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Erschienen in: BHM Berg- und Hüttenmännische Monatshefte 11/2021

13.10.2021 | Originalarbeit

The Evolution of Coating Control Systems as the Need for New Coated Products Expands

verfasst von: Owen Pearcey, Huntley Brown, Ivan Marincic, Joel Tham

Erschienen in: BHM Berg- und Hüttenmännische Monatshefte | Ausgabe 11/2021

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Abstract

Hatch has been developing and deploying a model-based coating control system for over 25 years. The resultant physics-based gas wiping process model has been adapted to a wide variety of equipment and coatings now being produced by the major steel producers. As the coating control technology has matured and the processing ability of PLCs has increased, the process model and control system have been migrated from computers to industrially robust PLCs.
The coated product market is moving from traditional zinc and zinc/aluminium coatings and carbon steel substrates to more advanced products with a wide range of coating and substrate properties. At the same time, the relentless demand to lower production costs and increase product quality needs to be met. The Hatch process model, through the addition of techniques such as the parameterisation of the air wiping process, has matured over time to meet these demands. Strip stabilisation and flattening at the wiping zone have become commonplace and can be attained using Electromagnetic Stabilisation (EMS) or Air Floatation Stabilisation (AFS).
Tighter requirements, both in the processing of magnesium-dosed coatings and the introduction of Advanced High Strength Steels (AHSS) and other 3rd Generation steels, require the implementation of even more advanced control strategies. Coating process control is now moving into the realm of managing strip shape effects. Hatch’s model-based coating control system can now include passline tracking using laser measurement techniques and is being further developed to include active crossbow control.
This paper presents the current state of coating control systems and the progress towards the next evolutionary step, which is the use of crossbow modelling and active crossbow correction to manage the strip shape prior to the gas wiping.

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Literatur
1.
Zurück zum Zitat Masui, T.; Kaseda, Y.; K. Ando: Warp Control in Strip Processing Plant (Iron and Steel Research Laboratories, Sumitomo Heavy Metals), ISIJ International, 31 (1991), no 3, pp 262–276CrossRef Masui, T.; Kaseda, Y.; K. Ando: Warp Control in Strip Processing Plant (Iron and Steel Research Laboratories, Sumitomo Heavy Metals), ISIJ International, 31 (1991), no 3, pp 262–276CrossRef
2.
Zurück zum Zitat Dubois, M: Use of Stabilizer Rolls for Strip Flatness While Wiping (Cockerill Sambre), Galvanizers Association, 1998 Dubois, M: Use of Stabilizer Rolls for Strip Flatness While Wiping (Cockerill Sambre), Galvanizers Association, 1998
3.
Zurück zum Zitat Brown, H.; Marincic, I.; Pearcey, O.; Roberts, M.; Rudge, D.; Tham, J.: Hatch Coating Equipment, The New Operational Advantages, Hatch Ltd., Galvanizers Association, 2019 Brown, H.; Marincic, I.; Pearcey, O.; Roberts, M.; Rudge, D.; Tham, J.: Hatch Coating Equipment, The New Operational Advantages, Hatch Ltd., Galvanizers Association, 2019
4.
Zurück zum Zitat Masui, T.; Kaseda, Y.: Control of Buckling and Crossbow in Strip Processing Lines (Iron and Steel Research Laboratories, Sumitomo Heavy Metals), Iron and Steel Engineer, 71 (1994), no 9, pp 14–20 Masui, T.; Kaseda, Y.: Control of Buckling and Crossbow in Strip Processing Lines (Iron and Steel Research Laboratories, Sumitomo Heavy Metals), Iron and Steel Engineer, 71 (1994), no 9, pp 14–20
Metadaten
Titel
The Evolution of Coating Control Systems as the Need for New Coated Products Expands
verfasst von
Owen Pearcey
Huntley Brown
Ivan Marincic
Joel Tham
Publikationsdatum
13.10.2021
Verlag
Springer Vienna
Erschienen in
BHM Berg- und Hüttenmännische Monatshefte / Ausgabe 11/2021
Print ISSN: 0005-8912
Elektronische ISSN: 1613-7531
DOI
https://doi.org/10.1007/s00501-021-01161-8

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