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논문 기본 정보

자료유형
학술저널
저자정보
Yangyang Guo (China University of Mining and Technology) Zuzhi Tian (China University of Mining and Technology) Xiangfan Wu (Xuzhou University of Technology) Wei Liu (China University of Mining and Technology) Haopeng Li (China University of Mining and Technology)
저널정보
한국자기학회 Journal of Magnetics Journal of Magnetics Vol.29 No.2
발행연도
2024.6
수록면
217 - 225 (9page)
DOI
10.4283/JMAG.2024.29.2.217

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초록· 키워드

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Aiming at the problem of serious temperature rise in the power transmission process of the traditional magnetorheological fluid transmission device, a counter-roller structure is proposed. This paper analyzes the magnetic field characteristics of counter-roller magnetorheological fluid drives with different coil arrangements. Based on the theory of electromagnetism, the magnetic field design of the counter-roller magnetorheological transmission device was carried out. The magnetic field simulation results show that under the condition the current is 1.5A and the working gap is 1.5 mm, the magnetic induction intensity of the working area under different arrangements can reach more than 0.5A, which meets the working requirements. The working magnetic field intensity increases with the increase of current, decreases with the increase of the working gap, and increases with the increase of material permeability. The average magnetic induction intensity under the radial coil arrangement is larger than that under the circumferential coil arrangement. The combined use of circumferential coil and radial coil arrangement can improve the magnetic field distribution characteristics in the working area of the roller drive, thus further improving its transmission characteristics.

목차

1. Introduction
2. Principle of the Transmission Device
3. Design of Magnetic Circuit
4. Analysis of Magnetic Field
5. Influencing Factors Analysis of Magnetic Induction Intensity
6. Conclusions and Future Work
References

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