Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools

In high-speed machine tools, the friction heat of bearings will cause the deformation of the rolling body and the "burning shaft", which will reduce the fatigue life of bearings and affect the normal operation of equipment. Taking high-speed angular contact ball bearing 7003C as an example...

Full description

Saved in:
Bibliographic Details
Main Authors: Li Jiangshan, Yuan Yong, Hao Daqing, Chen Houqing, Zhang Zhanli
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2023-09-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.09.018
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1841546979005431808
author Li Jiangshan
Yuan Yong
Hao Daqing
Chen Houqing
Zhang Zhanli
author_facet Li Jiangshan
Yuan Yong
Hao Daqing
Chen Houqing
Zhang Zhanli
author_sort Li Jiangshan
collection DOAJ
description In high-speed machine tools, the friction heat of bearings will cause the deformation of the rolling body and the "burning shaft", which will reduce the fatigue life of bearings and affect the normal operation of equipment. Taking high-speed angular contact ball bearing 7003C as an example, based on the quasi-static analysis of high-speed angular contact ball bearings, the force analysis of the bearing is carried out, and the friction power calculation model of the bearing is established by using the local method. Based on the heat transfer theory, the heat transfer model of the bearing system is established. The temperature rise model of the bearing system is established and simulated by using the finite element software, and the effects of rotational speed, axial force and lubricating oil temperature on the temperature rise of the bearing system are analyzed. Finally, the temperature rise test is designed and compared with the theoretical simulation. The results show that the temperature rise of the bearing system increases with the increase of the bearing speed and the axial force, and the temperature rise is the highest at the steel ball, followed by the inner ring, and finally the outer ring. Lubricating oil temperature plays an important role in bearing system temperature changes. The maximum error rate between the test results and the simulation results is 11.66%, which verifies the rationality of the theoretical calculation and the model simulation, and provides some reference value for the study of bearing fatigue life.
format Article
id doaj-art-516fe8ae96c24b878e22b24183a3f35e
institution Kabale University
issn 1004-2539
language zho
publishDate 2023-09-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-516fe8ae96c24b878e22b24183a3f35e2025-01-10T14:58:48ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392023-09-014712913641950708Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine ToolsLi JiangshanYuan YongHao DaqingChen HouqingZhang ZhanliIn high-speed machine tools, the friction heat of bearings will cause the deformation of the rolling body and the "burning shaft", which will reduce the fatigue life of bearings and affect the normal operation of equipment. Taking high-speed angular contact ball bearing 7003C as an example, based on the quasi-static analysis of high-speed angular contact ball bearings, the force analysis of the bearing is carried out, and the friction power calculation model of the bearing is established by using the local method. Based on the heat transfer theory, the heat transfer model of the bearing system is established. The temperature rise model of the bearing system is established and simulated by using the finite element software, and the effects of rotational speed, axial force and lubricating oil temperature on the temperature rise of the bearing system are analyzed. Finally, the temperature rise test is designed and compared with the theoretical simulation. The results show that the temperature rise of the bearing system increases with the increase of the bearing speed and the axial force, and the temperature rise is the highest at the steel ball, followed by the inner ring, and finally the outer ring. Lubricating oil temperature plays an important role in bearing system temperature changes. The maximum error rate between the test results and the simulation results is 11.66%, which verifies the rationality of the theoretical calculation and the model simulation, and provides some reference value for the study of bearing fatigue life.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.09.018Angular contact ball bearingQuasi-staticsHeat generationTemperature rise modelTemperature rise test
spellingShingle Li Jiangshan
Yuan Yong
Hao Daqing
Chen Houqing
Zhang Zhanli
Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools
Jixie chuandong
Angular contact ball bearing
Quasi-statics
Heat generation
Temperature rise model
Temperature rise test
title Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools
title_full Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools
title_fullStr Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools
title_full_unstemmed Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools
title_short Analysis and Experimental Study on Bearing Temperature Rise of High Speed Machine Tools
title_sort analysis and experimental study on bearing temperature rise of high speed machine tools
topic Angular contact ball bearing
Quasi-statics
Heat generation
Temperature rise model
Temperature rise test
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2023.09.018
work_keys_str_mv AT lijiangshan analysisandexperimentalstudyonbearingtemperatureriseofhighspeedmachinetools
AT yuanyong analysisandexperimentalstudyonbearingtemperatureriseofhighspeedmachinetools
AT haodaqing analysisandexperimentalstudyonbearingtemperatureriseofhighspeedmachinetools
AT chenhouqing analysisandexperimentalstudyonbearingtemperatureriseofhighspeedmachinetools
AT zhangzhanli analysisandexperimentalstudyonbearingtemperatureriseofhighspeedmachinetools