中国机械工程 ›› 2013, Vol. 24 ›› Issue (20): 2705-2709.

• 机械基础工程 • 上一篇    下一篇

直动型溢流阀非线性动力学行为研究

姜万录1,2;朱勇1,2;杨超1,2   

  1. 1.燕山大学河北省重型机械流体动力传输与控制重点实验室,秦皇岛,066004
    2.先进锻压成形技术与科学教育部重点实验室(燕山大学),秦皇岛,066004
  • 出版日期:2013-10-25 发布日期:2013-10-25
  • 基金资助:
    国家自然科学基金资助项目(51075349);国家重点基础研究发展计划(973计划)资助项目(2014CB046405);河北省自然科学基金资助项目(E2013203161) 
    National Natural Science Foundation of China(No. 51075349);
    National Program on Key Basic Research Project (973 Program)(No. 2014CB046405);
    Hebei Provincial Natural Science Foundation of China(No. E2013203161)

Study on Nonlinear Dynamics Behavior of a Hydraulic Relief Valve

Jiang Wanlu1,2;Zhu Yong1,2;Yang Chao1,2   

  1. 1.Hebei 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 (Yanshan University),Ministry of Education of China,Qinhuangdao,Hebei,066004
  • Online:2013-10-25 Published:2013-10-25
  • Supported by:
     
    National Natural Science Foundation of China(No. 51075349);
    National Program on Key Basic Research Project (973 Program)(No. 2014CB046405);
    Hebei Provincial Natural Science Foundation of China(No. E2013203161)

摘要:

针对溢流阀阀芯震颤导致液压系统产生非线性振动问题,建立了溢流阀非线性动力学模型,利用MATLAB/Simulink进行了数值仿真。研究了受自身结构参数和外部主要因素影响下溢流阀的非线性动力学行为。研究结果表明,对溢流阀非线性动力学行为进行研究能够发现系统参数对溢流阀动态特性的影响规律,对优化溢流阀的结构参数、提高溢流阀运行的稳定性、防止液压系统产生自激振荡有重要的理论指导意义和工程实际意义。

关键词: 非线性动力学, 溢流阀, 数值仿真, 自激振动

Abstract:

Aiming to solve the hydraulic system nonlinear vibration produced by the relief valve spool tremor, a nonlinear dynamics model of relief valve was established. The simulation of the relief valve modeling was made by using MATLAB/Simulink. The nonlinear dynamics behaviors of the relief valve were studied under the influences of its own structure parameters and external factors. The influence laws of system parameters on the relief valve dynamic characteristics can be found effectively. The research has an important theoretical guidance and practical engineering significances to optimize the structure parameters and improve the operation stability of the relief valve, and prevent hydraulic system to produce self-induced oscillation.

Key words: nonlinear dynamics, relief valve, numerical simulation, self-induced vibration

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