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Calculation of the Remnant Magnetization and Magnetic Saturation Characteristics for Sintered NdFeB Permanent Magnets Utilizing Finite Element Transient Simulations

机译:利用有限元瞬态仿真计算烧结NdFeB永磁体的残余磁化和磁饱和特性

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This article presents the numerical calculation of the remnant magnetization and magnetic saturation characteristics for sintered neodymium-iron-boron (NdFeB) permanent magnets (PMs) utilizing 3-D finite element (FE) transient simulations. The nonlinear anisotropic properties of the sintered NdFeB PMs are employed to model a sintered NdFeB cylinder magnet. In addition, a magnetizing solenoid is coupled with an external equivalent current pulse circuit to analyze the magnetization process of the sintered NdFeB magnet. The remnant magnetization flux of the sintered NdFeB PM is compared and validated with numerical results and special laboratory magnet measurements published in the literature. On the other hand, a magnet saturation study is carried out; applying different saturation flux densities to the PM and the remnant magnetization flux is computed for each case. The saturation curve is computed, and the minimum saturation flux density is obtained to fully saturate the sintered NdFeB PMs. Finally, some virgin and demagnetized sintered NdFeB PMs are magnetized and saturated in the laboratory, and the minimum saturation flux density and the saturation curve are measured and compared with the FE simulation results. The results presented in this article show that the sintered NdFeB PMs are fully magnetized if a minimum saturation flux density of 3 T is applied during the magnetization process. The FE methodology presented in this article can be utilized by magnetizing fixture manufacturers and PM manufacturers to design efficient magnetizing fixtures and to predict the correct magnetization and saturation of different commercial grades of the sintered NdFeB PMs or other PM materials utilized in the magnetic industry and in special applications as PM motors.
机译:本文介绍了利用3-D有限元(Fe)瞬态模拟的烧结钕 - 铁 - 硼(NdFeB)永磁体(PMS)的残余磁化和磁饱和度特性的数值计算。使用烧结NDFEB PM的非线性各向异性特性来模拟烧结的NDFEB气缸磁体。另外,磁化螺线管与外部等效电流脉冲电路耦合以分析烧结NdFeB磁体的磁化过程。比较烧结NdFeB PM的残余磁化通量并用文献中公布的数值结果和特殊实验室磁体测量验证。另一方面,进行磁铁饱和度研究;为每种情况计算将不同的饱和磁通密度施加到PM和残余磁化通量。计算饱和度曲线,获得最小饱和通量密度以完全饱和烧结的NDFEB PM。最后,在实验室中磁化和饱和的一些原始和去磁的烧结NdFeB PM,并测量最小饱和磁通密度和饱和曲线,并与FE模拟结果进行比较。本文提出的结果表明,如果在磁化过程中施加了3吨的最小饱和通量密度,则烧结的NDFEB PMS被完全磁化。本文提出的FE方法可以通过磁化夹具制造商和PM制造商来利用,以设计高效的磁化装置,并预测不同商业等级的烧结NDFEB PMS或在磁性工业中使用的其他PM材料的正确磁化和饱和度特别应用作为PM电机。

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