Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings

The relationship between the formation of the transfer film and the tribological properties of the self-lubricating spherical plain bearing was studied at the ambient temperature of 25–145 °C. The results show that the wear, friction coefficient and friction temperature increase of the spherical pla...

Full description

Bibliographic Details
Main Authors: Qiu Ming, Tian Kai-Wen, Zhang Ya-Tao
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:Mechanics & Industry
Subjects:
Online Access:https://www.mechanics-industry.org/articles/meca/full_html/2021/01/mi200341/mi200341.html
id doaj-cc8f360c90f5414ca41bbc776b8f29eb
record_format Article
spelling doaj-cc8f360c90f5414ca41bbc776b8f29eb2021-10-07T12:00:38ZengEDP SciencesMechanics & Industry2257-77772257-77502021-01-01221110.1051/meca/2021007mi200341Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearingsQiu Minghttps://orcid.org/0000-0003-1687-9710Tian Kai-Wen0https://orcid.org/0000-0002-8553-3345Zhang Ya-Tao1School of Mechatronics Engineering, Henan University of Science and TechnologySchool of Mechatronics Engineering, Henan University of Science and TechnologyThe relationship between the formation of the transfer film and the tribological properties of the self-lubricating spherical plain bearing was studied at the ambient temperature of 25–145 °C. The results show that the wear, friction coefficient and friction temperature increase of the spherical plain bearings all decreased first and then increased with the increase of the ambient temperature. The general trend is that the bearing has the most excellent anti-friction and wear resistance at 55–85 °C. An increase in ambient temperature will accelerate the formation speed of PTFE transfer film and shorten the running-in period of the bearing, but the ambient temperature above 85 °C will shorten the duration of the PTFE transfer film, thus accelerating the bearing into the degradation period. The transfer film coverage of the liner after wear was characterized, and it was found that the transfer film coverage was the largest when the ambient temperature was 85 °C. The wear form of the bearing is mainly abrasive wear and adhesive wear, and the aramid fiber is more prone to adhesive wear. The anti-friction effect of the bearing is determined by the PTFE transfer film. Elevated ambient temperature can promote the formation of PTFE transfer film and enhance the antifriction effect, but if the ambient temperature is too high, the wear resistance of the PTFE transfer film will be reduced, thus reducing the friction reduction effect.https://www.mechanics-industry.org/articles/meca/full_html/2021/01/mi200341/mi200341.htmlself-lubrication spherical plain bearingambient temperaturefriction and weartransfer film
collection DOAJ
language English
format Article
sources DOAJ
author Qiu Ming
Tian Kai-Wen
Zhang Ya-Tao
spellingShingle Qiu Ming
Tian Kai-Wen
Zhang Ya-Tao
Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings
Mechanics & Industry
self-lubrication spherical plain bearing
ambient temperature
friction and wear
transfer film
author_facet Qiu Ming
Tian Kai-Wen
Zhang Ya-Tao
author_sort Qiu Ming
title Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings
title_short Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings
title_full Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings
title_fullStr Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings
title_full_unstemmed Effect of ambient temperature on the formation mechanism of PTFE liner transfer film of spherical plain bearings
title_sort effect of ambient temperature on the formation mechanism of ptfe liner transfer film of spherical plain bearings
publisher EDP Sciences
series Mechanics & Industry
issn 2257-7777
2257-7750
publishDate 2021-01-01
description The relationship between the formation of the transfer film and the tribological properties of the self-lubricating spherical plain bearing was studied at the ambient temperature of 25–145 °C. The results show that the wear, friction coefficient and friction temperature increase of the spherical plain bearings all decreased first and then increased with the increase of the ambient temperature. The general trend is that the bearing has the most excellent anti-friction and wear resistance at 55–85 °C. An increase in ambient temperature will accelerate the formation speed of PTFE transfer film and shorten the running-in period of the bearing, but the ambient temperature above 85 °C will shorten the duration of the PTFE transfer film, thus accelerating the bearing into the degradation period. The transfer film coverage of the liner after wear was characterized, and it was found that the transfer film coverage was the largest when the ambient temperature was 85 °C. The wear form of the bearing is mainly abrasive wear and adhesive wear, and the aramid fiber is more prone to adhesive wear. The anti-friction effect of the bearing is determined by the PTFE transfer film. Elevated ambient temperature can promote the formation of PTFE transfer film and enhance the antifriction effect, but if the ambient temperature is too high, the wear resistance of the PTFE transfer film will be reduced, thus reducing the friction reduction effect.
topic self-lubrication spherical plain bearing
ambient temperature
friction and wear
transfer film
url https://www.mechanics-industry.org/articles/meca/full_html/2021/01/mi200341/mi200341.html
work_keys_str_mv AT qiuming effectofambienttemperatureontheformationmechanismofptfelinertransferfilmofsphericalplainbearings
AT tiankaiwen effectofambienttemperatureontheformationmechanismofptfelinertransferfilmofsphericalplainbearings
AT zhangyatao effectofambienttemperatureontheformationmechanismofptfelinertransferfilmofsphericalplainbearings
_version_ 1716839435508645888