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发动机电磁气门驱动中的电磁铁特性分析
引用本文:黄荣纬,赵雨东,陈似竹. 发动机电磁气门驱动中的电磁铁特性分析[J]. 内燃机工程, 2007, 28(2): 31-34
作者姓名:黄荣纬  赵雨东  陈似竹
作者单位:清华大学,汽车安全与节能国家重点实验室,北京,100084
摘    要:发动机电磁气门驱动系统(EVA)是机械、电磁耦合的复杂系统。以所研制的EVA装置为例,采用仿真计算和实测相结合的方法,对EVA电磁铁的电感、磁链和铁磁材料的磁化状态进行了研究。结果表明,EVA工作时电磁铁基本上处于铁磁材料磁化曲线线性区,因此在仿真建模时可将电磁铁磁链、电感按磁化曲线线性区处理。

关 键 词:内燃机  气门机构  可变气门驱动  电磁气门驱动
文章编号:1000-0925(2007)02-031-04
修稿时间:2005-11-07

Analysis of Magnetic Characteristics in Electromagnetic Valve Actuation for Engines
HUANG Rong-wei,ZHAO Yu-dong,CHEN Si-zhu. Analysis of Magnetic Characteristics in Electromagnetic Valve Actuation for Engines[J]. Chinese Internal Combustion Engine Engineering, 2007, 28(2): 31-34
Authors:HUANG Rong-wei  ZHAO Yu-dong  CHEN Si-zhu
Affiliation:State Key Laboratory of Automobile Safety and Energy. Tsinghua University. Beijing 100084 .China
Abstract:The electromagnetic valve actuator(EVA)coupling of the mechanical, electrical and magnetic subsystems is a substitute of conventional valvetrain. In this paper, both experimental measurement and finite element method (FEM) were used to determine the magnetizing state of EVA's electromagnets, which depends on the air gap and current in coils. It is showed that in most instances EVA works in the linear region of magnetizing curve, so the flux-leakage and inductance could be simplified in model and simulation.
Keywords:IC engine  valvetrain  variable valve actuation  electromagnetic valve actuation
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