厚度控制

  • 网络thickness control;agc;HAGC
厚度控制厚度控制
  1. 在平板厚度控制系统基本原理的基础上推导出楔形板厚度控制系统(AGC系统)基本原理,建立了楔形板AGC系统各个环节的数学模型。

    Basic on the plate AGC theory deduce the longitudinal profiled plate AGC theory , establish the mathematical model in all aspects of longitudinal profiled AGC system .

  2. 微米级冷轧带钢厚度控制系统

    Micro-level AGC system for cold-strip mill

  3. 基于重复控制和鲁棒PID的冷轧带钢厚度控制系统

    Cold rolled strip gauge control system based on repetitive control and robust PID

  4. 基于泛化回归RBF神经网络铝带厚度控制系统的辨识

    Identification Based on GR-RBF NN for Thickness Control of Aluminum Strip

  5. LOGO!控制器在纸机横向厚度控制系统的应用

    Application of Siemens LOGO ! on Caliper Profile Control System of Paper Machine

  6. 提高AGC厚度控制精度及其百分比的研究

    Research on Improving Automatic Gauge Control Accuracy and Percentage

  7. 最后对比在普通PID控制器下和最优模糊PID控制器带钢厚度控制情况,得出相应结论。

    Finally contrast ordinary PID controller and the optimal fuzzy PID controller in same strip thickness control condition , draw the conclusion .

  8. 压力自动厚度控制(AGC)模型研究与改进

    Development of a Pressure Automatic Gauge Control Model

  9. 液压AGC是现代板带厚度控制的关键技术之一。

    Hydraulic AGC is one of the key technology of modern strip thickness control .

  10. AGC在精轧自动厚度控制中的应用

    Application of AGC in thickness auto-control

  11. 板厚精度是冷连轧带钢的最重要的质量指标之一,自动厚度控制(AutomaticGaugeControl)是提高带钢质量的关键技术。

    The thickness accuracy is one of the most important quality indexes for cold strip rolling production and automatic gauge control is the key technology to improve the quality of strip .

  12. DSR辊在板形、厚度控制中的应用

    The Application of DSR to Controlling the Flatness and Thickness of Strip

  13. 板厚精度与板形精度是铝薄板带材产品的两大质量指标,自动厚度控制(AutomaticGaugeControl)是提高铝薄板带材质量的关键技术。

    The thickness accuracy and shape accuracy are the two important quality indexes of aluminum plate strip , and automatic gauge control is the key technology to improve the quality of aluminum plate strip .

  14. 轧钢厚度控制DDC系统的硬件系统;

    Hardware system of DDC ;

  15. 介绍与分析目前最新的冷轧薄板物流自动厚度控制(MassFlowAGC)及激光直接测量带钢速度技术,厚度偏差可控制在≤±0.7%;

    The latest technology of mass flow AGC and laser velocity detector are introduced and analyzed . By this technology , strip thickness deviation can be controlled within the range of ± 0.7 % .

  16. MonteCarlo模拟能够得到膜系所要求的膜层厚度控制精度范围,膜系的相对灵敏度分析可以指明每层膜对误差要求的苛刻程度;

    Monte Carlo simulation can obtain the range of the controlling precision for the film thickness , tolerance on the thickness of the each layer was obtained by dynamic sensitivity analysis ;

  17. 轧机厚度控制系统是轧机最重要的部分之一,本文介绍了常规PID控制算法的理论基础,分析了模糊PID控制较之于常规PID控制的优势,并详细叙述了模糊PID控制器的设计过程。

    This paper describes the conventional PID control algorithm theoretical basis , and analyzes the fuzzy PID control compared to conventional PID control advantages , and detailed description of the fuzzy PID controller design process .

  18. 将人工智能技术引入到AGC带钢厚度控制系统中可使控制系统具有智能化,提高带钢厚度的控制精度。

    The control system will be intelligent by introducing artificial intelligence technique into AGC strip steel thickness control system to increase control accuracy of strip steel thickness .

