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Comparison of the Characteristics in the Surface Mounted Permanent Magnet and Flux Concentrating Coaxial Magnetic Gears Having the Solid Cores

机译:表面安装永磁体的特性和磁通量浓缩具有固体磁芯的磁通芯的特性

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摘要

The coaxial magnetic gear with the flux concentrating structure is known that it has the torque performance advantage over the coaxial magnetic gear having surface mounted permanent magnet, thanks to the flux focusing effect. But, if the solid cores are used in the modulating pieces and rotor cores to consider the mechanical reliability and cost reduction, the operating torque of the flux concentrating coaxial magnetic gear can be significantly diminished because the iron losses at the solid cores affect the actual transmitted torque. Furthermore, the modulating pieces and rotor cores have different characteristics of the iron losses from one another, because the space harmonic components of the magnetic flux density, which cause the iron losses, are different. Thus, in this paper, we focused on the analysis of the characteristics of the space harmonic components of the magnetic flux density and resultant eddy current losses in the surface mounted PM and flux concentrating coaxial magnetic gears, when these coaxial magnetic gears have the solid cores at the modulating pieces and rotor cores. The characteristics of pull-out torque (static torque), operating torque (dynamic torque), and efficiency are also researched, and compared by the 3D finite element analysis (FEA) and experiment.
机译:具有磁通浓缩结构的同轴磁齿轮是已知在具有表面安装永磁体的同轴磁齿轮上具有扭矩性能优势,因此由于磁通量聚焦效果。但是,如果在调制件和转子芯中使用固体核心以考虑机械可靠性和成本降低,则磁通量浓缩同轴磁齿轮的操作扭矩可以显着减少,因为固体核心的铁损不会影响实际传输扭矩。此外,调制件和转子芯具有彼此的铁损失的不同特性,因为导致铁损失的磁通密度的空间谐波分量不同。因此,在本文中,我们专注于分析磁通密度的空间谐波分量的特性和表面安装的PM和磁通浓缩同轴磁齿轮的所得涡流损耗的特性,当这些同轴磁齿轮具有固体核心时在调制件和转子芯。还研究了拉出扭矩(静态扭矩),操作扭矩(动态扭矩)和效率的特性,并通过3D有限元分析(FEA)和实验比较。

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