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电控单体泵高速电磁阀电磁力关键影响因素
引用本文:范立云,高明春,马修真,李文辉,石勇. 电控单体泵高速电磁阀电磁力关键影响因素[J]. 内燃机学报, 2012, 0(4): 359-364
作者姓名:范立云  高明春  马修真  李文辉  石勇
作者单位:哈尔滨工程大学动力与能源学院
基金项目:国家自然科学基金资助项目(50909024);广东省教育部产学研结合资助项目(2009A090100050);中央高校基本科研业务费专项资金资助项目(HEUCF110301)
摘    要:电控单体泵高速电磁阀电磁力决定了电磁阀的快速响应.利用Ansoft软件建立了高速电磁阀数值仿真模型,通过与试验数据对比得出电磁力最大偏差为9%,验证了仿真模型的准确性.应用仿真模型研究了铁芯、励磁线圈、衔铁、工作气隙和驱动电流等参数的变化对电磁力的影响,得出了励磁线圈匝数、工作气隙、驱动电流和衔铁厚度是电磁力的主要影响因素.应用试验设计的方法,进行了相关性分析,得出各种因素和电磁力之间的相关系数.结果表明,不但参数的单因素和电磁力有相关性,参数交互作用因素和电磁力也有相关性.

关 键 词:电控单体泵  高速电磁阀  电磁力  相关性分析

Investigation on Key Influencing Factors of Electromagnetic Force of High-Speed Solenoid Valve for Electronic Unit Pump
FAN Li-yun,GAO Ming-chun,MA Xiu-zhen,LI Wen-hui,SHI Yong. Investigation on Key Influencing Factors of Electromagnetic Force of High-Speed Solenoid Valve for Electronic Unit Pump[J]. Transactions of Csice, 2012, 0(4): 359-364
Authors:FAN Li-yun  GAO Ming-chun  MA Xiu-zhen  LI Wen-hui  SHI Yong
Affiliation:(School of Power and Energy Engineering,Harbin Engineering University,Harbin 150001,China)
Abstract:The electromagnetic force of high-speed solenoid valve for electronic unit pump(EUP)determines the fast response of high-speed solenoid valve.A simulation model of high-speed solenoid valve was established in Ansoft environment.The accuracy of the model was validated by comparing with the experimental results and the maximum deviation is 9%.The change of iron core,excitation coil,armature,working air gap and drive current parameters on the influence of the electromagnetic force have been studied by the simulation model.It is concluded that the turns of excitation coil,working air gap,drive current and thickness of armature are the major influencing factors on electromagnetic force.By using the design of experiments(DOE)method,correlation between various factors and electromagnetic force was analyzed.The results show that not only the single factor but also the interaction factor of various influencing parameters has correlation with the electromagnetic force.
Keywords:EUP  high-speed solenoid valve  electromagnetic force  correlation analysis
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