Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model

In this paper, the VPSC (visco-plastic self-consistent) model was improved by considering the effect of heating rate. The hot compression deformation behavior and texture evolution of AA7075 were studied based on the improved VPSC model and EBSD (electron back-scattering diffraction). The stress–str...

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Main Authors: Siyuan Zhu, Man Zhao, Jian Mao, Steven Y. Liang
Format: Article
Language:English
Published: MDPI AG 2022-09-01
Series:Metals
Subjects:
Online Access:https://www.mdpi.com/2075-4701/12/10/1648
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author Siyuan Zhu
Man Zhao
Jian Mao
Steven Y. Liang
author_facet Siyuan Zhu
Man Zhao
Jian Mao
Steven Y. Liang
author_sort Siyuan Zhu
collection DOAJ
description In this paper, the VPSC (visco-plastic self-consistent) model was improved by considering the effect of heating rate. The hot compression deformation behavior and texture evolution of AA7075 were studied based on the improved VPSC model and EBSD (electron back-scattering diffraction). The stress–strain curves, inverse pole figure (IPF), and orientation distribution function (ODF) of the material were analyzed by combining TSL-OIM-Analysis, MTEX, and other analysis software. By observing the changes in grain structure and micro-texture of the material before and after hot compression deformation, the influence of macro-deformation conditions on the microstructure evolution of the material was studied, and the evolution law of grain structure and micro-texture was analyzed. It was found that the hot deformation parameters have significant effects on the stress–strain curve characteristics and micro-texture evolution of AA7075 during hot deformation. Copper {112} <111> and {011} <1<inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><mover accent="true"><mn>1</mn><mo>¯</mo></mover></semantics></math></inline-formula>1> are the main textures, and the strength and distribution of typical textures such as Copper {112} <111>, Cube {001} <100>, and Goss {011} <100> show regularity with the change in deformation conditions. Through comparing the predicted results of the improved VPSC model and experimental data, it is distinct that the improved VPSC model is suitable to predict the micro-texture evolution of AA7075 during hot compression. Finally, the sensitivity of micro-texture evolution to hot compression parameters such as heating rate was analyzed.
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spelling doaj.art-318bbf6ca3a24a7a8a01f2a6ca3a676d2023-11-24T01:18:26ZengMDPI AGMetals2075-47012022-09-011210164810.3390/met12101648Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent ModelSiyuan Zhu0Man Zhao1Jian Mao2Steven Y. Liang3School of Mechanical and Automotive Engineering, Shanghai University of Engineering Science, Shanghai 201620, ChinaSchool of Mechanical and Automotive Engineering, Shanghai University of Engineering Science, Shanghai 201620, ChinaSchool of Mechanical and Automotive Engineering, Shanghai University of Engineering Science, Shanghai 201620, ChinaSchool of Mechanical Engineering, Georgia Institute of Technology, North Ave NW, Atlanta, GA 30332, USAIn this paper, the VPSC (visco-plastic self-consistent) model was improved by considering the effect of heating rate. The hot compression deformation behavior and texture evolution of AA7075 were studied based on the improved VPSC model and EBSD (electron back-scattering diffraction). The stress–strain curves, inverse pole figure (IPF), and orientation distribution function (ODF) of the material were analyzed by combining TSL-OIM-Analysis, MTEX, and other analysis software. By observing the changes in grain structure and micro-texture of the material before and after hot compression deformation, the influence of macro-deformation conditions on the microstructure evolution of the material was studied, and the evolution law of grain structure and micro-texture was analyzed. It was found that the hot deformation parameters have significant effects on the stress–strain curve characteristics and micro-texture evolution of AA7075 during hot deformation. Copper {112} <111> and {011} <1<inline-formula><math xmlns="http://www.w3.org/1998/Math/MathML" display="inline"><semantics><mover accent="true"><mn>1</mn><mo>¯</mo></mover></semantics></math></inline-formula>1> are the main textures, and the strength and distribution of typical textures such as Copper {112} <111>, Cube {001} <100>, and Goss {011} <100> show regularity with the change in deformation conditions. Through comparing the predicted results of the improved VPSC model and experimental data, it is distinct that the improved VPSC model is suitable to predict the micro-texture evolution of AA7075 during hot compression. Finally, the sensitivity of micro-texture evolution to hot compression parameters such as heating rate was analyzed.https://www.mdpi.com/2075-4701/12/10/1648visco-plastic self-consistent modelAA7075EBSDtexture evolution
spellingShingle Siyuan Zhu
Man Zhao
Jian Mao
Steven Y. Liang
Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model
Metals
visco-plastic self-consistent model
AA7075
EBSD
texture evolution
title Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model
title_full Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model
title_fullStr Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model
title_full_unstemmed Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model
title_short Study on Hot Deformation Behavior and Texture Evolution of Aluminum Alloy 7075 Based on Visco-Plastic Self-Consistent Model
title_sort study on hot deformation behavior and texture evolution of aluminum alloy 7075 based on visco plastic self consistent model
topic visco-plastic self-consistent model
AA7075
EBSD
texture evolution
url https://www.mdpi.com/2075-4701/12/10/1648
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AT manzhao studyonhotdeformationbehaviorandtextureevolutionofaluminumalloy7075basedonviscoplasticselfconsistentmodel
AT jianmao studyonhotdeformationbehaviorandtextureevolutionofaluminumalloy7075basedonviscoplasticselfconsistentmodel
AT stevenyliang studyonhotdeformationbehaviorandtextureevolutionofaluminumalloy7075basedonviscoplasticselfconsistentmodel