1. 四川大学机械工程学院,成都,610065
2. 中国工程物理研究院总体工程研究所,四川,绵阳,621900
: 2022-06-21。作者简介: 桂肃尧(1998—),男,硕士生
傅波(通信作者),男,教授。基金项目: 国家自然科学基金资助项目(52075179)
网络首发:2022-12-10,
纸质出版:2022
移动端阅览
桂肃尧, 张轩, 张仕双, 等. 液压伺服阀阀芯的动态特性分析与多目标优化[J]. 西安交通大学学报, 2022,56(12):33-45.
GUI Suyao, ZHANG Xuan, ZHANG Shishuang, et al. Dynamic Characteristic Analysis and Multi-Objective Optimization of Hydraulic Servo Valve Spool[J]. 2022, 56(12): 33-45.
桂肃尧, 张轩, 张仕双, 等. 液压伺服阀阀芯的动态特性分析与多目标优化[J]. 西安交通大学学报, 2022,56(12):33-45. DOI: 10.7652/xjtuxb202212004.
GUI Suyao, ZHANG Xuan, ZHANG Shishuang, et al. Dynamic Characteristic Analysis and Multi-Objective Optimization of Hydraulic Servo Valve Spool[J]. 2022, 56(12): 33-45. DOI: 10.7652/xjtuxb202212004.
为了提高液压伺服阀的动态响应特性
对液压伺服阀的阀芯结构进行了多目标优化研究
建立了阀芯结构参数与作用力之间的数学模型。以阀芯动态响应的超调量、振荡次数和上升时间作为优化目标
以阀芯的优化结构参数作为设计变量
数学地描述了阀芯动态特性多目标优化问题。分别采用NSGA-Ⅱ、SPEA2两种多目标进化算法与Simulink相结合对阀芯进行优化
评估了两种多目标进化算法的表现
得到了阀芯的最优设计参数。采用CFD、Simulink仿真验证了优化效果
结果表明:对应液压伺服阀入口压力工况为7、14、21 MPa时
作用在优化后阀芯上的稳态液动力相比优化前下降了37.10%、34.39%、30.53%; 优化后的上升时间平均降低了3.77 ms
平均改善了61.74%; 优化后的超调量平均改善了9.41%。
In order to improve the dynamic response characteristics of the hydraulic servo valve
a multi-objective optimization study is conducted on the spool structure of the hydraulic servo valve. A mathematical model between the structural parameters of the spool and the force acting on the spool is established. The multi-objective optimization problem of the dynamic characteristics of the spool is described mathematically with the overshoot
number of oscillations and rise time of the spool as the optimization objectives and the structural parameters of the spool as the design variables. Two multi-objective evolutionary algorithms
namely NSGA-II and SPEA2
are employed in combination with Simulink to optimize the spool. The performances of these two multi-objective evolutionary algorithms are evaluated and the optimal design parameters for the spool are determined. CFD and Simulink simulation are employed to verify the optimization. The results show that when the inlet pressure of the servo valve is set at 7 MPa
14 MPa and 21 MPa
the steady-state flow force acting on the optimized spool decreases by 37.10%
34.39%
and 30.53% compared with unoptimized spool. The optimized rise time is reduced by an average of 3.77 ms and improved by an average of 61.74%. The optimized overshoot is improved by an average of 9.41%.
李铁栓, 张幽彤, 王定标, 等. 基于多目标模拟退火算法的高速电磁阀优化设计 [J]. 车用发动机, 2010(4): 6-10.
LI Tieshuan, ZHANG Youtong, WANG Dingbiao, et al. Optimization design of high-speed solenoid based on multi-objective simulated annealing method [J]. Vehicle Engine, 2010(4): 6-10.
范立云, 周伟, 刘鹏, 等. 高速电磁阀动态响应的多目标优化 [J]. 哈尔滨工程大学学报, 2018, 39(1): 53-59.
FAN Liyun, ZHOU Wei, LIU Peng, et al. Multi objective optimization of dynamic response of high speed solenoid valve [J]. Journal of Harbin Engineering University, 2018, 39(1): 53-59.
SANGIAH D K, PLUMMER A R, BOWEN C R, et al. A novel piezohydraulic aerospace servovalve: part 1 Design and modelling [J]. Proceedings of the Institution of Mechanical Engineers: Part I Journal of Systems and Control Engineering, 2013, 227(4): 371-389.
SIMIC M, HERAKOVIC N. Reduction of the flow forces in a small hydraulic seat valve as alternative approach to improve the valve characteristics [J]. Energy Conversion and Management, 2015, 89: 708-718.
曹秉刚, 史维祥, 中野和夫. 内流式锥阀液动力及阀芯锥面压强分布的实验研究 [J]. 西安交通大学学报, 1995, 29(7): 7-13.
CAO Binggang, SHI Weixiang, KAZUO N. Experimental study on flow force and pressure distribution on the poppet of a converged flow poppet valve [J]. Journal of Xi'an Jiaotong University, 1995, 29(7): 7-13.
冀宏, 傅新, 杨华勇. 非全周开口滑阀稳态液动力研究 [J]. 机械工程学报, 2003, 39(6): 13-17.
JI Hong, FU Xin, YANG Huayong. Study on steady flow force of non-circular opening spool valve [J]. Journal of Mechanical Engineering, 2003, 39(6): 13-17.
