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Magnets In Modern Electromagnetic Devices

机译:现代电磁设备中的磁铁

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摘要

High-energy magnet materials based both on samarium cobalt and neodymium materials have proven to be quite suitable for novel electromagnetic devices. They have proven high performance when applied to rotary actuators and magnetic sensors. The magnet location in respect to the air gap seems to be crucial factor in developing novel high efficiency configurations. However, they require careful size selection since they adversely affect the efficiency of the conventional electromagnetic circuit. For rotary actuators, the ring magnet with multipole radial magnetization shows superior performance providing a high force density of 58kN/m~2. This ring magnet based on NdFeB using both sintered and die quench upset technologies, were successfully developed and their first application in electromagnetic devices were rotary actuators. Nowadays, they are finding many other applications in other electromagnetic devices such as stepper motors, brushless motors, etc. Also novel electromagnetic designs utilizing multipole structures allows for low-energy plastic bonded magnets in automotive applications.
机译:基于sa钴和钕材料的高能磁体材料已被证明非常适用于新型电磁设备。当应用于旋转执行器和磁性传感器时,它们已被证明具有高性能。磁体相对于气隙的位置似乎是开发新型高效配置的关键因素。然而,由于它们不利地影响了常规电磁电路的效率,因此需要仔细选择尺寸。对于旋转执行器,具有多极径向磁化的环形磁体表现出卓越的性能,可提供58kN / m〜2的高力密度。这种基于NdFeB的环形磁体已成功开发,同时使用了烧结和模具淬火up锻技术,其在电磁设备中的第一个应用是旋转执行器。如今,他们在其他电磁设备(例如步进电机,无刷电机等)中发现了许多其他应用。另外,利用多极结构的新颖电磁设计还允许在汽车应用中使用低能耗的塑料粘结磁体。

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