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Towards Miniaturization of Magnetic Gears: Torque Performance Assessment

机译:致力于电磁齿轮的小型化:扭矩性能评估

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摘要

Magnetomechanical components can be a good solution in order to reduce, or even completely avoid, friction phenomena in micro-electro-mechanical systems (MEMS) since they can transmit forces through magnetic fields without contacts. In this communication, electromagnetic simulations of the expected specific torque of a coaxial magnetic gear are given. The results show that micromagnetic gears (3 mm of diameter) could provide a specific torque up to 8.98 Nm/kg, several times larger than the specific torque that microgears (<9 mm of diameter) can provide. This implies that micromagnetic gears could provide speed conversion without contact in the teeth, avoiding corresponding friction, but also that it would even improve the specific torque transmission with respect to contact microgears.
机译:磁机械组件是减少或什至完全避免微机电系统(MEMS)中摩擦现象的良好解决方案,因为它们可以通过磁场传递力而无需接触。在此通信中,给出了同轴电磁齿轮的预期比扭矩的电磁仿真。结果表明,微电磁齿轮(直径3毫米)可提供高达8.98 Nm / kg的比扭矩,是微齿轮(直径小于9毫米)可提供的比扭矩的几倍。这意味着微电磁齿轮可以在不接触齿的情况下提供速度转换,从而避免了相应的摩擦,而且还可以提高相对于接触微齿轮的比扭矩传递。

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