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Axial-Flux PM Machines With Variable Air Gap

机译:可变气隙的轴向磁通永磁电机

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Laminated soft magnetic steel is very often used to manufacture the stator cores of axial-flux PM machines. However, as the magnetic flux typically has main components parallel to the lamination plane, different magnetic flux density levels may occur over the radial direction: High flux densities near the saturation level are found at the inner radius, while the laminations at the outer radius are used inefficiently. To obtain a leveled magnetic flux density, this paper introduces a radially varying air gap: At the inner radius, the air gap is increased, while at the outer radius, the air gap remains unchanged. This results in equal flux densities in the different lamination layers. As the total flux in the stator cores is decreased due to the variable air gap, the permanent-magnet thickness should be increased to compensate for this. The effect of a variable air gap is tested for both a low-grade non-oriented and a high-grade grain-oriented material. For both materials, the redistribution of the magnetic flux due to the variable air gap results in a significant decrease of the iron losses. In the presented prototype machine, the iron losses are reduced up to 8% by introducing a variable air gap. Finally, a prototype machine is constructed using an efficient manufacturing procedure to construct the laminated magnetic stator cores with variable air gap.
机译:叠层软磁钢通常用于制造轴向磁通永磁电机的定子铁心。但是,由于磁通量的主要成分通常与叠层平面平行,因此在径向方向上可能会出现不同的磁通量密度水平:在内半径处发现饱和水平附近的高磁通密度,而在外半径处出现叠层。使用效率低下。为了获得均匀的磁通密度,本文引入了一个径向变化的气隙:在内半径处,气隙增加,而在外半径处,气隙保持不变。这在不同的层压层中导致相等的通量密度。由于可变气隙导致定子铁芯中的总磁通量减小,因此应增加永磁体的厚度以对此进行补偿。对于低等级的无取向和高等级的晶粒取向材料,都测试了可变气隙的影响。对于这两种材料,由于可变气隙而导致的磁通量的重新分配导致铁损的显着降低。在提出的原型机中,通过引入可变气隙,铁损降低了8%。最后,使用有效的制造程序构造原型机,以构造具有可变气隙的叠片式磁性定子铁芯。

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