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高压螺纹插装阀结构参数对稳定性及动态响应的影响
引用本文:陈俊翔,卢子艺,赵煜,祝瑞瀚,艾超,朱富良.高压螺纹插装阀结构参数对稳定性及动态响应的影响[J].液压与气动,2022,0(7):17-24.
作者姓名:陈俊翔  卢子艺  赵煜  祝瑞瀚  艾超  朱富良
作者单位:1.燕山大学 河北省重型机械流体动力传输与控制实验室, 河北 秦皇岛 066004; 2.燕山大学 先进锻压成型技术与科学教育部重点实验室,河北 秦皇岛 066004; 3.北自所(北京)科技发展股份有限公司, 北京 100120
基金项目:国家重点研发计划子课题(2020YFB2009801);;国家自然科学基金面上项目(52175065);
摘    要:为了研究工程机械用高压螺纹插装式溢流阀稳定性及动态响应性,针对高压螺纹插装式溢流阀结构特点,通过Routh判据给出了先导阀在任意工作点能够保持稳定的条件,分析出导阀稳定性影响因素。利用MATLAB/Simulink建立溢流阀状态空间方程仿真模型,以获得高响应、小超调为目标,对影响高压螺纹插装阀动态响应的多因素组合进行分析。针对多因素制定了12因素3水平正交试验表,并对12种结构分别利用状态空间方程进行计算仿真,得到影响溢流阀动态响应因素的主次顺序,为溢流阀的动态响应优化设计提供参考。

关 键 词:高压螺纹插装式溢流阀  稳定性  正交试验  动态响应  
收稿时间:2022-01-04

Influence of Structural Parameters of High-pressure Screw-in Cartridge Valve on Stability and Dynamic Response
CHEN Jun-xiang,LU Zi-yi,ZHAO Yu,ZHU Rui-han,AI Chao,ZHU Fu-liang.Influence of Structural Parameters of High-pressure Screw-in Cartridge Valve on Stability and Dynamic Response[J].Chinese Hydraulics & Pneumatics,2022,0(7):17-24.
Authors:CHEN Jun-xiang  LU Zi-yi  ZHAO Yu  ZHU Rui-han  AI Chao  ZHU Fu-liang
Affiliation:1. Hebei Provincial Key Laboratory of Heavy Machinery Fluid Power Transmission and Control, Yanshan University, Qinhuangdao, Hebei 066004;2. Key Laboratory of Advanced Forging & Stamping Technology and Science Ministry of Education, Yanshan University, Qinhuangdao, Hebei 066004;3. RIAMB (Beijing) Technology Development Co., Ltd., Beijing 100120
Abstract:In order to study the stability and dynamic response of high-pressure screw-in cartridge relief valve for construction machinery, according to the structural characteristics of high-pressure screw-in cartridge relief valve, the conditions under which the pilot valve can maintain stability at any working point are given through Routh criterion, and the influencing factors of pilot valve stability are analyzed. The state space equation simulation model of overflow valve is established by MATLAB/Simulink. In order to obtain high response and small overshoot, the multi factor combination affecting the dynamic response of high-pressure screw-in cartridge valve is analyzed. The 12 factor 3-level orthogonal test table is formulated for multiple factors, and the 12 structures are calculated and simulated by using the state space equation, and the primary and secondary order of the factors affecting the dynamic response of the overflow valve is obtained, which provides a reference for the optimal design of the dynamic response of the overflow valve.
Keywords:high-pressure threaded cartridge relief valve  stability  orthogonal test  dynamic response  
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