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首页> 外文期刊>International journal of applied electromagnetics and mechanics >A comparative analysis of power density for single-stage and dual-stage magnetic gear with rare-earth magnets and non rare-earth magnets
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A comparative analysis of power density for single-stage and dual-stage magnetic gear with rare-earth magnets and non rare-earth magnets

机译:含稀土磁体和非稀土磁体的单级和双级电磁齿轮功率密度的比较分析

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摘要

The magnetic gear that solves the physical contact problem of the mechanical gear has advantage of no mechanical friction loss, very little noise and vibration, and no need for lubricant. Due to this unique non-contact characteristic, the magnetic gear which is capable of non-contact torque transmission has replaced mechanical gear. However, the magnetic gear with a high gear ratio is disadvantageous to implement the exact gear ratio because the number of rotor poles increases. Therefore, dual-stage type magnetic gear was proposed in order to distributes the gear ratio by using two magnetic gears as to the mechanical gear is used the multi-stage in order to implement the high gear ratio. The dual-stage type magnetic gear can improve the power density and efficiency compared to the single-stage magnetic gear. Also, the dual-stage type magnetic gear can be designed differently permanent magnet type because the use of the two magnetic gear. Therefore, in this paper, permanent magnet material of second magnetic gear was not changed and only permanent magnet material of first magnetic gear was changed to bonded NdFeB magnet or ferrite magnet from sintered NdFeB magnet. Transfer torque and magnetic field analysis method for dual-stage magnetic gear was used 2-D numerical analysis.
机译:解决了机械齿轮的物理接触问题的电磁齿轮的优点是没有机械摩擦损失,几乎没有噪音和振动,并且不需要润滑剂。由于这种独特的非接触特性,能够进行非接触扭矩传递的电磁齿轮已取代了机械齿轮。但是,由于转子极数增加,所以具有高传动比的电磁齿轮不利于实现精确的传动比。因此,提出了双级式磁性齿轮,以便通过使用两个磁性齿轮来分配齿轮比,而对于多级使用机械齿轮以实现高齿轮比。与单级磁力齿轮相比,双级磁力齿轮可以提高功率密度和效率。同样,由于使用了两个磁性齿轮,因此可以将双级型磁性齿轮设计为不同的永磁体类型。因此,在本文中,不改变第二磁性齿轮的永磁体材料,而仅将第一磁性齿轮的永磁体材料从烧结的NdFeB磁体改变为粘结的NdFeB磁体或铁氧体磁体。采用了双级磁力齿轮的传递转矩和磁场分析方法进行了二维数值分析。

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