摘要
建立了含固体颗粒的脂润滑线接触弹流润滑模型,推导了相应的润滑方程,通过数值方法分析了固体颗粒中心位置、尺寸和速度对脂润滑线接触弹流油膜压力和油膜厚度的影响,并与不含固体颗粒的脂润滑线接触弹流油膜压力和油膜厚度进行了比较.数值分析结果表明:固体颗粒对脂润滑线接触弹流的油膜压力和油膜厚度具有一定的影响;球状固体颗粒对油膜压力和油膜厚度的影响较为显著,其中颗粒半径变化对油膜压力和油膜厚度的影响最大;片状固体颗粒对油膜压力和油膜厚度的影响较小.
A model of elastohydrodynamic line contacts under grease lubrication with solid particles is established, and the corresponding lubrication equations are deduced. Then, the film pressure and thickness affected by the coordinate, dimension and velocity of solid particles are numerically analyzed and are compared with those without solid particles. Numerical analysis results show that the presence of solid particles has a certain influence on the film pressure and thickness, that sphere solid particles significantly influence the film pressure and thickness, especially the radius of sphere particles, and that flake-shape solid particles only have slight influence on the film pressure and thickness.
出处
《华南理工大学学报(自然科学版)》
EI
CAS
CSCD
北大核心
2012年第7期51-56,共6页
Journal of South China University of Technology(Natural Science Edition)
基金
广东省教育部产学研结合项目(2010B090400298)
关键词
固体颗粒
润滑脂
弹流润滑
润滑方程
数值分析
solid particle
grease
elastohydrodynamic lubrication
lubrication equation
numerical analysis