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Magnetic quasi-static simulation [coreless liquid-cooled motor]

Magnetic quasi-static simulation [coreless liquid-cooled motor]. No Load Model. upper magnet layer. upper yoke. symmetry plane. symmetry plane. lower magnet layer. lower yoke. Flux Distribution - XY plane. Motor Features 16 POLES NO COILS NO BOOTS Basic Dimensions

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Magnetic quasi-static simulation [coreless liquid-cooled motor]

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  1. Magnetic quasi-static simulation [coreless liquid-cooled motor]

  2. No Load Model upper magnet layer upper yoke symmetry plane symmetry plane lower magnet layer lower yoke

  3. Flux Distribution - XY plane MotorFeatures 16 POLES NO COILS NO BOOTS Basic Dimensions Hmag = 6 mm Air-gap = 13 mm Model Features 1/4 circle Post-processing - magnetic field - attraction forces

  4. Flux Distribution - cut plane Motor Features 16 POLES NO COILS NO BOOTS Basic Dimensions Hmag = 6 mm Air-gap = 13mm Model Features 1/4 circle Post-processing - magnetic field - attraction forces

  5. Flux Distribution – cylindrical cut MotorFeatures:16 POLES NO COILS NO BOOTS Basic Dimensions Hmag= 6 mm Air-gap = 11 mm Model Features 1/4 circle Post-processing magnetic field attraction forces Radius 65 mm (min)

  6. Flux Distribution – cylindrical cut MotorFeatures:16 POLES NO COILS NO BOOTS Basic Dimensions Hmag=6 mm Air-gap=11 mm Model Features 1/4 circle Post-processing magnetic field attraction forces Radius 95 mm (mid)

  7. Flux Distribution – cylindrical cut MotorFeatures:16 POLES NO COILS NO BOOTS Basic Dimensions Hmag=6 mm Air-gap=11 mm Model Features 1/4 circle Post-processing magnetic field attraction forces Radius 110 mm (max)

  8. Eddy-current Simulation [coreless liquid-cooled motor]

  9. Frame is splitted • Simulation Model

  10. Boundaries and Sources

  11. 2.0 e +006 Effective density • Conductor Currents [Scalar-1]

  12. 2.0 e +006 Effective density • Conductor Currents [Scalar-2]

  13. 2.0 e +006 Effective density • Conductor Currents [Vector]

  14. 2.0 e +006 Effective density • Magnets Currents [Scalar]

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