A finite element analysis of the impact of split pole shoes on magnetic liquid sealing performance
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22. März 2021
Über diesen Artikel
Online veröffentlicht: 22. März 2021
Seitenbereich: 103 - 114
Eingereicht: 16. Sept. 2020
Akzeptiert: 02. Dez. 2020
DOI: https://doi.org/10.2478/amns.2021.1.00017
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© 2021 Liu Zhiguo et al., published by Sciendo
This work is licensed under the Creative Commons Attribution 4.0 International License.
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The parameter table for calculating magnetic field intensity in the seal gap of split pole shoe structure_
PM coercivity | 930,000 | A/m | |
PM remanence | 1.28 | T | |
PM length | 0.008 | M | |
PM sectional length | 0.314 | M | |
PM sectional height | 0.01 | M | |
Pole shoe's initial teeth width | 0.0002 | M | |
Pole shoe's initial groove width | 0.0008 | M | |
Initial gap | 0.0002 | M | |
Saturation magnetisation of magnetic liquid | 400 | G | |
Permeability of vacuum | 4 |
T·m/A | |
Relative magnetic permeability of pole shoes | 100 | ||
Relative magnetic permeability of ordinary sealant | 1 | ||
Relative magnetic permeability of magnetic sealant | 4 | ||
Remark | In theoretical calculation, 1/3 of groove width added with 1/2 of teeth width is taken as the upper limit of integral, and 1/2 of teeth width is taken as the lower limit. |