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Finite element analysis of proportional solenoid characteristics in hydraulic valves

机译:液压阀比例电磁特性的有限元分析

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摘要

Proportional hydraulic valves (PHVs) have remarkable applications in different branches of industry. These valves can control an oil hydraulic system. One of the most important factors affecting a proportional solenoid (PS) is the geometry that affects its magnetic force with respect to its plunger position. Other effective factors include the size of the air gap, the current density and various soft magnetic materials that have different B-H (flux density versus field intensity) curves. Electromagnetic analysis (EMA) is used to enhance the reliability and accuracy of the PS and to reduce the total cost. In this paper, a range of PSs are software package with different air gaps, dimensional parameters, current densities and soft magnetic materials. The magnetic flux density and force are calculated using a finite element method (FEM), and the results are compared with the experimental results of an actual PS.
机译:比例液压阀(PHV)在不同行业中都有出色的应用。这些阀可以控制液压油系统。影响比例螺线管(PS)的最重要因素之一是影响其相对于其柱塞位置的磁力的几何形状。其他有效因素包括气隙的大小,电流密度以及具有不同B-H(磁通密度与场强)曲线的各种软磁材料。电磁分析(EMA)用于增强PS的可靠性和准确性并降低总成本。在本文中,一系列PS是具有不同气隙,尺寸参数,电流密度和软磁材料的软件包。使用有限元方法(FEM)计算磁通密度和力,并将结果与​​实际PS的实验结果进行比较。

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