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形控制
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  shape control
     The shape control of three units-1420. 1550. 2030mm continuous cold rolling mill, such as CVC technologyof 1420mm mill, UCMW mill type of 1550mm mill and DSR technology of the fifth stand of 2030mm mill are introduced.
     介绍了宝钢1420、1550、2030mm3套冷连轧机组采用的板形控制技术:1420mm机组的CVC技术,1550mm机组的UCMW机型,2030mm机组第5架的DSR技术。
短句来源
     Development and research of shape control technology about 1550mm VC roll skin mill
     1550mm CAL VC辊平整机板形控制技术研究
短句来源
     Research on Shape Control Technique for Baosteel 1550 CAL Planishing Mill
     宝钢1550CAL平整机板形控制技术的研究
短句来源
     Optimization of shape control of 1580mm hot strip rolling mill
     1580mm热轧板形控制优化
短句来源
     Difficulty for developping 2Cr13 cold work hardening plate is mainly on two aspects of hardness requirement and plate shape control.
     2Cr13冷作硬化板开发的难度主要在硬度要求及板形控制两方面。
短句来源
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  flatness control
     Improvement on the Strip Flatness Control Technology for 2030 mm Tandem Cold Rolling Mill
     宝钢2030mm冷连轧机板形控制技术的改进
短句来源
     The applications of profile and flatness control technologies,such as WRB,CVC,and dynamic work roll cooling, of Steckel mill of Jiuquan Iron and Steel Co.
     主要介绍了酒泉钢铁集团有限公司炉卷轧机板形控制技术———工作辊弯辊技术 (WRB)、连续可变凸度控制技术 (CVC)、动态工作辊冷却技术在调试和生产中的应用及其效果。
短句来源
     Software of Flatness Control Emulation Analysis of Cold Strip Rolling (FCEACSR)
     冷轧带钢板形控制仿真分析软件(FCEACSR)
短句来源
     Compared with traditional shape control technology, modern aluminium plate & strip mills have made great new progress on control means of shape, control accuracy and automatic flatness control (AFC) technology.
     与传统板形控制技术相比,现代铝板带轧机在板形控制手段、控制精度和自动平直度控制技术上都有新的进步。
短句来源
     TRANSFER MATRIX METHOD OF FLATNESS CONTROL
     板形控制的传递矩阵方法
短句来源
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  “形控制”译为未确定词的双语例句
     Experiment and Study about the Ability of Controling Plate Shape in the WRS Mill
     WRS轧机板形控制机能的实验研究
短句来源
     Flatness Characteristics and Flatness Controlling for 1700mm Aluminum Foil Mill
     1700mm高速铝箔轧机板形特性与板形控制实践
短句来源
     Profile Control Practices on 1500mm Single Stand Cold Mill
     莱钢1500mm单机架冷轧机组板形控制实践
短句来源
     Development of the theory and control technology of plate shape
     板形理论与板形控制技术的发展
     Optimization of Application of SmartCrown on Tandem Cold Rolling Mill
     SmartCrown冷连轧机板形控制新技术改进研究与应用
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  shape control
Phase error elimination in the Mx magnetometer and resonance line shape control in an unstable field using the technique of inva
      
Based on a fluidic shock shape control technique, this paper proposes a new concept of variable hypersonic inlet with fixed geometry, gives the realization scheme, and conducts a preliminary validation.
      
Preparation and shape control of β-Ni(OH)2 nano-particle
      
Simulation of type selection for 6-high cold tandem mill based on shape control ability
      
Robust shape control of beams with load uncertainties by optimally placed piezo actuators
      
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  flatness control
A new method of flatness control in cold rolling process Qiao, Jun-Fei Northeastern Univ.
      
During the development stage, we raised the flatness controllability by using a lubricant as one of the actuators for the flatness control.
      


In this work, the main factors affecting the shape of strip were presented. Some equations, which can serve as a theoretical basis of the manual or automatical control of the flatness and the thickness of strip were derived to quantitatively describe the indexes including shape index, profile index and the relationship between them. To meet the requirments, some measures have been proposed to control the variations of the flatness and transversal thickness of cold rolled strip by adjusting these factors based...

In this work, the main factors affecting the shape of strip were presented. Some equations, which can serve as a theoretical basis of the manual or automatical control of the flatness and the thickness of strip were derived to quantitatively describe the indexes including shape index, profile index and the relationship between them. To meet the requirments, some measures have been proposed to control the variations of the flatness and transversal thickness of cold rolled strip by adjusting these factors based on a theoretical analysis of these equations.

本文根据实践阐明影响板形的主要因素,定量的提出了标志板形的板形指数,板形指数(1)式和断面指数(2)式及其两者之间的关系(3)式。由两者关系分析了轧制时,保证板形平直的条件(4)(5)(6)式的横向厚度差。根据横向厚度差方程(7)式,分别或相互配合控制各影响因素得到板形平直的横向厚度差。(3)式和(7)式是板形控制的理论基础,人工手动控制和自动控制板形的出发点。根据(4)(5)式和(7)式可进行调整板形的理论计算。最后,为生产板形平直、横向厚度差小的冷轧板对原板及生产工艺提出了要求。

It is important to improve the quality of strip shape in present production. This paper offers some key factors which affect the strip shape, such as the original shape, patterns of work and back-up rolls, disposed of bending force and heat crown through the practical measurement and the theoratical calculation, in order to obtain an optimium strip shape.

带钢板形质量的提高,已成为当前生产中的重要问题。本文通过现场实测及理论计算,分析了原始板形,工作辊、支承辊型,弯辊力配置及热凸度等影响板形控制的主要因素,以寻求最佳板形的确定方法。

In a power system, both the active and reactive power demand may vary with time. Its node voltage and load flow vary as the power demand changes. The automatic control of voltage and reactive power, capable of makiog corrective decision instantly, is necessary for the restoration of the voltages at supervisory nodes and the reactive power flow on main tie lines to expected magnitude.On the basis of the sensitive matrix of control, the control equation in incremental form is derived.The solution of this equation...

In a power system, both the active and reactive power demand may vary with time. Its node voltage and load flow vary as the power demand changes. The automatic control of voltage and reactive power, capable of makiog corrective decision instantly, is necessary for the restoration of the voltages at supervisory nodes and the reactive power flow on main tie lines to expected magnitude.On the basis of the sensitive matrix of control, the control equation in incremental form is derived.The solution of this equation is quickly found by means of the pseudo-inverse matrix technique.A flow chart for the proposed method and three numerical examples are given in the paper.

电力系统自动电压与无功控制是当负荷随机变动时,通过对调节手段的控制,把系统中监视结点电压与主要联络线的无功潮流校正到预定的运行目标。 本文在控制灵敏度矩阵的基础上,导出增量形控制方程组,然后利用其伪逆矩阵迅速求出方程组的解。 本文编制了计算流程图和程序,并对三个算例进行了具体数值计算。

 
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