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1. 中南大学交通运输工程学院轨道交通安全教育部重点实验室
2. 轨道交通安全关键技术国际合作联合实验室
3. 轨道交通列车安全保障技术国家地方联合工程研究中心
纸质出版日期:2023-12-15,
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朱安源, 方聪聪, 周伟, 等. 热弹流润滑状态下线接触摩擦副动力学特性研究[J]. 机械强度, 2023,45(6):1409-1418.
ZHU AnYuan, FANG CongCong, ZHOU Wei, et al. RESEARCH ON DYNAMIC CHARACTERSITICS OF LINE CONTACT FRICTION PAIRS UNDER THERMAL EHL STATE[J]. Journal of Mechanical Strength , 2023,45(6):1409-1418.
朱安源, 方聪聪, 周伟, 等. 热弹流润滑状态下线接触摩擦副动力学特性研究[J]. 机械强度, 2023,45(6):1409-1418. DOI: 10.16579/j.issn.1001.9669.2023.06.019.
ZHU AnYuan, FANG CongCong, ZHOU Wei, et al. RESEARCH ON DYNAMIC CHARACTERSITICS OF LINE CONTACT FRICTION PAIRS UNDER THERMAL EHL STATE[J]. Journal of Mechanical Strength , 2023,45(6):1409-1418. DOI: 10.16579/j.issn.1001.9669.2023.06.019.
线接触弹性流体动力润滑(Elasto-Hydrodynamic Lubrication
EHL)现象广泛存在于轴承、齿轮等机械系统关键零部件中,接触界面间的润滑油膜充当弹簧和阻尼器的作用,润滑油与固体接触产生的摩擦热会改变润滑剂流变学特性,进而对接触副动力学特性产生影响。基于弹流润滑传热学和动力学基本原理建立线接触热弹流润滑与动力学耦合模型。模型通过利用稳态工况下刚度与接触体趋近量的关系,分离出瞬态接触下刚度力影响的部分,从而得到阻尼参数。基于以上模型对热弹流润滑接触油膜特性和动力学特性进行研究。结果表明,接触界面间润滑油温度随外载荷和卷吸速度增大逐渐升高,对润滑油的流变学特性产生影响,进而影响接触副在加载过程中的动力学特性。轻载低速时,热效应对弹流润滑刚度和阻尼的影响不明显,随着载荷和卷吸速度增大,热弹流刚度和阻尼大于等温条件下的计算结果,且随速度增大,热效应的影响更加明显。
The line contact elasto-hydrodynamic lubrication (EHL) phenomenon generally exists in key parts of mechanical systems e. g. bearings
gears
the lubricant oil film between the contact interfaces acts as a spring and damper
and the frictional heat generated by the contact between the lubricant and the solids changes the rheological properties of the lubricant
then the dynamics characteristics of the contact pair are affected. Based on the basic principles of elastohydrodynamic lubrication heat transfer and dynamics
the coupling model of line contact thermoelastohydrodynamic lubrication and dynamics was established. By using the relationship between the stiffness and the contact body approach amount under steady state conditions
the part affected by the stiffness force under transient contact was separated and the damping parameter was obtained. Based on the above model
the contact oil film characteristics and the dynamics characteristics of thermal elastohydrodynamic lubrication were studied. The results show that the lubricating oil film temperature obviously increased with the increasing applied load and entrainment velocity
which influences the rheological properties of lubricant and further affects the dynamics characteristics during the loading process. At light load and low speed
the influence of thermal effect on elastohydrodynamic lubrication stiffness and damping is not obvious. With the increase of load and entrainment speed
the thermal effect of elastohydrodynamic stiffness and damping is greater than the calculated results under isothermal conditions
and the influence of thermal effect is more obvious with the increase of speed.
线接触弹流润滑热效应刚度阻尼
Line contactElastohydrodynamic lubricationThermal effectStiffnessDamping
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