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基于Maxwell的电磁阀导磁部件分析与优化
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宁波市自然科学基金项目(2019A610127)


Analysis and Optimization of Magnetic Guide Parts of Solenoid Valve Based on Maxwell
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    摘要:

    利用电磁场有限元分析软件Maxwell建立电磁阀二维模型,研究电磁阀导磁部件的结构和材料属性对电磁阀性能的影响。通过对电磁阀的铁心直径、气隙、线圈位置、材料属性等关键参数进行静态/动态仿真分析,计算不同参数下行程与磁力的关系,经过对比得出优化参数。在保持同样大小电压输入前提条件下,在行程为0时,优化后的电磁阀模型电磁力增大了约2倍,且体积减小52%。与初始模型相比,该模型能耗低、制造成本低、电磁力大、响应速度快。

    Abstract:

    The two-dimensional model of the solenoid valve was established by using the electromagnetic finite element analysis software Maxwell.The influence of the structure and material properties of the magnetic guide parts of the solenoid valve on the performance of the solenoid valve was studied.Through the static and dynamic simulation analysis of the core diameter,air gap,coil position,material properties and other key parameters of the solenoid valve,the relationship between the travel and magnetic force under different parameters was calculated,and the optimized parameters were obtained through comparison.Under the premise of maintaining the same voltage input,when the stroke is 0,the electromagnetic force of the optimized solenoid valve model increases about twice,and the volume decreases by 52%.Compared with the original model,this model has the advantages of low energy consumption,low manufacturing cost,large electromagnetic force and fast response.

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许珍,林旻,李金恩,金波,闫阿儒.基于Maxwell的电磁阀导磁部件分析与优化[J].机床与液压,2021,49(4):151-154.
XU Zhen, LIN Min, LI Jinen, JIN Bo, YAN Aru. Analysis and Optimization of Magnetic Guide Parts of Solenoid Valve Based on Maxwell[J]. Machine Tool & Hydraulics,2021,49(4):151-154

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  • 在线发布日期: 2022-03-10
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