Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating

Different primary recrystallized grain sizes were obtained by controlling decarburization process in grain oriented silicon steel produced by low temperature slab reheating technique. The effect of primary grain size on secondary recrystallization and magnetic properties was studied. The appropriate...

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Main Authors: LIU Gong-tao, LIU Zhi-qiao, YANG Ping, MAO Wei-min
Format: Article
Language:zho
Published: Journal of Materials Engineering 2018-01-01
Series:Journal of Materials Engineering
Subjects:
Online Access:http://jme.biam.ac.cn/CN/Y2018/V46/I1/16
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spelling doaj-ac709a1af04f46b8b6593fcb55865ea32020-11-24T23:46:44ZzhoJournal of Materials EngineeringJournal of Materials Engineering1001-43811001-43812018-01-01461162410.11868/j.issn.1001-4381.2016.000178201801000178Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab ReheatingLIU Gong-tao0LIU Zhi-qiao1YANG Ping2MAO Wei-min3School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaSchool of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, ChinaDifferent primary recrystallized grain sizes were obtained by controlling decarburization process in grain oriented silicon steel produced by low temperature slab reheating technique. The effect of primary grain size on secondary recrystallization and magnetic properties was studied. The appropriate nitrogen content after nitriding was explored in case of very large primary grain size, and the effect of {411}〈148〉 primary recrystallized texture on the abnormal growth behavior was discussed. The results show that an increase in average primary grain size from 10<i>μ</i>m to 15<i>μ</i>m leads to an increase of secondary recrystallization temperature and a sharper Goss texture with higher magnetic permeability, in the condition of a very large average primary grain size of 28<i>μ</i>m, the suitable amount of nitrogen increases to about 6&#215;10<sup>-4</sup>. The {411}〈148〉 oriented grains in primary recrystallized microstructure can easily grow into larger sizes due to their size advantage, and thus hinder the abnormal growth of secondary grains, moreover, the hindering effect is more pronounced in the abnormal growth of Brass-oriented grains due to their misorientation with low migration rate other than Goss grains.http://jme.biam.ac.cn/CN/Y2018/V46/I1/16nitridingtexturesecondary recrystallizationgrain oriented silicon steel
collection DOAJ
language zho
format Article
sources DOAJ
author LIU Gong-tao
LIU Zhi-qiao
YANG Ping
MAO Wei-min
spellingShingle LIU Gong-tao
LIU Zhi-qiao
YANG Ping
MAO Wei-min
Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating
Journal of Materials Engineering
nitriding
texture
secondary recrystallization
grain oriented silicon steel
author_facet LIU Gong-tao
LIU Zhi-qiao
YANG Ping
MAO Wei-min
author_sort LIU Gong-tao
title Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating
title_short Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating
title_full Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating
title_fullStr Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating
title_full_unstemmed Effect of Primary Recrystallized Microstructure and Nitriding on Secondary Recrystallization in Grain Oriented Silicon Steel by Low Temperature Slab Reheating
title_sort effect of primary recrystallized microstructure and nitriding on secondary recrystallization in grain oriented silicon steel by low temperature slab reheating
publisher Journal of Materials Engineering
series Journal of Materials Engineering
issn 1001-4381
1001-4381
publishDate 2018-01-01
description Different primary recrystallized grain sizes were obtained by controlling decarburization process in grain oriented silicon steel produced by low temperature slab reheating technique. The effect of primary grain size on secondary recrystallization and magnetic properties was studied. The appropriate nitrogen content after nitriding was explored in case of very large primary grain size, and the effect of {411}〈148〉 primary recrystallized texture on the abnormal growth behavior was discussed. The results show that an increase in average primary grain size from 10<i>μ</i>m to 15<i>μ</i>m leads to an increase of secondary recrystallization temperature and a sharper Goss texture with higher magnetic permeability, in the condition of a very large average primary grain size of 28<i>μ</i>m, the suitable amount of nitrogen increases to about 6&#215;10<sup>-4</sup>. The {411}〈148〉 oriented grains in primary recrystallized microstructure can easily grow into larger sizes due to their size advantage, and thus hinder the abnormal growth of secondary grains, moreover, the hindering effect is more pronounced in the abnormal growth of Brass-oriented grains due to their misorientation with low migration rate other than Goss grains.
topic nitriding
texture
secondary recrystallization
grain oriented silicon steel
url http://jme.biam.ac.cn/CN/Y2018/V46/I1/16
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