Zincing thickness control system and method

A technology of thickness control and quantity control, applied in hot dip plating process, metal material coating process, coating and other directions, can solve the problems of uneven coating, large overshoot, poor anti-disturbance and so on

Active Publication Date: 2015-08-19
浙江舟山至控智能装备技术有限公司
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Problems solved by technology

[0004] 1. The on-line measurement of coating thickness needs to use a thickness gauge. Due to the process requirements of galvanizing production, the installation position of the thickness gauge is often far away from the air knife, resulting in a large measurement lag in the system. At the same time, in the actual plating In zinc production, affected by upstream and downstream production capacity, the speed of the galvanizing line changes at any time, so the measurement lag time of the system is not a fixed value, but time-varying (generally 70 seconds to 120 seconds), subject to Due to the influence of external disturbances, the thickness of the coating has been in a fluctuating state. Directly using the information of the thickness gauge for closed-loop control of coating thickness feedback will result in a large overshoot and a long adjustment time, which further increases the difficulty of thickness control in galvanized production. , leading to large fluctuations in coating thickness and difficult to control product quality;
[0005] 2. The production process of galvanizing is affected by many complex physical factors such as aerodynamic force and boundary flow layer. The final thickness of the zinc layer is the result of the joint action of variables such as air knife pressure, air knife distance, and production line speed. These variables The principle of influence on the thickness of the coating is relatively complex and there are many disturbance factors, which have strong nonlinearity. It is difficult to establish an accurate system model by using the traditional mechanism modeling method;
[0006] 3. There are various external random disturbances in the actual industrial site, such as: changes in the composition and temperature of the zinc liquid, changes in plate shape, fluctuations in air knife pressure, etc. These external disturbances will affect the thickness of the coating and cause a large quality fluctuations
Due to the lack of effective control technology to overcome the above difficulties, coating thickness control has always been a difficult problem in galvanizing production. At present, most galvanizing lines in domestic iron and steel enterprises adopt manual control based on feedback information from thickness gauges. This method is restricted. Due to the operator's experience and sense of responsibility, the control accuracy is low, the anti-disturbance is poor, the transition time is long when the product specification changes, and the quality fluctuates greatly. It is often impossible to obtain the expected product quality, and even irregular operations that violate the process requirements
Uneven coating and large fluctuations in thickness force manufacturers to artificially increase the setting value of coating thickness to ensure that product quality still meets the requirements of thickness control indicators when the working conditions fluctuate greatly. hig

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[0041] In the following, the technical solutions in the embodiments of the present invention will be described and discussed clearly and completely in conjunction with the accompanying drawings of the present invention. Obviously, what is described here is only a part of the examples of the present invention, not all examples. The embodiments, and all other embodiments obtained by those of ordinary skill in the art without creative work, fall within the protection scope of the present invention.

[0042] In order to facilitate the understanding of the embodiments of the present invention, specific embodiments will be used as an example for further explanation and description in conjunction with the accompanying drawings, and each embodiment does not constitute a limitation to the embodiments of the present invention.

[0043] Such as figure 1 As shown, the present invention proposes a galvanizing thickness control system, including a feedforward control module 1 and a feedback cont...

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Abstract

The invention discloses a zincing thickness control system and method. Based on a feedforward plus feedback control structure, a neural network model is adopted to overcome the defect of low modeling accuracy in a traditional method, an integration-based varying lag time computing method and a time displacement offset correction technology are adopted to realize effective feedback of time varying large-lag measured information, and the difficulty of model mismatch caused by nonmeasurable external disturbance and operating point drift is overcome. The zincing thickness control system and method can be used for effectively overcoming the problems of large lag, nonlinearity and strong interference in a zincing production process and realizing automatic closed-loop control on plating thickness, thus achieving the effects of remarkably improving the product quality, reducing excessive zinc consumption, reducing switching time between products with different specifications, and the like.

Description

technical field [0001] The invention relates to the technical field of galvanizing process control, in particular to a galvanizing thickness control system and method. Background technique [0002] Galvanizing: here refers to hot-dip galvanizing, also called hot-dip galvanizing and hot-dip galvanizing, which is an effective metal anti-corrosion method and is mainly used in metal structure facilities in various industries. Hot-dip galvanizing is to immerse the rust-removed steel parts in the molten zinc solution, so that the surface of the steel components is attached with a zinc layer, so as to achieve the purpose of anti-corrosion. [0003] Galvanized products are widely used in construction, home appliances, automobiles and other industries due to their good corrosion resistance. The important technical indicators to measure the quality of galvanized products include the thickness and uniformity of the coating, that is, the thickness of the coating of galvanized products m...

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Application Information

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IPC IPC(8): C23C2/16
Inventor 陈鹏周玄昊王绍亮潘再生施一明叶莹吕勇哉
Owner 浙江舟山至控智能装备技术有限公司
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