Establishment of FeO Thickness Percentage Model of High Carbon Steel Coil at Cooling Line and Its Application
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Establishment of FeO Thickness Percentage Model of High Carbon Steel Coil at Cooling Line and Its Application
Special SteelVol. 37, Issue 2, Pages: 8-11(2016)
作者机构:
1. 武汉科技大学钢铁冶金及资源利用省部共建教育部重点实验室,武汉,430081
2. 武汉钢铁股份有限公司,武汉,430083
作者简介:
基金信息:
DOI:
CLC:
Received:26 October 2015,
Online First:05 August 2022,
Published:05 August 2016
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王煜, 程晓茹, 范敬国, et al. Establishment of FeO Thickness Percentage Model of High Carbon Steel Coil at Cooling Line and Its Application[J]. Special Steel, 2016, 37(2): 8-11.
DOI:
王煜, 程晓茹, 范敬国, et al. Establishment of FeO Thickness Percentage Model of High Carbon Steel Coil at Cooling Line and Its Application[J]. Special Steel, 2016, 37(2): 8-11.DOI:
Establishment of FeO Thickness Percentage Model of High Carbon Steel Coil at Cooling Line and Its Application
The iron-oxide scale total thickness and FeO layer thick percentage of 72A high carbon steel (0.67%-0.73% C) coils have markedly influence on coil stripping performance. With using artificial neural networks and mathematical method the BP network model is established to realize the complex non-linear mapping relationship between the cooling schemes during oxidation process of high carbon steel wire and the formed FeO layer thickness percentage after oxidation. Compared between measured parameters and network simulation results
it is obtained that the training accuracy of BP network is very high and has better generalization ability to quite well response the effect of each factor on FeO layer thickness percentage. The production application results show that based on BP network simulation results to improve cooling process
suitable decreasing wire laying-off temperature and increasing cooling speed at 850-720℃,the FeO layer thickness percentage of scale decreases in order to improve the mechanical peeling performance.