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Simulation Study on Magnetic Field Characteristics of High Magnetic Field Intensity Permanent Magnet Magnetic Filter

机译:高磁场强度永磁磁滤波器磁场特性的仿真研究

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To solve the conflict between separation space and magnetic field intensity, an original magnetic circuit structure system of permanent magnet magnetic filter is designed by utilizing multi-dimensional magnet extrusion technologies, with multi-block NdFeB magnets of different structures and magnetization directions. The inside diameter of the ring magnets and ring soft iron is taken as separating space. To inspect the distribution of the magnetic field characteristics of magnetic circuit system, mathematical model is established, and the designed magnetic circuit system is simulated, taking advantage of the electromagnetic software Magnet. The simulation results show that a larger separating space and higher background magnetic density can be achieved simultaneously by means of the organic magnetic circuit system design, when the thickness of ring soft iron is 4mm and the diameter ratio (outside diameter to the diameter) of ring magnets is 10/3. The highest magnetic induction intensity of 29.2 mm separating space is 1.5T, which provides the basis for permanent magnet magnetic circuit design.
机译:为了解决分离空间和磁场强度之间的冲突,通过利用多维磁体挤出技术设计永磁磁滤波器的原始磁路结构系统,具有不同结构和磁化方向的多块NdFeB磁体。环形磁铁和环软铁的内径作为分离空间。为了检查磁路系统的磁场特性的分布,建立了数学模型,并模拟了设计的磁路系统,利用了电磁软件磁体。仿真结果表明,当环软铁的厚度为4mm,环的厚度为4mm时,可以同时通过有机磁路系统设计实现更大的分离空间和更高的背景磁密度。环的直径比(直径直径)磁铁是10/3。分离空间29.2毫米的最高磁感应强度为1.5T,为永磁磁路设计提供基础。

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