Modeling and analysis of unbalanced magnetic pull in synchronous motorized spindle considering magneto-thermal coupling

Author:

Feng Wei11,Zhang Kun1,Liu Zongyao1,Liu Baoguo11,Zhang Huijuan1,Mei Junwei1,Wu Luji2

Affiliation:

1. , Henan University of Technology, , China

2. Zheng Zhou Research Institute of Mechanical Engineering CO., LTD, , China

Abstract

The unbalanced magnetic pull (UMP) is one of the main vibration sources of the motorized spindle. A calculation model of UMP in a synchronous motorized spindle considering the magneto-thermal coupling is proposed in this paper. The finite element analysis models of the electromagnetic field and the temperature field of a motorized spindle are first established. Then a two-way coupling analysis method considering the effect of temperature variations on electromagnetic material properties of the motor is proposed. An experiment is conducted to verify the efficiency of this method. The thermal deformations of the spindle are calculated and used to analyze the air-gap variations between rotor and stator of the built-in motor. The 3D finite element electromagnetic model is adopted to calculate the UMP in the motorized spindle. The analysis results show that the eccentricity caused by thermal deformation can generate large UMP in the motorized spindle.

Publisher

IOS Press

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,Electronic, Optical and Magnetic Materials

Reference34 articles.

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5. Dynamic analysis of a BLDC motor with mechanical and electromagnetic interaction due to air gap variation;Im;Journal of Sound and Vibration,2011

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