温度对电磁铁的影响和电磁阀的结构优化

Zhixiong Tang, Zhijun Feng
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引用次数: 0

摘要

建立了不同温度下电磁阀的数学模型,以研究其性能并加强散热平衡。确定了温度与电磁力之间的关系。利用 COMSOL 进行了电热耦合仿真,优化了线圈的外径和长度结构参数。随后,在优化线圈结构参数的基础上,采用正交试验设计法结合 Ansys Maxwell 进行仿真求解分析,研究铁芯中阻磁环的长度、位置、前后角度、衔铁长度和通孔尺寸等结构参数对电磁力的影响。确定了最佳结构参数。结果表明,稳态电磁铁温度降低了 3-4℃,初始电磁力增加了 32.63%,最大电磁力增加了 27.10%。
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The Impact of Temperature on the Electromagnet and Structural Optimization of a Solenoid Valve
The mathematical model of the solenoid valve under varying temperatures is constructed to investigate itsperformance and enhance heat dissipation balance. The relationship between temperature and electromagnetic force isdetermined. Electrothermal coupling simulation using COMSOL is conducted, optimizing the outer diameter and lengthstructure parameters of the coil. It is established that the heat dissipation of the coil is influenced by its outer diameter.Subsequently, based on optimized coil structure parameters, an orthogonal experimental design method combinedwith Ansys Maxwell is employed for simulation solution analysis to study the impact of structural parameters such aslength, position, front and rear angles of the magnetic barrier ring in the iron core, armature length, and through-holesize on electromagnetic force. Optimal structural parameters are identified. Results indicate a decrease in steady-stateelectromagnet temperature by 3–4℃, an increase in the initial electromagnetic force by 32.63%, and a rise in the maximumelectromagnetic force by 27.10%.
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