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无润滑电磁轴承保护轴承跌落过程摩擦发热分析

刘兴男 陈国辉 王茗萁 时振刚 莫逆

原子能科学技术2024,Vol.58Issue(z2):131-140,10.
原子能科学技术2024,Vol.58Issue(z2):131-140,10.DOI:10.7538/yzk.2024.youxian.0136

无润滑电磁轴承保护轴承跌落过程摩擦发热分析

Analysis for Friction Heating Power of Non-lubricated Auxiliary Bearing of Electromagnetic Bearing during Rotor Drop

刘兴男 1陈国辉 2王茗萁 1时振刚 1莫逆1

作者信息

  • 1. 清华大学核能与新能源技术研究院,北京 100084||先进核能技术协同创新中心,北京 100084||先进反应堆工程与安全教育部重点实验室,北京 100084
  • 2. 广州创依科技有限公司,广东 广州 511455
  • 折叠

摘要

Abstract

In order to predict the life of the auxiliary bearing in the design stage,it is crucial to calculate the friction heating power of the auxiliary bearing during the rotor drop process.In many cases,the auxiliary bearing has no lubrication or only solid lubrication.Therefore,the local method was chosen to calculate the friction power,focusing on analyzing the rolling elastic hysteresis power between the ball and raceway,the spin power of the ball and the differential sliding power between the ball and raceway.The calculation formulas of these powers were provided in this paper,along with the derivation of an analytical formula for the differential sliding power,which facilitates practical applications.These formulas are based on the quasi-static analysis and the raceway control theory.When the rotation speed of the inner ring of the auxiliary bearing,the radial force acting on the auxiliary bearing and the axial preloading force are all known,the friction heating power of the auxiliary bearing can be calculated by these formulas.The free drop experiment of an electromagnetic bearing high-speed motor without braking was carried out to test the calculation,under 3 000,5 400,and 6 600 r/min.The rotor axis trajectory and the horizontal and vertical impact force acting on the auxiliary bearing were measured.The rotation speed of the inner ring of the auxiliary bearing was assumed to be the same as the speed of the rotor,calculated by the rotor axis trajectory.The radial force acting on the auxiliary bearing was calculated based on the horizontal and vertical impact force.The axial preloading force,which is about 410 N in this paper,was determined by the experimental data under 3 000 r/min with the method of trial calculation.With these parameters,the friction heating power of the auxiliary bearing was calculated,and compared with the change rate of the kinetic energy of the rotor observed in the experiment.It is found that the heating power calculated by the local method is approximately equivalent to the change rate of the kinetic energy,which proves the feasibility of the theoretical calculation.During the drop process of a non-lubricated auxiliary bearing,the spin of the ball generates the most heat,followed by the differential sliding between the ball and the raceway.The sum of the two accounts for the main part of the total heat,and the rolling elastic hysteresis between the ball and the raceway generates less heat.

关键词

电磁轴承/保护轴承/转子跌落/摩擦发热/摩擦力矩

Key words

magnetic bearing/auxiliary bearing/rotor drop/friction power/friction torque

分类

能源科技

引用本文复制引用

刘兴男,陈国辉,王茗萁,时振刚,莫逆..无润滑电磁轴承保护轴承跌落过程摩擦发热分析[J].原子能科学技术,2024,58(z2):131-140,10.

基金项目

中核集团"青年英才"项目(20212009054) (20212009054)

国家科技重大专项(ZX069) (ZX069)

原子能科学技术

OA北大核心CSTPCD

1000-6931

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