A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect

A dynamics model of high-speed angular contact ball bearings under the lubrication condition is established, in the calculation of contact deformation and contact stiffness between ball bearing and inner/outer ring, the influence of lubricating oil entrainment and squeeze during high-speed rotation...

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Main Authors: Fengxia Lu, Zhiqiang Zhao, Wenbin Pan, Heyun Bao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2021-09-01
Series:Jixie chuandong
Subjects:
Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.09.015
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author Fengxia Lu
Zhiqiang Zhao
Wenbin Pan
Heyun Bao
author_facet Fengxia Lu
Zhiqiang Zhao
Wenbin Pan
Heyun Bao
author_sort Fengxia Lu
collection DOAJ
description A dynamics model of high-speed angular contact ball bearings under the lubrication condition is established, in the calculation of contact deformation and contact stiffness between ball bearing and inner/outer ring, the influence of lubricating oil entrainment and squeeze during high-speed rotation is considered. Through the coupling iteration of contact angle and contact stiffness, the calculation method of axial and radial stiffness of high-speed angular contact ball bearings considering lubrication effect is obtained. The results show that after considering the lubrication effect, the contact angle between the ball and the inner/outer ring decreases, and the axial/radial stiffness of the bearing increases. The increase in the axial load increases the axial/radial stiffness, and the lower the axial load, the more obvious the effect of lubricating oil. The increase in the radial load makes the axial stiffness increase and the radial stiffness decrease. As the number of rollers increases,the axial/radial stiffness increases,and the effect of lubricating oil is more obvious; Compared with 4019 lubricant, 4106 lubricant increases bearing axial/radial stiffness. The axial/radial stiffness of ceramic ball bearings is greater than steel ball bearings, and has an approximately linear relationship with the speed.
format Article
id doaj-art-7273d36b77e74134a0c4566ba3187a0d
institution Kabale University
issn 1004-2539
language zho
publishDate 2021-09-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-7273d36b77e74134a0c4566ba3187a0d2025-01-10T14:47:53ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392021-09-01459710418848653A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication EffectFengxia LuZhiqiang ZhaoWenbin PanHeyun BaoA dynamics model of high-speed angular contact ball bearings under the lubrication condition is established, in the calculation of contact deformation and contact stiffness between ball bearing and inner/outer ring, the influence of lubricating oil entrainment and squeeze during high-speed rotation is considered. Through the coupling iteration of contact angle and contact stiffness, the calculation method of axial and radial stiffness of high-speed angular contact ball bearings considering lubrication effect is obtained. The results show that after considering the lubrication effect, the contact angle between the ball and the inner/outer ring decreases, and the axial/radial stiffness of the bearing increases. The increase in the axial load increases the axial/radial stiffness, and the lower the axial load, the more obvious the effect of lubricating oil. The increase in the radial load makes the axial stiffness increase and the radial stiffness decrease. As the number of rollers increases,the axial/radial stiffness increases,and the effect of lubricating oil is more obvious; Compared with 4019 lubricant, 4106 lubricant increases bearing axial/radial stiffness. The axial/radial stiffness of ceramic ball bearings is greater than steel ball bearings, and has an approximately linear relationship with the speed.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.09.015Angular contact ball bearingLubricationFriction pairContact stiffnessDynamics
spellingShingle Fengxia Lu
Zhiqiang Zhao
Wenbin Pan
Heyun Bao
A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect
Jixie chuandong
Angular contact ball bearing
Lubrication
Friction pair
Contact stiffness
Dynamics
title A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect
title_full A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect
title_fullStr A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect
title_full_unstemmed A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect
title_short A Calculation Method of Angular Contact Ball Bearing Contact Stiffness Considering Lubrication Effect
title_sort calculation method of angular contact ball bearing contact stiffness considering lubrication effect
topic Angular contact ball bearing
Lubrication
Friction pair
Contact stiffness
Dynamics
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2021.09.015
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