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RV减速器主支撑角接触球轴承混合润滑分析 被引量:6

Mixed Lubrication Analysis of the Main Supporting Angular Contact Ball Bearing of RV Reducer
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摘要 针对RV减速器角接触球轴承承受预紧力、轴向力和径向力等联合外载荷作用的工况,分析得出了内、外圈滚道接触界面的接触区几何参数和接触载荷.在此基础上,综合考虑了角接触球轴承的接触区宏观几何、接触载荷、真实表面粗糙度、瞬态效应等因素,建立了角接触球轴承混合润滑数学模型,分析了在不同工况下角接触轴承的润滑状况及表面以下应力分布.结果表明:随着载荷的不断增加,钢球与内圈沟道之间的油膜厚度会不断减少,导致干接触面积迅速扩大,接触点表面以下最大应力增大;转速的增加会使油膜变厚,干接触面积缩小.该结果对角接触球轴承的实际工程应用具有重要借鉴意义. Under the joint force of pre - tightening force, axial and radial force, the geometric parameters of the contact area as well as the contact load of both inner and outer ring raceway contact interface were analyzed. By considering the macroscopic geometry of the contact area, the contact load, the real tooth surface roughness and transient effect of the angular contact ball bearing, a mixed lubrication model was established. The lubrication condition and subsurface yon Mises stress of the bearing were calculated at different working condition. The results show that average film thickness between the ball and inner ring raceway decreased quickly,the dry contact area and subsurface yon Mises stress increased significantly with the average film bearing. t of normal load. The increase in speed reduced dry contact area and subsurface yon Mises stress but increased thickness. The results are of great significance to the engineering application of the angular contact ball
出处 《摩擦学学报》 EI CAS CSCD 北大核心 2015年第4期454-461,共8页 Tribology
基金 国家自然科学基金项目(51435001 51375506) 高等学校博士学科点专项科研基金(2012018113001) 重庆市"两江学者"计划专项经费和中央高校基本科研业务费(2014SCU11009)资助~~
关键词 RV减速器 角接触球轴承 接触角 载荷分布 混合润滑 RV reducer, angular contact ball bearing, contact angle,load distribution, mixed lubrication
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  • 1Deng J Y, Chen J P. On the RV - AC drive in robots [ M ]. IFAC IACA' 95, Elsevier Science Ltd, Oxford, UK, 1995.
  • 2丁长安,常珺,黎桂华.球轴承基本受载变形特性分析[J].润滑与密封,2006,31(8):75-77. 被引量:5
  • 3刘显军,洪军,王军,刘志刚.联合外载荷作用下角接触球轴承内部载荷分布和变形的数值迭代计算[J].机床与液压,2012,40(3):1-4. 被引量:5
  • 4刘永红,高创宽.滚动轴承热弹流润滑数值分析[J].机械工程与自动化,2008(1):34-36. 被引量:2
  • 5Zhu D, Cheng H S. Effect of surface roughness on the point contact EHL [ J ]. ASME J Tribol, 1988,110 : 32 - 37.
  • 6Pair N, Cheng H S. Effect of surface roughness orientation on the central film thickness in EHD contacts [ J ]. Proceedings of the Fifth Leeds - Lyon Symposium on Tribology, by Mechanical Engineering Publications, Bury St Edmunds, UK, 1979 : 15 - 21.
  • 7Goglia P R, Cusano C, Conry T F. The effects of surface irregularities on the elastohydro - dynamic lubrication of sliding line contacts, part I - Single Irregularities, part II - Wavy Surfaces[ J]. ASME J Tribol, 1984,106 : 104 - 119.
  • 8Lubrecht A A. The numerical solution of elastohydrodynamic lubricated line and point contact problems using multi - grid techniques [ D ]. University of Twente, the Netherlands, 1987.
  • 9Kweh C C, Evans H P, Sindle R W. Micro -elastohydrodynamic lubrication of an elliptical contact with transverse and 3 - dimensional roughness [ J ]. ASME J Tribol, 1989,111:577 - 584.
  • 10Jiang X, Hua D Y, Cheng H S, et al. A mixed elastohydrodynamic lubrication model with asperity contact [ J 1. ASME J Tribol, 1999,121:481 - 491.

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