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主管单位 中华人民共和国
工业和信息化部
主办单位 哈尔滨工业大学 主编 李隆球 国际刊号ISSN 0367-6234 国内刊号CN 23-1235/T

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引用本文:杨庆俊,汪俊龙,吕庆军,熊庆辉.压电作动器驱动两级电液比例减压阀设计分析[J].哈尔滨工业大学学报,2017,49(7):46.DOI:10.11918/j.issn.0367-6234.201605113
YANG Qingjun,WANG Junlong,Lü Qingjun,XIONG Qinghui.Design and Analysis on two-stage proportional electro-hydraulic pressure reducing valve driven by piezoelectric actuator[J].Journal of Harbin Institute of Technology,2017,49(7):46.DOI:10.11918/j.issn.0367-6234.201605113
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压电作动器驱动两级电液比例减压阀设计分析
杨庆俊1,汪俊龙1,吕庆军2,熊庆辉2
(1.哈尔滨工业大学 流体控制与自动化系, 哈尔滨 150080; 2.车辆传动国防科技重点实验室(北京理工大学), 北京 100072)
摘要:
针对以往采用压电作动器的减压阀必须采用压力传感器的不足,提出一种先导式比例减压阀.该阀采用压电作动器控制先导阀阀口开度,与先导供油器的固定节流孔形成分压作用,实现对先导压力的控制,进而控制主阀实现对主阀出口压力控制.对减压阀进行结构和原理分析,建立数学模型; 用Simulink仿真分析结构参数对静动态特性的影响.采用调零弹簧将最低可控压力向下扩展到0;设计三台肩式阀芯结构,通过流场分析验证了该结构有效地减小液动力; 根据仿真结果选择恰当的反馈阻尼孔尺寸,保证减压阀的动态特性.所设计的减压阀无须测量压力并闭环即可实现减压功能,具有良好的调压范围、调压精度,能实现快速稳定动态响应.
关键词:  压电作动器  比例减压阀  数学模型  三台肩式阀芯  动态特性
DOI:10.11918/j.issn.0367-6234.201605113
分类号:TH137.1
文献标识码:A
基金项目:国家自然科学基金(51675119)
Design and Analysis on two-stage proportional electro-hydraulic pressure reducing valve driven by piezoelectric actuator
YANG Qingjun1,WANG Junlong1,Lü Qingjun2,XIONG Qinghui2
(1. Department of Mechatronic Control and Automation, Harbin Institute of Technology, Harbin 150080,China; 2. Key Laboratory of National Defense Science and Technology of Vehicle Transmission(Beijing Institute of Technology), Beijing 100072,China)
Abstract:
A new type two-stage proportional electro-hydraulic regulator valve using piezoelectric ceramics is promoted to cancel the requirement of pressure sensor. The piezoelectric ceramics controls the openness of pilot valve. The pressure drops across the fixed damping hole in the pilot supplier, and the throttling orifice of the pilot valve change accordingly. Thus the output pressure of pilot stage is controlled by the piezoelectric actuator and it serves as the command pressure to the main stage. The detailed structure and working principle have been given, and mathematical models and simulation models have been established. The influences of structural parameters over static and dynamic performances have been studied by Simulink simulation. A tuning spring has been employed to extend the lower bound of output pressure to 0. A three-land main spool has been employed to reduce the flow force and increase the precision, which is verified by flow field analysis. Proper feedback damping hole has been chosen according to dynamic simulation to ensure dynamic performance of pressure reducing valve. The new type valve proved to be able to work as a pressure reducing vavle without empoying a pressure sensor, and it has good output pressure range, pressure precision and fast and steady dynamic response.
Key words:  piezoelectric actuator  proportional electro-hydraulic reducing valve  mathematic model  three-land main spool  dynamic characteristics

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