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作 者:郭大勇 司国雷 周亚玲 GUO Dayong;SI Guolei;ZHOU Yaling(Sichuan Aerospace Fenghuo Servo Control Technology Co.,Ltd.,Chengdu Sichuan 611130,China)
机构地区:[1]四川航天烽火伺服控制技术有限公司,四川成都611130
出 处:《机床与液压》2024年第11期204-210,共7页Machine Tool & Hydraulics
基 金:国家重点研发计划(2019YFB2005100)。
摘 要:针对气动先导阀动态响应低的问题,在分析结构特点和工作原理的基础上,利用AMESim建立仿真模型,通过参数化仿真研究主阀弹簧刚度、弹簧预紧力、气源压力和节流孔大小对先导阀动态响应的影响,结果显示:各参数对气动先导阀动态响应特性的影响各不相同,很难通过调节某一参数得到最优解。在参数化仿真分析的基础上,基于SimV&Ver Math进行多参数优化仿真,利用贝叶斯+拟牛顿的优化算法得到最优解,将气动先导阀的总响应时间降低了7.2 ms,并通过试验验证了仿真分析的正确性。Based on the analysis of the structure characteristic and working principle,a simulation model was established using AMESim to address the issue of low dynamic response of pneumatic pilot valves.The effects of main valve spring stiffness,spring preload,air source pressure and throttle hole size on the dynamic response of the pilot valve were studied through parameterized simulation.The results show that the influence of each parameter on the dynamic response characteristics of the pneumatic pilot valve is different,and it is difficult to obtain the optimal solution by adjusting a certain parameter.On the basis of parameterized simulation analysis,a multi-parameter optimization simulation was conducted based on SimV & Ver Math.The optimal solution was obtained using Bayesian+quasi Newton optimization algorithm,which reduced the total response time of the pneumatic pilot valve by 7.2 ms.The correctness of the simulation analysis is verified through experiments.
关 键 词:气动先导阀 动态响应特性 SimV&Ver Math 多参数优化
分 类 号:TH137[机械工程—机械制造及自动化]
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