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A double-magnetic-source magnetic circuit with pole shoes for an electromagnetic angular vibration exciter

机译:具有用于电磁角振动激励器的杆鞋的双磁源磁路

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摘要

This paper presents a novel double-magnetic-source magnetic circuit (DMSMC) with pole shoes (PS) in order to achieve high and uniform air-gap magnetic field in an angular vibration exciter. First, the structure of the DMSMC with PS is proposed based on the demand of the angular displacement of 60 ffi, in which the four pair of permanent magnets are adopted. After that, the DMSMC is modeled and analyzed theoretically by the equivalent circuit method, which has been verified that the magnetic circuit structure can realize high magnetic flux density (MFD) in the axial air-gap. To improve the uniformity of the MFD, the DMSMC with PS is proposed and the role of PS is analyzed by the principle of magnetic flux refraction. Then, the influence factors of the MFD in the air-gap, such as the permanent magnet with or without PS, the parameters of the magnet and the PS, are analyzed with the finite element method. The simulation results demonstrate that the optimized DMSMC with PS can obtain high and uniform MFD in the air-gap. Finally, the experimental results for the angular vibration exciter prototype prove to be well consistent with the simulation results, which further verify the validity of the proposed magnetic circuit structure.
机译:本文介绍了具有杆靴(PS)的新型双磁源磁路(DMSMC),以便在角振动激励器中实现高均匀的气隙磁场。首先,基于60 FFI的角位移的需求提出了DMSMC的结构,其中采用四对永磁体。之后,通过等效电路方法理论上是通过等效电路方法进行建模和分析的,已经验证了磁路结构可以在轴向气隙中实现高磁通密度(MFD)。为了提高MFD的均匀性,提出了具有PS的DMSMC,并通过磁通折射原理分析PS的作用。然后,用有限元法分析有限元法分析空气间隙中的MFD在空气间隙中的影响因素,例如具有或没有PS的永磁体,磁体的参数和PS。仿真结果表明,具有PS的优化DMSMC可以在气隙中获得高且均匀的MFD。最后,对角振动激励器原型的实验结果与模拟结果均匀符合,这进一步验证了所提出的磁路结构的有效性。

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