricating Journal Bearings Using a Random Forest Classifier. Lubricants 2021, 9, 50. https://doi.org/10.3390/lubricants9050050
The study was supported by a grant from the Russian Science Foundation № 23-27-00444, https://rscf.ru/project/23-27-00444/, 2023.
conference
Proceedings of 24th International Multidisciplinary Scientific GeoConference SGEM 2024
24th International Multidisciplinary Scientific GeoConference SGEM 2024, 1 - 7 July, 2024
Proceedings Paper
STEF92 Technology
International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM
SWS Scholarly Society; Acad Sci Czech Republ; Latvian Acad Sci; Polish Acad Sci; Russian Acad Sci; Serbian Acad Sci and Arts; Natl Acad Sci Ukraine; Natl Acad Sci Armenia; Sci Council Japan; European Acad Sci, Arts and Letters; Acad Fine Arts Zagreb Croatia; Croatian Acad Sci and Arts; Acad Sci Moldova; Montenegrin Acad Sci and Arts; Georgian Acad Sci; Acad Fine Arts and Design Bratislava; Russian Acad Arts; Turkish Acad Sci.
11-16
1 - 7 July, 2024
website
9777
nanoparticles, natural nanobearings, gravitational forces, electromagnetic forces, mass transport

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