Efficient adaptive method for mathematical model of aluminum cold rolling mill

A mathematical model, self-adaptive technology, applied in the direction of self-adaptive control, instrument, control/regulation system, etc., can solve the problems of low calculation accuracy of rolling parameters, few mathematical models, poor accuracy, etc., to improve the preset control Accuracy and product quality, strong practicability, and the effect of improving self-adaptive accuracy

Active Publication Date: 2011-04-06
CHINA NON-FERROUS METALS PROCESSING TECH CO LTD
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Problems solved by technology

[0003] At present, there are few studies on mathematical models of aluminum cold rolling mills in my country, and there is a lack of mature and reliable mathematical models for the rolling process with strong production practicability. The rolling parameters are mainly calculated by simple models with poor accuracy. Calculation accuracy is very low

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  • Efficient adaptive method for mathematical model of aluminum cold rolling mill
  • Efficient adaptive method for mathematical model of aluminum cold rolling mill
  • Efficient adaptive method for mathematical model of aluminum cold rolling mill

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Embodiment Construction

[0025] The invention proposes an efficient self-adaptive method for the mathematical model of an aluminum cold rolling mill, figure 1 It is a schematic diagram of the implementation process of this method, and the specific detailed steps are:

[0026] (1) During the pass rolling process, the measured data of each rolling parameter is collected and stored for subsequent mathematical model self-adaptation;

[0027] (2) The pass rolling ends, and the mathematical model self-adaptation is started;

[0028] (3) Acquisition of measured data, according to the status of the rolling process, limit checking and exception handling are performed on the measured data of the rolling process of this pass;

[0029] (4) Calculation of rolling characteristic parameters, according to specification data such as material, deformation resistance, width, entrance thickness, exit thickness, annealing thickness, etc., calculate the rolling characteristic parameters of this pass;

[0030] (5) After t...

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Abstract

The invention provides an efficient adaptive method for a mathematical model of an aluminum cold rolling mill. Aiming at the characteristics of flexible production arrangement, various lane specifications and the like of an aluminum cold rolling process, the efficient adaptive method for the mathematical model is designed under the premise of calculation and determination methods for designing rolling characteristic parameters so as to realize the efficient automatic revision of each mathematical model in the process control system of the aluminum cold rolling mill. According to the rolling process, the parameters are measured actually to improve the computational accuracy of the mathematical model. The method gives consideration to both accuracy and efficiency of adaptive revision and has the characteristics of high computation speed, strong practicality and the like.

Description

technical field [0001] The invention relates to an automatic correction method for a mathematical model of a rolling process, in particular to an efficient adaptive method for a mathematical model of an aluminum cold rolling mill applied in a process control system. Background technique [0002] In most domestic aluminum cold rolling mills, the production process is relatively flexible, and the rolling passes have various specifications. Due to the lack of high-precision mathematical models and adaptive methods, the prediction accuracy of rolling parameters is difficult to meet the requirements of rolling process and equipment conditions, which restricts the improvement of aluminum strip production stability, production efficiency and product precision. With the development of computer control technology, the equipment technology level of aluminum cold rolling mill is getting higher and higher. Improving the prediction control accuracy of rolling parameters has important pra...

Claims

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Application Information

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IPC IPC(8): G05B13/04
Inventor 彭鹏王仁忠李迪赵德方徐健华
Owner CHINA NON-FERROUS METALS PROCESSING TECH CO LTD
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