提高转矩密度的双同轴磁力联轴器设计与分析

Y. Akcay, O. Tweedy, P. Giangrande, M. Galea
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引用次数: 1

摘要

同轴磁力联轴器是传统机械联轴器的一种有吸引力的替代品,它具有许多理想的优点,但受其相对较低的转矩密度和转矩质量比的限制。由于永磁体阵列的半径,同轴磁联轴器的最佳磁设计具有显著的非活性材料体积。本文利用第二组永磁环组成双同轴磁力联轴器,使同轴磁力联轴器的转矩密度提高了82%。提出的设计改进实现了减少联轴器总体体积的目标,同时保持相同的质量和峰值扭矩传输能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of a Double Coaxial Magnetic Coupling to Improve Torque Density
Coaxial magnetic couplings are an attractive alternative to traditional mechanical machine couplings which bring several desirable advantages but are limited by their relatively low torque density and torque to mass ratio. The optimum magnetic design of a coaxial magnetic coupling possesses a significant volume of inactive material due to the radius of the permanent magnet arrays. In this paper, the torque density of a coaxial magnetic coupling is increased by up to 82% by utilizing a second set of permanent magnet rings to form a double coaxial magnetic coupling. The proposed design enhancement achieves the aim of reducing the total volume of the coupling, whilst maintaining the same mass and peak torque transmission capacity.
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