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Permanent-Magnet Equivalent Model of Calculating Relay's Static Attractive Torque Characteristics by Finite Element Method

机译:有限元法计算继电器静态引力特性的永磁等效模型

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摘要

The permanent magnet (PM) is the key part of the relay. This paper aims to solve the problem of the uneven magnetization for the PM with nonlinear demagnetization curve after magnetizing and demagnetizing. A method partitioning the PM along the magnetization direction and the vertical direction of magnetization according to the condition of the specific magnetization of the PM was presented. By this method, the demagnetization model of the PM was built, the state of the PM magnetization was simulated under the demagnetizing magnetic intensity, and the recoil line and its initial point of each partition of the PM were obtained. Then the characteristic of the recoil line of each partition was used as its magnetic characteristic for the equivalent model of the PM to calculate the static torque characteristics under the demagnetizing magnetic field. Finally, the static torque characteristics of simulation and experiment were compared and the validity of the equivalent model presented was verified.
机译:永磁体(PM)是继电器的关键部分。本文旨在解决磁化和消磁后具有非线性消磁曲线的永磁体磁化不均匀的问题。提出了一种根据PM的特定磁化条件沿磁化方向和垂直方向划分PM的方法。通过这种方法,建立了永磁体的退磁模型,在退磁磁强度下模拟了永磁体的磁化状态,得到了永磁体各分区的反冲线及其起点。然后,将每个隔板的反冲线的特性作为其磁特性用于PM的等效模型,以计算退磁磁场下的静态转矩特性。最后,比较了仿真和实验的静态转矩特性,验证了等效模型的有效性。

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