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基于因素分离法的脂润滑深沟球轴承摩擦研究

Study on Friction of Grease Lubricated Deep Groove Ball Bearing by Factor Separation Method

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【作者】 林福严王绥振代田程洁

【Author】 LIN Fuyan;WANG Suizhen;DAI Tian;CHENG Jie;School of Mechanical Electronic & Information Engineering, China University of Mining and Technology (Beijing);Key Laboratory of Intelligent Mining and Robotics, Ministry of Emergency Management, China University of Mining and Technology(Beijing);

【通讯作者】 程洁;

【机构】 中国矿业大学(北京)机电与信息工程学院中国矿业大学(北京)煤矿智能化与机器人应用应急管理部重点实验室

【摘要】 滚动轴承的摩擦是在一个复杂的系统中由多种因素共同作用而产生的。为研究轴承中各类摩擦副的摩擦占总摩擦的比重,以矿山带式运输机托辊常用的6204脂润滑深沟球轴承为例,分析脂润滑深沟球轴承摩擦阻力的主要来源,将轴承摩擦分为滚动摩擦、滑动摩擦、黏性摩擦以及密封摩擦,用因素分离法分别开展同批次6204脂润滑深沟球轴承的带密封、无密封、无润滑以及微润滑条件下的摩擦实验,通过逐次剥离部分因素分析各摩擦分量对摩擦总量的影响。实验结果表明:在实验的载荷和转速条件下,密封摩擦占轴承全部摩擦的5%~18%,黏性摩擦占无密封轴承总摩擦的64%~85%;除去这些黏性摩擦之外,滑动摩擦也是滚动轴承摩擦中的重要分量。

【Abstract】 The friction of rolling bearing is produced by many factors in a complex system.In order to study the proportion of the friction of various friction pairs in the total friction of bearings, taking the 6204 grease lubricated deep groove ball bearings commonly used in idles of mine belt conveyor as an example, the main sources of friction resistance of grease lubricated deep groove ball bearings were analyzed, and the bearing friction was divided into rolling friction, sliding friction, viscous friction and sealing friction.The friction experiments were carried out under sealed, unsealed, unlubricated and micro-lubricated conditions of the same batch of 6204 grease lubricated deep groove ball bearings, and the influence of each friction component on the total friction was analyzed by peeling off some factors successively.The experimental results shows that under the conditions of experimental loads and speeds, the sealing friction accounts for about 5% to 18% of the total friction of the bearing, and the viscous friction accounts for 64% to 85% of the total friction of the unsealed bearing.In addition to these viscous frictions, the sliding friction is also an important component of the total friction of the rolling bearing.

【基金】 清华大学摩擦学国家重点实验室开放基金项目(SKLTKF20B11);大学生创新训练项目(202204078);中央高校基本科研业务费资助项目(2021XJJD01)
  • 【文献出处】 润滑与密封 ,Lubrication Engineering , 编辑部邮箱 ,2022年11期
  • 【分类号】TH133.33;TH117.1
  • 【下载频次】60
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