Adhesion-Deformation-Hydrodynamic model of friction and wear

The proposed Adhesion-Deformation-Hydrodynamic model of friction and wear is based on the relationship of elastic-deformation processes in the surfaces of curvilinear contacts with hydrodynamic regular processes of extrusion and rarefaction in lubricating layers in tribocontacts, as well as with the...

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Main Authors: Oleksandr Stelmakh, Hongyu Fu, Yiqiao Guo, Xinbo Wang, Hao Zhang, Oleksandr Dykha
Format: Article
Language:English
Published: Khmelhitsky National University, Lublin University of Technology 2022-09-01
Series:Проблеми трибології
Subjects:
Online Access:http://tribology.khnu.km.ua/index.php/ProbTrib/article/view/877
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author Oleksandr Stelmakh
Hongyu Fu
Yiqiao Guo
Xinbo Wang
Hao Zhang
Oleksandr Dykha
author_facet Oleksandr Stelmakh
Hongyu Fu
Yiqiao Guo
Xinbo Wang
Hao Zhang
Oleksandr Dykha
author_sort Oleksandr Stelmakh
collection DOAJ
description The proposed Adhesion-Deformation-Hydrodynamic model of friction and wear is based on the relationship of elastic-deformation processes in the surfaces of curvilinear contacts with hydrodynamic regular processes of extrusion and rarefaction in lubricating layers in tribocontacts, as well as with the processes of primary adhesion of friction surfaces and subsequent acts of adhesive wear. The proposed Adhesion-Deformation-Hydrodynamic model of friction and wear and its main provisions on the relationship between extrusion, rarefaction in lubricating layers and primary adhesion of friction surfaces of curvilinear contacts cover the entire load-speed range and all modes of lubrication of friction surfaces
first_indexed 2024-04-11T06:31:02Z
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publisher Khmelhitsky National University, Lublin University of Technology
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spelling doaj.art-ccc16e21383f4f6281e18265ef2db4d12022-12-22T04:40:06ZengKhmelhitsky National University, Lublin University of TechnologyПроблеми трибології2079-13722022-09-01273/105495410.31891/2079-1372-2022-105-3-49-54783Adhesion-Deformation-Hydrodynamic model of friction and wearOleksandr Stelmakh0Hongyu Fu1Yiqiao Guo2Xinbo Wang3Hao Zhang4Oleksandr Dykha5School of Mechanical Engineering, Beijing institute of technology, BeijingSchool of Mechanical Engineering, Beijing institute of technology, BeijingSchool of Mechanical Engineering, Beijing institute of technology, BeijingSchool of Mechanical Engineering, Beijing institute of technology, BeijingSchool of Mechanical Engineering, Beijing institute of technology, BeijingKhmelnitskyi National UniversityThe proposed Adhesion-Deformation-Hydrodynamic model of friction and wear is based on the relationship of elastic-deformation processes in the surfaces of curvilinear contacts with hydrodynamic regular processes of extrusion and rarefaction in lubricating layers in tribocontacts, as well as with the processes of primary adhesion of friction surfaces and subsequent acts of adhesive wear. The proposed Adhesion-Deformation-Hydrodynamic model of friction and wear and its main provisions on the relationship between extrusion, rarefaction in lubricating layers and primary adhesion of friction surfaces of curvilinear contacts cover the entire load-speed range and all modes of lubrication of friction surfaceshttp://tribology.khnu.km.ua/index.php/ProbTrib/article/view/877model of friction, lubricating layers, contact pressure, adhesion
spellingShingle Oleksandr Stelmakh
Hongyu Fu
Yiqiao Guo
Xinbo Wang
Hao Zhang
Oleksandr Dykha
Adhesion-Deformation-Hydrodynamic model of friction and wear
Проблеми трибології
model of friction, lubricating layers, contact pressure, adhesion
title Adhesion-Deformation-Hydrodynamic model of friction and wear
title_full Adhesion-Deformation-Hydrodynamic model of friction and wear
title_fullStr Adhesion-Deformation-Hydrodynamic model of friction and wear
title_full_unstemmed Adhesion-Deformation-Hydrodynamic model of friction and wear
title_short Adhesion-Deformation-Hydrodynamic model of friction and wear
title_sort adhesion deformation hydrodynamic model of friction and wear
topic model of friction, lubricating layers, contact pressure, adhesion
url http://tribology.khnu.km.ua/index.php/ProbTrib/article/view/877
work_keys_str_mv AT oleksandrstelmakh adhesiondeformationhydrodynamicmodeloffrictionandwear
AT hongyufu adhesiondeformationhydrodynamicmodeloffrictionandwear
AT yiqiaoguo adhesiondeformationhydrodynamicmodeloffrictionandwear
AT xinbowang adhesiondeformationhydrodynamicmodeloffrictionandwear
AT haozhang adhesiondeformationhydrodynamicmodeloffrictionandwear
AT oleksandrdykha adhesiondeformationhydrodynamicmodeloffrictionandwear