Dynamic differential equation of a high-speed cylindrical roller bearing was established.Fine integral method and predict-correct Adams-Bashforth-Moulton multi-step method were used to solve the dynamic differential equations of high-speed cylindrical roller bearing.Then the dynamic characteristics of cage were analyzed and discussed.The result shows:it's unlikely to keep stable rotation of cage when the ratio of pocket clearance to guiding clearance becomes too large; when one of the rings is fixed,the other is working and the cage guided by the rotating ring has lower slip ratio; it is helpful for stable mass center motion of cage when the cage is guided by outer ring; when the bearing is co-rotating and its outer ring's speed is larger than its inner ring's speed,the cage is guided by outer ring,and the cage has lower slip ratio; when the bearing is counter-rotating and its inner ring's speed is smaller,mass center trajectory of cage becomes irregular; the value of cage slip ratio becomes negative when the cage is guided by outer ring.
cylindrical roller bearingguiding type of cagedynamic characteristics of cagecage slip ratiomass center trajectory of cage