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Simulation Study on Static and Dynamic Characteristics of Electromagnet for Electro-Hydraulic Proportional Valve Used in Shock Absorber

机译:电吸减震器电液比例阀电磁静态和动态特性的仿真研究

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摘要

In order to improve the performance of the electromagnet for electro-hydraulic proportional valve used in shock absorber, the static and dynamic characteristics of the proportional electromagnet are simulated and analyzed, which provides theoretical basis for the design and optimization of structural parameters of the proportional electromagnet. In this paper, the magnetic circuit model and finite element simulation model of the proportional electromagnet used in shock absorber are established, and the Ansoft software is applied to analyze the influence of the key structural parameters of the proportional electromagnet on static output force and dynamic characteristics. The results demonstrate that with the increase of the depth of basin mouth, the effective travel of the proportional electromagnet increases, and the mean value of the electromagnetic force in the working range decreases. The larger the radial clearance between armature and guide sleeve is, the smaller the electromagnetic force in the effective travel is. When the depth of the basin mouth is 3.9 mm, the slope of the magnetic isolation ring is 35 & x00B0;, the chamfer length of the convex platform is 0.2 mm, and the radial clearance is 0.3 mm, the proportional electromagnet has good displacement-force and current-force characteristics. According to the further transient analysis, it is found that when the voltage amplitude is 24 V, the rise time of the electromagnetic force under step excitation signal is about 40 ms.
机译:为了改善用于减震器中使用的电液比例阀的电磁铁的性能,模拟和分析了比例电磁铁的静态和动态特性,为比例电磁铁的结构参数的设计和优化提供了理论依据。在本文中,建立了减震器中使用的比例电磁铁的磁路模型和有限元仿真模型,并应用了ANSoft软件,分析了比例电磁铁的关键结构参数对静态输出力和动态特性的影响。结果表明,随着盆地深度的增加,比例电磁铁的有效行程增加,并且工作范围内的电磁力的平均值降低。电枢和引导套筒之间的径向间隙越大,有效行程中的电磁力越小。当盆口的深度为3.9mm时,磁隔离环的斜率为35&x00b0;,凸平板的倒角长度为0.2mm,径向间隙为0.3mm,比例电磁铁具有良好的位移 - 力和电流力特性。根据进一步的瞬态分析,发现当电压幅度为24V时,踩静电信号下的电磁力的上升时间约为40ms。

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