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Closed-Double-Magnetic Circuit for a Long-Stroke Horizontal Electromagnetic Vibration Exciter

机译:长行程水平电磁振动激励器的闭合双磁路

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摘要

A novel closed-double-magnetic circuit (CDMC) was presented to achieve high and uniform magnetic flux density (MFD) in the long air gap (LAG) of a long-stroke horizontal electromagnetic vibration exciter. First, the normal single-magnetic circuit (SMC) and the proposed CDMC were modeled by lumped element circuit using equivalent circuit principle, analyzed theoretically by the Kirchhoff's law and the superposition theorem. The comparison between the two circuits shows that the CDMC can have more intensive and more uniform MFD in the LAG. To strengthen the uniformity of the MFD in the LAG, the improved CDMC with uneven air gap and its design method were proposed theoretically. Thereafter, the uneven air gap structure expressed as a three-line-segment form was presented and its optimization was also conducted based on a finite element model referring to a prototype of a one-meter-stroke horizontal electromagnetic vibration excite. Then, the magnetic flux leakage of the magnetic circuits and the influence of slits in the outer magnetic yoke for practical application was also analyzed with the finite element method (FEM). The simulation demonstrates that the CDMC with optimal air gap can further improve the uniformity of the MFD in the LAG. In addition, it is also indicated that the CDMC has less flux leakage than the SMC and the influence of slits can be negligible. Finally, the experiment on the prototype also verifies the effectiveness of proposed CDMC with optimal air gap.
机译:提出了一种新颖的闭合双磁路(CDMC),以在长冲程水平电磁振动激励器的长气隙(LAG)中实现高且均匀的磁通密度(MFD)。首先,使用等效电路原理通过集总元件电路对正常的单磁路(SMC)和所提出的CDMC进行建模,并通过基尔霍夫定律和叠加定理进行理论分析。两种电路之间的比较表明,CDMC在LAG中可以具有更密集和更均匀的MFD。为了增强LAG中MFD的均匀性,从理论上提出了气隙不均匀的改进型CDMC及其设计方法。此后,提出了以三线段形式表示的不均匀气隙结构,并基于一米行程水平电磁振动激励的原型,基于有限元模型进行了优化。然后,还通过有限元方法(FEM)分析了实际应用中磁路的磁通量泄漏和狭缝在外磁轭中的影响。仿真表明,具有最佳气隙的CDMC可以进一步提高LAG中MFD的均匀性。此外,还表明CDMC的磁通量泄漏比SMC少,狭缝的影响可以忽略不计。最后,在原型上进行的实验还验证了建议的CDMC在最佳气隙下的有效性。

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