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The Mechanism How Coaxial Magnetic Gear Transmits Magnetic Torques Between Its Two Rotors: Detailed Analysis of Torque Distribution on Modulating Ring

机译:同轴磁齿轮如何在其两个转子之间传输磁性扭矩:调制环上的扭矩分布的详细分析

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摘要

Coaxial magnetic gears (CMGs) have attracted increasing attention in recent years. The field modulation effect arising from modulating ring is considered as the reason why CMG can realize torque transmission between its two rotors. However, the magnetic torque interaction among modulating ring and two rotors is rarely investigated. Therefore, the purpose of this paper is to figure out the detailed torque distribution on the modulating ring, which plays a crucial role as the force/torque medium between the inner rotor and the outer rotor. First, the conceptual model, the operating principle, and the practical configurations of CMGs are introduced. Second, theoretical derivation of torque distribution on each surface of modulating rings with different connecting bridges is conducted by using the Maxwell stress tensor method. The calculation results match very well with those obtained from the traditional "holistic analysis method" that is widely used in previous publications, and this validates our proposed "detailed analysis method". Third, how the connecting bridges affect the torque distribution on modulating rings is presented intuitively. Finally, three CMGs with inner bridge, outer bridge, and double bridges, respectively, are built for experimental verification.
机译:同轴磁齿轮(CMG)近年来引起了不断的关注。调制环产生的现场调制效果被认为是CMG可以实现其两个转子之间的扭矩传递的原因。然而,调节环和两个转子之间的磁性扭矩相互作用很少被研究。因此,本文的目的是弄清楚调制环上的详细扭矩分布,其在内转子和外转子之间的力/扭矩介质起到至关重要的作用。首先,介绍了概念模型,操作原理和CMG的实际配置。其次,通过使用麦克斯韦应力张量法进行具有不同连接桥的调制环的每个表面上的理论推导。计算结果与从先前出版物中广泛使用的传统“全面分析方法”中获得的那些相匹配,这验证了我们所提出的“详细分析方法”。第三,连接桥如何影响调制环上的扭矩分布的直观。最后,建立了三个具有内桥,外桥和双桥的CMG,用于实验验证。

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