Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron

We undertook a three-dimensional analysis of the recrystallization that occurs in pure iron from the viewpoint of consistency between the growth direction of the recrystallized ferrite grains and the Johnson-Mehl-Avrami-Kolmogorov (JMAK) theory. Cold-rolled specimens were heated to 550 °C and, then,...

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Main Authors: Toshiaki Matsui, Toshio Ogawa, Yoshitaka Adachi
Format: Article
Language:English
Published: Elsevier 2019-08-01
Series:Results in Materials
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590048X19300020
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spelling doaj-720291fc0f3f42a3a8813666387b11a32020-11-25T03:41:09ZengElsevierResults in Materials2590-048X2019-08-011100002Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure ironToshiaki Matsui0Toshio Ogawa1Yoshitaka Adachi2Department of Physical Science and Engineering, School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi, 464-8603, JapanDepartment of Materials Design Innovation Engineering, Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi, 464-8603, Japan; Corresponding author.Department of Materials Design Innovation Engineering, Graduate School of Engineering, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi, 464-8603, JapanWe undertook a three-dimensional analysis of the recrystallization that occurs in pure iron from the viewpoint of consistency between the growth direction of the recrystallized ferrite grains and the Johnson-Mehl-Avrami-Kolmogorov (JMAK) theory. Cold-rolled specimens were heated to 550 °C and, then, held at that temperature for a range of durations. The recrystallization behavior during the annealing was investigated both theoretically and experimentally. The formation of subgrains in non-recrystallized ferrite grains was found to occur before the start of recrystallization. Additionally, the fraction that recrystallized increased with the duration at 550 °C, and the slope became gradual after the annealing duration exceeded 60 s. The values of the Avrami exponent in the early and later stages of annealing were 1.86 and 0.37, respectively. Based on the JMAK theory, the growth direction of the recrystallized ferrite grains was assumed to be one-dimensional. On the other hand, the two- and/or three-dimensional growth of the recrystallized ferrite grains was confirmed by the three-dimensional analysis. Using a modified JMAK equation that takes the effect of recovery in recrystallization during annealing into consideration, the experimental data was found to be in good agreement with the modified JMAK plot. Thus, the inconsistency between the theoretical and experimental results could be attributed to the interaction between the recovery and recrystallization.http://www.sciencedirect.com/science/article/pii/S2590048X19300020RecoveryRecrystallizationThree-dimensional analysisJMAK equation
collection DOAJ
language English
format Article
sources DOAJ
author Toshiaki Matsui
Toshio Ogawa
Yoshitaka Adachi
spellingShingle Toshiaki Matsui
Toshio Ogawa
Yoshitaka Adachi
Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron
Results in Materials
Recovery
Recrystallization
Three-dimensional analysis
JMAK equation
author_facet Toshiaki Matsui
Toshio Ogawa
Yoshitaka Adachi
author_sort Toshiaki Matsui
title Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron
title_short Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron
title_full Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron
title_fullStr Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron
title_full_unstemmed Relationship between three-dimensional microstructure and Avrami exponent for recrystallization in pure iron
title_sort relationship between three-dimensional microstructure and avrami exponent for recrystallization in pure iron
publisher Elsevier
series Results in Materials
issn 2590-048X
publishDate 2019-08-01
description We undertook a three-dimensional analysis of the recrystallization that occurs in pure iron from the viewpoint of consistency between the growth direction of the recrystallized ferrite grains and the Johnson-Mehl-Avrami-Kolmogorov (JMAK) theory. Cold-rolled specimens were heated to 550 °C and, then, held at that temperature for a range of durations. The recrystallization behavior during the annealing was investigated both theoretically and experimentally. The formation of subgrains in non-recrystallized ferrite grains was found to occur before the start of recrystallization. Additionally, the fraction that recrystallized increased with the duration at 550 °C, and the slope became gradual after the annealing duration exceeded 60 s. The values of the Avrami exponent in the early and later stages of annealing were 1.86 and 0.37, respectively. Based on the JMAK theory, the growth direction of the recrystallized ferrite grains was assumed to be one-dimensional. On the other hand, the two- and/or three-dimensional growth of the recrystallized ferrite grains was confirmed by the three-dimensional analysis. Using a modified JMAK equation that takes the effect of recovery in recrystallization during annealing into consideration, the experimental data was found to be in good agreement with the modified JMAK plot. Thus, the inconsistency between the theoretical and experimental results could be attributed to the interaction between the recovery and recrystallization.
topic Recovery
Recrystallization
Three-dimensional analysis
JMAK equation
url http://www.sciencedirect.com/science/article/pii/S2590048X19300020
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