Mechanical model and contact properties of double row slewing ball bearing for wind turbine
In this paper, the mechanical models of large-scale double row slewing ball bearing considering combined loading conditions were presented based on the rigid rings and flexible rings, respectively. And the contact properties between the ball and raceway were studied. These workflows for the calculat...
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doaj-a5e937b0e0f74c9580c932f68f5ff3442021-10-03T07:42:43ZengDe GruyterReviews on Advanced Materials Science1605-81272021-04-0160111212610.1515/rams-2021-0017Mechanical model and contact properties of double row slewing ball bearing for wind turbineZhang Hongwei0Chen Shuguang1Dou Yantao2Fan Hengming3Wang Yanqin4School of Mechanical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, China; Jingye Key Laboratory of New Energy Technology and Equipment Research and Innovation Center of Beijing Institute of Petrochemical Technology, ChinaSchool of Mechanical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, ChinaSchool of Mechanical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, China; Jingye Key Laboratory of New Energy Technology and Equipment Research and Innovation Center of Beijing Institute of Petrochemical Technology, ChinaSchool of Mechanical Engineering, Beijing Institute of Petrochemical Technology, Beijing, 102617, China; Jingye Key Laboratory of New Energy Technology and Equipment Research and Innovation Center of Beijing Institute of Petrochemical Technology, ChinaJingye Key Laboratory of New Energy Technology and Equipment Research and Innovation Center of Beijing Institute of Petrochemical Technology, ChinaIn this paper, the mechanical models of large-scale double row slewing ball bearing considering combined loading conditions were presented based on the rigid rings and flexible rings, respectively. And the contact properties between the ball and raceway were studied. These workflows for the calculation were described and programmed by MATLAB. The load distributions of slewing bearing for 2MW wind turbine were presented. The results indicated that the load distribution with the ideal stiff assumption differs from the load distribution determined by taking into account the flexibility of rings. With flexible rings, the magnitude of contact force is less than that of the rigid rings. The influences of the initial contact angle, the coefficient of groove curvature radius, the clearance on maximum contact force were analyzed and some suggestions have been discussed. These parameters have significant effects on the load distribution. The maximum contact force decreases with coefficient of groove curvature radius decrease. A three dimensional finite element model of the slewing bearing is established and analyzed. The simulated results are compared with that of mechanical models.https://doi.org/10.1515/rams-2021-0017double row slewing bearingmechanical modelcontactload distribution |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhang Hongwei Chen Shuguang Dou Yantao Fan Hengming Wang Yanqin |
spellingShingle |
Zhang Hongwei Chen Shuguang Dou Yantao Fan Hengming Wang Yanqin Mechanical model and contact properties of double row slewing ball bearing for wind turbine Reviews on Advanced Materials Science double row slewing bearing mechanical model contact load distribution |
author_facet |
Zhang Hongwei Chen Shuguang Dou Yantao Fan Hengming Wang Yanqin |
author_sort |
Zhang Hongwei |
title |
Mechanical model and contact properties of double row slewing ball bearing for wind turbine |
title_short |
Mechanical model and contact properties of double row slewing ball bearing for wind turbine |
title_full |
Mechanical model and contact properties of double row slewing ball bearing for wind turbine |
title_fullStr |
Mechanical model and contact properties of double row slewing ball bearing for wind turbine |
title_full_unstemmed |
Mechanical model and contact properties of double row slewing ball bearing for wind turbine |
title_sort |
mechanical model and contact properties of double row slewing ball bearing for wind turbine |
publisher |
De Gruyter |
series |
Reviews on Advanced Materials Science |
issn |
1605-8127 |
publishDate |
2021-04-01 |
description |
In this paper, the mechanical models of large-scale double row slewing ball bearing considering combined loading conditions were presented based on the rigid rings and flexible rings, respectively. And the contact properties between the ball and raceway were studied. These workflows for the calculation were described and programmed by MATLAB. The load distributions of slewing bearing for 2MW wind turbine were presented. The results indicated that the load distribution with the ideal stiff assumption differs from the load distribution determined by taking into account the flexibility of rings. With flexible rings, the magnitude of contact force is less than that of the rigid rings. The influences of the initial contact angle, the coefficient of groove curvature radius, the clearance on maximum contact force were analyzed and some suggestions have been discussed. These parameters have significant effects on the load distribution. The maximum contact force decreases with coefficient of groove curvature radius decrease. A three dimensional finite element model of the slewing bearing is established and analyzed. The simulated results are compared with that of mechanical models. |
topic |
double row slewing bearing mechanical model contact load distribution |
url |
https://doi.org/10.1515/rams-2021-0017 |
work_keys_str_mv |
AT zhanghongwei mechanicalmodelandcontactpropertiesofdoublerowslewingballbearingforwindturbine AT chenshuguang mechanicalmodelandcontactpropertiesofdoublerowslewingballbearingforwindturbine AT douyantao mechanicalmodelandcontactpropertiesofdoublerowslewingballbearingforwindturbine AT fanhengming mechanicalmodelandcontactpropertiesofdoublerowslewingballbearingforwindturbine AT wangyanqin mechanicalmodelandcontactpropertiesofdoublerowslewingballbearingforwindturbine |
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