MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION

In this paper, a model for calculation of the temperature distribution in the metal tribopair bar - plane in the conditions of dry friction is developed. A model for solving of the problem of thermoelasticity for a metal bar under uniaxial tension-compression is also proposed. A simulation of the in...

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Main Authors: Pavel KOVALENKO, Svetlana PEREPELKINA, Vlada SEMENOVA
Format: Article
Language:English
Published: University of Kragujevac 2019-06-01
Series:Proceedings on Engineering Sciences
Subjects:
Online Access:http://pesjournal.net/journal/v1-n1/47.pdf
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spelling doaj-ca04f14c7ca24c4492fb36793d479cad2020-11-25T02:25:47ZengUniversity of KragujevacProceedings on Engineering Sciences2683-41112019-06-011136536910.24874/PES01.01.047MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTIONPavel KOVALENKO0Svetlana PEREPELKINA1Vlada SEMENOVA2ITMO University, Saint Petersburg, Russian FederationITMO University, Saint Petersburg, Russian FederationPeter the Great St. Petersburg Polytechnic University, Russian FederationIn this paper, a model for calculation of the temperature distribution in the metal tribopair bar - plane in the conditions of dry friction is developed. A model for solving of the problem of thermoelasticity for a metal bar under uniaxial tension-compression is also proposed. A simulation of the interaction between the bar and the plane was carried out taking into consideration various conditions, such as ambient temperature and linear dimensions of the contacting pairs. The simulation results showed that the distribution of the thermal field nonlinearly depends on the linear dimensions of the body, but the frictional heating in the first counter-body can be compensated by small changes of the linear dimensions. When calculating the stress-strain state of the bar, a non-linear dependence of the stress in the bar was obtained, which is due to the presence of contact pressure. The modelling results were proved experimentally with the use of the friction machine MTU-1. The results of the work can help us predict frictional heating for metal tribopairs and decrease its negative consequences.http://pesjournal.net/journal/v1-n1/47.pdffrictional heatingthermoelastic processesdistribution of the thermal fieldstress-strain state of tribopair elementsuniaxial tension-compression
collection DOAJ
language English
format Article
sources DOAJ
author Pavel KOVALENKO
Svetlana PEREPELKINA
Vlada SEMENOVA
spellingShingle Pavel KOVALENKO
Svetlana PEREPELKINA
Vlada SEMENOVA
MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION
Proceedings on Engineering Sciences
frictional heating
thermoelastic processes
distribution of the thermal field
stress-strain state of tribopair elements
uniaxial tension-compression
author_facet Pavel KOVALENKO
Svetlana PEREPELKINA
Vlada SEMENOVA
author_sort Pavel KOVALENKO
title MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION
title_short MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION
title_full MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION
title_fullStr MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION
title_full_unstemmed MODELLING OF THERMOELASTIC PROCESSES AND TEMPERATURE DISTRIBUTION IN METAL TRIBOPAIRS DURING DRY FRICTION
title_sort modelling of thermoelastic processes and temperature distribution in metal tribopairs during dry friction
publisher University of Kragujevac
series Proceedings on Engineering Sciences
issn 2683-4111
publishDate 2019-06-01
description In this paper, a model for calculation of the temperature distribution in the metal tribopair bar - plane in the conditions of dry friction is developed. A model for solving of the problem of thermoelasticity for a metal bar under uniaxial tension-compression is also proposed. A simulation of the interaction between the bar and the plane was carried out taking into consideration various conditions, such as ambient temperature and linear dimensions of the contacting pairs. The simulation results showed that the distribution of the thermal field nonlinearly depends on the linear dimensions of the body, but the frictional heating in the first counter-body can be compensated by small changes of the linear dimensions. When calculating the stress-strain state of the bar, a non-linear dependence of the stress in the bar was obtained, which is due to the presence of contact pressure. The modelling results were proved experimentally with the use of the friction machine MTU-1. The results of the work can help us predict frictional heating for metal tribopairs and decrease its negative consequences.
topic frictional heating
thermoelastic processes
distribution of the thermal field
stress-strain state of tribopair elements
uniaxial tension-compression
url http://pesjournal.net/journal/v1-n1/47.pdf
work_keys_str_mv AT pavelkovalenko modellingofthermoelasticprocessesandtemperaturedistributioninmetaltribopairsduringdryfriction
AT svetlanaperepelkina modellingofthermoelasticprocessesandtemperaturedistributioninmetaltribopairsduringdryfriction
AT vladasemenova modellingofthermoelasticprocessesandtemperaturedistributioninmetaltribopairsduringdryfriction
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