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Different cooling techniques of a flux-switching permanent magnet machine (FSPMM) incorporating a large airgap are further investigated and enhanced to extract large amounts of heat from a small power and medium speed machine. Because of the 3 mm air-gap length, the limited volume (stator outer diameter DSa = 100 mm, active length of the iron part lFg = 80 mm) and the torque requirements (M ≈ 5 Nm)...
The work presents two alternative ways of cooling a flux-switching permanent magnet machine with a large air-gap length of 3 mm. The investigations are based on a small power machine (DSa = 100 mm, l = 80 mm) which is designed for the needs of a special application where a defined clearance between the stator and rotor is required to ensure the working principle. The increased air-gap volume promotes...
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