A permanent magnet brushless motor having a dual air gap, axial field configuration has been designed and constructed to achieve high power and energy density. The modeling approach and conclusions of a finite element analysis (FEA) that focus on the detect torque and axial force effects in the motor are reported. Design options and manufacturability issues such as magnet skewing, staggering of the two stators, and axial misalignment of the rotor are examined. Detent torque is reduced by magnet skewing, and to an even greater extent by stator staggering. Axial force variations on the rotor are aggravated by stator staggering. It is found that axial misalignment of the rotor has a deleterious effect on both detent torque and axial force variations.>
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Cho et al. (1993) studied this question.
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