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首页> 外文期刊>International journal of applied electromagnetics and mechanics >High speed permanent magnet machine design with minimized stack-length under electromagnetic and mechanical constraints
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High speed permanent magnet machine design with minimized stack-length under electromagnetic and mechanical constraints

机译:在电磁和机械约束下具有最小堆长的高速永磁电机设计

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摘要

Certain aircraft and military applications require high speed machines with low stack-length and the lowest possible weight. Hence, the accommodation of the highest bore diameter may seem the natural option. However, a rotor design with high diameter results in significant increase in mechanical stresses in the employed magnet retention. In a sleeved magnet retention mechanism, the sleeve thickness can be increased in order to accommodate the stresses. However, this will result in significant drop in air-gap flux-density and will not yield the high power density expected by the machine. This paper presents an analytical technique that combines the sleeve stress model and the air-gap flux density model to calculate the optimal rotor diameter to achieve the maximum power of the machine design for a minimum stack-length. The technique is applied to both a Carbon Fibre sleeve version and a metallic sleeve version. The analytical calculation of the stresses is validated with mechanical finite-element simulations. The machine design with the analytical calculations is validated with electromagnetic finite element simulations. The results confirm the rotor design strategy and the design technique.
机译:某些飞机和军事应用需要具有短纸堆长度且重量尽可能轻的高速机器。因此,最大孔径的容纳似乎是自然的选择。然而,具有大直径的转子设计导致所采用的磁体保持中的机械应力显着增加。在带套筒的磁体保持机构中,可以增加套筒的厚度以适应应力。但是,这将导致气隙通量密度显着下降,并且不会产生机器预期的高功率密度。本文提出了一种分析技术,该技术结合了套筒应力模型和气隙磁通密度模型来计算最佳转子直径,从而在最小烟囱长度的情况下实现机器设计的最大功率。该技术适用于碳纤维套筒版本和金属套筒版本。应力的解析计算已通过机械有限元模拟进行了验证。带有解析计算的机器设计已通过电磁有限元模拟进行了验证。结果证实了转子的设计策略和设计技术。

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