Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test

In this paper, the static softening mechanism of a 2219 aluminum alloy was studied based on a double-pass isothermal compression test. For the experiment, different temperatures (623 K, 723 K, and 773 K), strain rates (0.1/s, 1/s, and 10/s), deformation ratios (20%, 30%, and 40%), and insulation per...

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Main Authors: Lei Liu, Yunxin Wu, Hai Gong, Abdulrahaman Shuaibu Ahmad, Fang Dong, Huamin Yu
Format: Article
Language:English
Published: MDPI AG 2020-09-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/13/17/3862
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spelling doaj-e25f36a048b04a1685ca1f9150279c792020-11-25T04:03:33ZengMDPI AGMaterials1996-19442020-09-01133862386210.3390/ma13173862Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression TestLei Liu0Yunxin Wu1Hai Gong2Abdulrahaman Shuaibu Ahmad3Fang Dong4Huamin Yu5Light Alloy Research Institute, Central South University, Changsha 410083, ChinaLight Alloy Research Institute, Central South University, Changsha 410083, ChinaLight Alloy Research Institute, Central South University, Changsha 410083, ChinaState Key Laboratory of High-Performance Complex Manufacturing, Central South University, Changsha 410083, ChinaLight Alloy Research Institute, Central South University, Changsha 410083, ChinaLight Alloy Research Institute, Central South University, Changsha 410083, ChinaIn this paper, the static softening mechanism of a 2219 aluminum alloy was studied based on a double-pass isothermal compression test. For the experiment, different temperatures (623 K, 723 K, and 773 K), strain rates (0.1/s, 1/s, and 10/s), deformation ratios (20%, 30%, and 40%), and insulation periods (5 s, 30 s, and 60 s) were used. Based on the double-pass flow stress curves obtained from the experiment, the step rate expressed by the equivalent dynamic recrystallization fraction is dependent on the deformation parameters, which increases with the increase in strain rate and insulation time, while it decreases with the increase in temperature and strain. Based on the microstructure observed using electron backscattered diffraction (EBSD), the static softening mechanism of the Al 2219 alloy is mainly static recovery and incomplete static recrystallization. A new expression for the static recrystallization fraction is proposed using the reduction rate of the sub-grain boundary. The dependent rule on the deformation parameters is consistent with the step rate, but it is of physical significance. In addition, the modified static recrystallization kinetics established by the new SRX fraction method was proven to have a good modeling and prediction performance under given deformation conditions.https://www.mdpi.com/1996-1944/13/17/3862Al 2219 alloystatic softening mechanismstep ratiosub-grain boundarystatic recrystallization kinetics
collection DOAJ
language English
format Article
sources DOAJ
author Lei Liu
Yunxin Wu
Hai Gong
Abdulrahaman Shuaibu Ahmad
Fang Dong
Huamin Yu
spellingShingle Lei Liu
Yunxin Wu
Hai Gong
Abdulrahaman Shuaibu Ahmad
Fang Dong
Huamin Yu
Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test
Materials
Al 2219 alloy
static softening mechanism
step ratio
sub-grain boundary
static recrystallization kinetics
author_facet Lei Liu
Yunxin Wu
Hai Gong
Abdulrahaman Shuaibu Ahmad
Fang Dong
Huamin Yu
author_sort Lei Liu
title Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test
title_short Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test
title_full Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test
title_fullStr Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test
title_full_unstemmed Static Softening Behavior and Modified Kinetics of Al 2219 Alloy Based on a Double-Pass Hot Compression Test
title_sort static softening behavior and modified kinetics of al 2219 alloy based on a double-pass hot compression test
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2020-09-01
description In this paper, the static softening mechanism of a 2219 aluminum alloy was studied based on a double-pass isothermal compression test. For the experiment, different temperatures (623 K, 723 K, and 773 K), strain rates (0.1/s, 1/s, and 10/s), deformation ratios (20%, 30%, and 40%), and insulation periods (5 s, 30 s, and 60 s) were used. Based on the double-pass flow stress curves obtained from the experiment, the step rate expressed by the equivalent dynamic recrystallization fraction is dependent on the deformation parameters, which increases with the increase in strain rate and insulation time, while it decreases with the increase in temperature and strain. Based on the microstructure observed using electron backscattered diffraction (EBSD), the static softening mechanism of the Al 2219 alloy is mainly static recovery and incomplete static recrystallization. A new expression for the static recrystallization fraction is proposed using the reduction rate of the sub-grain boundary. The dependent rule on the deformation parameters is consistent with the step rate, but it is of physical significance. In addition, the modified static recrystallization kinetics established by the new SRX fraction method was proven to have a good modeling and prediction performance under given deformation conditions.
topic Al 2219 alloy
static softening mechanism
step ratio
sub-grain boundary
static recrystallization kinetics
url https://www.mdpi.com/1996-1944/13/17/3862
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