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超磁致伸缩执行器驱动的射流伺服阀参数优化
引用本文:李跃松,朱玉川,吴洪涛,田一松,牛世勇.超磁致伸缩执行器驱动的射流伺服阀参数优化[J].航空学报,2011,32(7):1336-1344.
作者姓名:李跃松  朱玉川  吴洪涛  田一松  牛世勇
作者单位:1. 南京航空航天大学机电学院,江苏南京,210016
2. 西安飞行自动控制研究所,陕西西安,710065
基金项目:国家自然科学基金,航空科学基金,南京航空航天大学基本科研业务费专项科研项目
摘    要:为提高射流伺服阀的性能,提出了一种超磁致伸缩执行器驱动的直动式射流伺服阀.采用磁场有限元分析的方法,建立了超磁致伸缩执行器输出电流与输出位移的关系,分析了线圈结构对其输出位移的影响,并给出了所设计执行器的实验曲线.结合所设计的射流伺服阀的特点,以能量传递效率最大为优化目标,建立了射流结构与射流效率的关系方程,求出了所设...

关 键 词:射流伺服阀  超磁致伸缩执行器  参数优化  流场分析  静态特性  压力增益
收稿时间:2010-11-08;

Parameter Optimization of Jet-pipe Servovalve Driven by Giant Magnetostrictive Actuator
LIYuesong,ZHUYuchuan,WUHongtao,TIANYisong,NIUShiyong.Parameter Optimization of Jet-pipe Servovalve Driven by Giant Magnetostrictive Actuator[J].Acta Aeronautica et Astronautica Sinica,2011,32(7):1336-1344.
Authors:LIYuesong  ZHUYuchuan  WUHongtao  TIANYisong  NIUShiyong
Institution:1.College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China 2.Flight Automatic Control Research Institute,Xi’an 710065,China
Abstract:In order to improve the performance of a jet-pipe servovalve, a novel direct drive jet-pipe servovalve driven by a giant magnetostrictive actuator is proposed in this paper. By means of magnetic field finite element analysis, a model of the giant magnetostrictive actuator is established. The influence of coil structure on actuator displacement is analyzed and the experimental curves of the designed actuator are given. On the basis of the designed jet-pipe servovalve and taking the maximum energy transfer efficiency as the optimization objective, an equation is built between the jet parameters and jet efficiency. The best jet structure parameters of the designed servovalve are worked out, and its static characteristics are analyzed with the help of a flow field analysis software. The results show that its null dimensionless pressure gain is 1.7 mm-1, and the null dimensionless flow gain is 1.9 mm-1.
Keywords:jet-pipe servovalve  giant magnetostrictive actuator  parameter optimization  flow analysis  static characteristic  pressure gain
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