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机构地区:[1]上海理工大学,上海200093
出 处:《中国机械工程》2014年第17期2305-2309,共5页China Mechanical Engineering
基 金:国家自然科学基金资助项目(51275309)
摘 要:为提高喷油器的动态响应性能,以某款电控喷油器为研究对象,通过在其铁芯与导向管之间增加由不导磁材料制成的隔磁环开发了一种新型磁路结构。通过电磁场仿真分析了改进前后喷油器电磁性能的变化特点以及轭铁厚度对电磁性能的影响规律。结果表明:增加隔磁环能加快电磁力的上升速度,有效缩短喷油器的开启滞后时间,但饱和电磁力增大,造成落座滞后时间延长;适当减小轭铁厚度基本不影响电磁力的上升速度,但减小轭铁厚度会使磁阻增大,饱和电磁力降低,这样可有效缩短落座滞后时间。根据以上分析结果对喷油器进行了综合优化,并通过实验对其改进效果进行了验证,结果表明:优化后与优化前相比,喷油器的开启滞后时间缩短了0.25 ms,落座滞后时间缩短了0.3 ms。With an electronic fuel injector as the object, a new magnetic circuit structure was de- veloped by adding a ring made by non-magnetic material between the core and guide pipe in order to improve its dynamic response performance. Both of the original and improved injector's electromag- netic performances were analyzed and the influence of the yokels thickness on its electromagnetic per- formance was also studied by using the electromagnetic field simulation. The results show that adding a non-magnetic shell can speed up the rate of electromagnetic force's rise, reduce the opening re- sponse time effectively but it will cause longer closing response time due to the increase of saturated electromagnetic force. Reduction of the thickness of yoke has little effect appropriately on the rate of the electromagnetic force's rise and since it increases the reluctance, it can decrease the saturated elec- tromagnetic force and reduce the closing response time. Based on the analyses, an optimization of the injector was developed and experiences were conducted to verify its effectiveness. Experimental data indicates that the improved injector can reduce the opening response time by 0.25 ms and closing re- sponse time by 0.3 ms.
分 类 号:TK411.5[动力工程及工程热物理—动力机械及工程]
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