valve cylinder

英 [vælv ˈsɪlɪndə(r)] 美 [vælv ˈsɪlɪndər]

网络  阀筒

化学



双语例句

  1. Research on Proportional Pneumatic Piezoelectric Valve and Accurate Drive of the Atmospheric Pressure Jar; Position Control in Pneumatic Proportional Valve and Cylinder System Based on Fuzzy Control
    压电式气动比例阀及气缸精密驱动研究基于模糊控制的气动比例阀缸系统的位置控制
  2. Study on Modeling and Simulation of Valve Controlled Cylinder Servo System for Hydraulic Bending Roll System
    液压弯辊阀控缸伺服系统的建模及仿真研究
  3. Liquid cooled, four stroke, transverse four cylinder, DOHC, 4 valve per cylinder.
    水冷,四冲程,横向四缸,双凸轮轴,4缸,每阀。
  4. The Modular Modeling and Research of Valve Controlling Cylinder Based on MATLAB/ SIMULINK
    基于MATLAB/SIMULINK的阀控缸模块化建模与研究
  5. General pneumatic electromagnetic guide, the process of performing actions cylinder can also be manually controlled pilot valve cylinder process of the implementation of the action.
    一般气动是电磁先导、气缸执行动作的过程,也可用手控制先导阀气缸执行动作的过程。
  6. Position Control in Pneumatic Proportional Valve and Cylinder System Based on Fuzzy Control
    基于模糊控制的气动比例阀缸系统的位置控制
  7. The mathematical model for describing valve controlled cylinder electro-hydraulic control system in which the high-speed ON/ OFF valves act as guiding valves have been put forward. The effects of input signal and system parameter have been analyzed through digital simulation.
    建立了以高速开关阀为先导级的阀控缸电液控制系统的数学模型,通过对模型的数字仿真,分析了输入信号及系统参数对输出的影响。
  8. The design of variable mechanism is that of valve controlled cylinder, and its most important principle is the power-matching principle.
    变量机构的设计实际上就是一种阀控缸的设计,在阀控缸设计中,所应遵循的最重要的基本原理就是功率匹配原理。
  9. Obtain the mathematics model of valve control cylinder drive system, study the static state characteristic of the system, as well.
    建立阀控液压缸系统的数学模型,分析该系统的静态特性。
  10. Hydraulic Damper Test Bench Employing Technique of the High Performance Proportional Valve Controlled Cylinder
    采用高性能比例阀控缸技术的液压减振器试验台
  11. Study on modeling and simulation of valve controlling cylinder servo system
    阀控缸伺服系统建模与仿真研究
  12. Soft Measuring Method of Load Force in a Valve Controlled Cylinder System
    基于经验的阀控液压缸负载阻力的软测量方法
  13. In the circumstances of zero flooding wasting, speed control and adjustment of working devices can be realized by using variable machine for adjusting variable pump's displacement in the system of electrohydraulic proportional valve and cylinder powered by variable displacement pump.
    在变量泵提供动力的电液比例阀控缸系统中,利用变量机构实时调节变量泵排量,可在不增加溢流损耗的情况下,实现工作装置速度的控制与调节。
  14. Three Dimensional Simulation of Air Motion in Helical Port Valve Cylinder
    螺旋进气道-气门-气缸内空气运动的3维数值模拟
  15. A novel pneumatic position servo system of the valve controlled cylinder by adopting two electro-pneumatic pressure proportional valves is presented, and using the self-tuning adaptive control scheme of pole placement approach the real-time control of the system is implemented.
    提出采用两个电-气压力比例阀构成新颖的阀控缸气动位置伺服系统,并运用极点配置的自校正自适应控制方法实现了气缸活塞位移的实时控制。
  16. Strength Calculation and Life Expectancy Evaluation of Steam Turbine Valve and Cylinder Casings
    汽轮机阀壳与汽缸强度计算及寿命评估
  17. Dynamic Analysis of Valve Controlling Cylinder in Hydraulic Turbine Governor
    水轮机调速器中阀控缸动态特性分析
  18. According to the experimental results of the static and dynamic performance of the electrode servo control system of an electrical furnace in a steel plant, we identify the mathematical model of the valve controlled cylinder system with deadband nonlinearity.
    本文根据对某钢厂引进电炉的电极伺服控制系统的静、动态特性的测试,辨识出具有死区非线性阀控缸系统的数学模型。
  19. The Study about Structure of Multi-valve Cylinder Head
    多气门气缸盖结构的研究
  20. The three dimensional flow field of helical intake port valve cylinder during the steady flow rig experiment was simulated. The influences of the shape of intake port and offset of valve on the characteristics of flow field and swirl ratio were analyzed.
    对稳流试验中螺旋进气道-气门-气缸内3维流场进行了数值模拟,分析了气道形状、气门偏置对流场特征和涡流比的影响。
  21. Cushioning and positioning of proportional valve-cylinder system controlled by a microcomputer
    微机控制比例阀&缸液压系统的缓冲与定位
  22. Simulation study of valve control cylinder pneumatic velocity control by PID
    阀控缸气动速度PID控制仿真研究
  23. This paper analyzed the power losing on traditional hydraulic system, designed hydraulic hitch system oil circuit, A mathematical model of valve control cylinder is established.
    分析了传统拖拉机液压系统存在的功率损失的问题,设计了液压悬挂系统油路,建立了阀控液压缸的数学模型,设计的液压系统比传统拖拉机液压悬挂系统更节能。
  24. Analyze package layout focus on cam phase controller, oil pressure control valve, cylinder head VVT oil supply gallery etc. And conduct test verification and data analysis on engine test bed.
    重点对凸轮相位控制器、油压控制电磁阀、缸盖VVT供油通路等布置方案进行了分析。并且通过发动机台架试验进行了试验验证和数据分析。
  25. Another DSP system also connects the man-machine interface, such as solenoid valve cylinder implementing agencies to achieve the parameters of the tablet input of the opening and closing baffle, the tick tablets function as waste.
    另外DSP系统还连接了人机界面,汽缸电磁阀等执行机构,实现药片各种参数的输入挡板的开闭,药片的剔废等辅助功能。
  26. The simulation results verify the theoretical analysis of twin spool valve asymmetrical cylinder system, and provide the instructive theoretical basis and the control method to research the twin spool valve technique.
    仿真结果验证了双阀芯控制非对称缸系统的理论分析,为双阀芯系统的进一步研究提供了具有指导意义的理论依据和控制方法。
  27. Experiment results show that all the models and simulation data are right and credible, and also verify the correctness of the theoretical analysis of twin spool valve asymmetrical cylinder system.
    实验表明,所建模型和仿真数据是正确、可靠的,同时也验证了对双阀芯系统的理论分析正确性。
  28. Base on the position closed-loop model and rolling force closed-loop model, the dissertation separately analyzes the performance parameters of fluid power key elements such as servo valve, cylinder, pipe and its influence on hydraulic AGC systemic dynamic response and steady state accuracy.
    基于位置闭环模型和轧制力闭环模型,分析了伺服阀、液压缸、管道等液压关键元件及性能参数对液压AGC系统的动态响应和稳态精度的影响。
  29. For the valve controlling cylinder speed control system is instability, used PID control method proofread the system, Choose a suitable PID parameters.
    针对阀控缸速度控制系统的不稳定状况,采用PID控制方式对系统进行校正,选择了适宜的PID参数。