  19. 本文结合企业实际项目,在分析轧机板坯厚度控制系统及其运行机理的基础上,建立了比较完善的液压AGC系统的动态数学模型。

    This dissertation establishes the dynamic model on the basis of analyzing the thickness control of the plate rolling mill with an actual project of the company .

  20. 论述了热连轧机厚度控制AGC技术的各种补偿功能以及绝对值AGC的实际应用效果。

    This paper formulates the evolution of AGC technology concerning thickness control in hot strip mill , various retrieve function and the practical application effect of absolute AGC .

  21. 横向厚度控制系统对新闻纸质量起着重要的作用,针对早期从美国IMPACT(英沛)公司进口的横向厚度控制系统继电器出现的问题,本文介绍了采用小型PLC代替继电器工作的应用。

    Caliper profile control system is very important for newsprint quality . For the problem about relays of caliper profiling control system in the early IMPACT system of USA , this article describes the application of replacing relays with miniature PLC .

  22. 厚度控制系统特别是AGC系统对中厚板板形的开环控制有一定影响,特别是刚度偏小的轧机在轧制宽薄中厚板时容易出现边浪。

    The gauge control system especial AGC system can deteriorate open loop control of plate shape especially when the mill rigidity is small , making edge wave of rolling plate .

  23. 为进一步提高带坯全长厚度控制精度,需提高本体头部命中率,以便绝对AGC投入。

    For improving further automatic gauge control accuracy of the whole strip , it is necessary to increase the main strip head percentage in order to launch into absolute AGC .

  24. 然后在充分调研的基础上,以MCGS和MATLAB为平台,设计和仿真了一个双向拉伸薄膜厚度控制系统;最后对论文的工作进行了总结和展望。

    After enough investigation , a thickness controlling system for biaxially oriented polypropylene is designed and simulated based on MCGS and MATLAB . The last part is the conclusion of the study and the outlook .

  25. 出口厚度控制(AutomaticGaugeControl,简称AGC)系统是冷轧机AGC系统的一个组成部分,主要通过控制张力,调节辊缝以保持其恒定,属于精调AGC。

    Exit-AGC ( Automatic Gauge Control ) is one part of AGC system of cold rolling mill . It is a kind of small-adjust AGC system which keeps the gauge invariable by controlling the tension between the last mill and the coiler .

  26. 液压自动厚度控制(HAGC)是板材轧制的关键技术。

    The hydraulic automatic gauge control ( HAGC ) isa key technology in plate rolling .

  27. 前言:阐述了轧钢厚度控制中的微型计算机系统,内容有:①轧钢厚度控制的工作原理;②轧钢厚度控制DDC系统的硬件系统;③轧钢厚度控制DDC系统的软件。

    Micro-computer system in controlling the thickness of rolled steel is introduced from those aspects : ① work theory of controlling ;② hardware system of DDC ;③ software system of DDC .

  28. 在本体厚度控制中,提出了基于相位补偿的轧辊偏心控制方案,分析其特点及基于相位补偿控制的优越性,并给出实际的F3机架轧制力滤波效果。

    The controller of roller eccentricity based on phasic compensation strategy is presented , and its characteristics and superiority are analyzed . The actual filtering effects of F3 rolling force are given .

  29. 分析、讨论了冷轧应用的各种厚度控制的优缺点,介绍质量流量厚度控制原理和控制精度极高的微米级带钢厚控(μAGC)系统及其可能产生的经济效益。

    He merits and defects of various AGCs used for cold-strip mill are analyzed and discussed , and the principle of mass flow gage control and the micro-level AGC system as well as itS possible economic benefits produced are introduced .

  30. 设计了基于数字信号处理器DSP的热连轧自动厚度控制(AGC)实时仿真器,建立了调厚过程压下系统和变形区的动态模型。

    A real-time simulator of Automatic Gauge Control ( AGC ) for hot-rolling mill based on Digital Signal Processors ( DSP ) was proposed . The models of the hydraulic cylinder for Automatic Position Control ( APC ) and the deformation area of each stand were built .