王安麟, 吴小锋, 周成林, 等. 基于CFD的液压滑阀多学科优化设计 [J]. 上海交通大学学报, 2010, 44(12): 1767-1772.
WANG Anlin, WU Xiaofeng, ZHOU Chenglin, et al. Multidisciplinary optimization of a hydraulic slide valve based on CFD [J]. Journal of Shanghai Jiaotong University, 2010, 44(12): 1767-1772.
郑长松, 范家辉, 杜秋, 等. 基于CFD的液压滑阀流场特性与稳态液动力研究 [J]. 机床与液压, 2017, 45(17): 145-151.
ZHENG Changsong, FAN Jiahui, DU Qiu, et al. Study on characteristics of flow field and steady flow force of hydraulic spool valve based on CFD [J]. Machine Tool Hydraulics, 2017, 45(17): 145-151.
谢海波, 谭礼, 刘建彬, 等. 不同阀口形态对内流式锥阀液动力的影响 [J]. 液压与气动, 2019(1): 90-94.
XIE Haibo, TAN Li, LIU Jianbin, et al. Effect of different throttle configurations on flow force of converged flow poppet valve [J]. Chinese Hydraulics Pneumatics, 2019(1): 90-94.
张俊俊, 刘罡, 王江勇. 液压滑阀阀芯卡紧力研究 [J]. 机床与液压, 2014, 42(13): 71-73.
ZHANG Junjun, LIU Gang, WANG Jiangyong. Research on the clamping force of hydraulic slide valve [J]. Machine Tool Hydraulics, 2014, 42(13): 71-73.
王晓凯. 液压换向阀径向稳态液动力的研究 [J]. 液压与气动, 2020(12): 114-117.
WANG Xiaokai. Radial steady-state flow force of hydraulic directional valve [J]. Chinese Hydraulics Pneumatics, 2020(12): 114-117.
任恒, 袁红兵, 廉自生, 等. 基于正交试验设计的先导式比例减压阀动态特性优化 [J]. 液压与气动, 2020(7): 62-68.
REN Heng, YUAN Hongbing, LIAN Zisheng, et al. Optimization of dynamic characteristics of piloted proportional pressure reducing valve based on orthogonal experimental design [J]. Chinese Hydraulics Pneumatics, 2020(7): 62-68.
吴珊, 赵道新, 任晓军, 等. 基于遗传算法的海水液压溢流阀参数优化 [J]. 液压与气动, 2016(10): 37-41.
WU Shan, ZHAO Daoxin, REN Xiaojun, et al. The parameter optimization of seawater hydraulic relief valve based on genetic algorithm [J]. Chinese Hydraulics Pneumatics, 2016(10): 37-41.
陈晨, 王自勤, 田丰果, 等. 基于Simulink的液压系统动态特性仿真研究 [J]. 液压与气动, 2016(2): 67-71.
CHEN Chen, WANG Ziqin, TIAN Fengguo, et al. Dynamic characteristic simulation of hydraulic system based on Simulink [J]. Chinese Hydraulics Pneumatics, 2016(2): 67-71.
DEB K, PRATAP A, AGARWAL S, et al. A fast and elitist multiobjective genetic algorithm: NSGA-II [J]. IEEE Transactions on Evolutionary Computation, 2002, 6(2): 182-197.
ZITZLER E, LAUMANNS M, THIELE L. SPEA2: improving the strength Pareto evolutionary algorithm [EB/OL]. [2022-02-12]. https:∥doi.org/10.3929/ethz-a-004284029.
宋鸿尧. 液压阀设计与计算 [M]. 北京: 机械工业出版社, 1982.
陈奎生, 周雯娟, 郭媛, 等. 基于Fluent的液压滑阀阀芯卡紧力研究 [J]. 机床与液压, 2011, 39(15): 113-115, 143.
CHEN Kuisheng, ZHOU Wenjuan, GUO Yuan, et al. Analysis for clamping force of hydraulic slide-valve spool based on fluent [J]. Machine Tool Hydraulics, 2011, 39(15): 113-115, 143.
YANG Y S, SEMINI C, TSAGARAKIS N G, et al. Water hydraulics-a novel design of spool-type valves for enhanced dynamic performance [C]∥2008 IEEE/ASME International Conference on Advanced Intelligent Mechatronics. Piscataway, NJ, USA: IEEE, 2008: 1308-1314.
陆倩倩, 阮健, 李胜, 等. 沉割槽对滑阀阀芯径向卡紧力的影响 [J]. 西安交通大学学报, 2018, 52(6): 76-83.
LU Qianqian, RUAN Jian, LI Sheng, et al. Effects of cutting groove on radial clamping force of a slide valve's spool [J]. Journal of Xi'an Jiaotong University, 2018, 52(6): 76-83.
PAN Xudong, WANG Guanglin, LU Zesheng. Flow field simulation and a flow model of servo-valve spool valve orifice [J]. Energy Conversion and Management, 2011, 52(10): 3249-3256.
SIMON D. Evolutionary optimization algorithms: biologically inspired and population-based approaches to computer intelligence [M]. New York: John Wiley Sons, 2013.
李跃松, 朱玉川. 电液伺服阀建模与Simulink仿真 [M]. 北京: 机械工业出版社, 2020.
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