A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions
Microstructural evolution during hot forming of aluminium alloys plays a critical role in both the material flow behaviour during the deformation and the post-form mechanical properties in service. This paper presents a comprehensive review on the recrystallisation mechanisms, the interrelations bet...
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doaj-05ba1f45c1c4491192510e0391ad8b302020-11-25T04:02:44ZengMDPI AGMetals2075-47012020-11-01101516151610.3390/met10111516A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming ConditionsJiaxin Lv0Jing-Hua Zheng1Victoria A. Yardley2Zhusheng Shi3Jianguo Lin4Department of Mechanical Engineering, Imperial College London, London SW7 2AZ, UKDepartment of Mechanical Engineering, Imperial College London, London SW7 2AZ, UKDepartment of Mechanical Engineering, Imperial College London, London SW7 2AZ, UKDepartment of Mechanical Engineering, Imperial College London, London SW7 2AZ, UKDepartment of Mechanical Engineering, Imperial College London, London SW7 2AZ, UKMicrostructural evolution during hot forming of aluminium alloys plays a critical role in both the material flow behaviour during the deformation and the post-form mechanical properties in service. This paper presents a comprehensive review on the recrystallisation mechanisms, the interrelations between microstructures and macroscopic responses, and the associated modelling methods for aluminium alloys under hot forming conditions. Particular attention is focused on dynamic recrystallisation (DRX), which occurs during hot forming. The mechanisms, key features, and conditions of occurrence (forming temperature, strain rates, etc.) during hot forming for each type of DRX type are classified. The relationships between microstructures and macroscopic responses, including the flow behaviour, the post-form strength and ductility, are summarised based on existing experimental results. Most importantly, the associated modelling work, describing the recrystallisation and the viscoplastic behaviour under hot forming conditions, is grouped into four types, to enable a clear and concise understanding of the existing quantitative micro–macro interactions, which are particularly valuable for the future development of advanced physically based multi-scale modelling work for hot-forming processes in aluminium alloys.https://www.mdpi.com/2075-4701/10/11/1516hot formingrecrystallisationviscoplasticitymechanical propertymodellingaluminium alloy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jiaxin Lv Jing-Hua Zheng Victoria A. Yardley Zhusheng Shi Jianguo Lin |
spellingShingle |
Jiaxin Lv Jing-Hua Zheng Victoria A. Yardley Zhusheng Shi Jianguo Lin A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions Metals hot forming recrystallisation viscoplasticity mechanical property modelling aluminium alloy |
author_facet |
Jiaxin Lv Jing-Hua Zheng Victoria A. Yardley Zhusheng Shi Jianguo Lin |
author_sort |
Jiaxin Lv |
title |
A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions |
title_short |
A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions |
title_full |
A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions |
title_fullStr |
A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions |
title_full_unstemmed |
A Review of Microstructural Evolution and Modelling of Aluminium Alloys under Hot Forming Conditions |
title_sort |
review of microstructural evolution and modelling of aluminium alloys under hot forming conditions |
publisher |
MDPI AG |
series |
Metals |
issn |
2075-4701 |
publishDate |
2020-11-01 |
description |
Microstructural evolution during hot forming of aluminium alloys plays a critical role in both the material flow behaviour during the deformation and the post-form mechanical properties in service. This paper presents a comprehensive review on the recrystallisation mechanisms, the interrelations between microstructures and macroscopic responses, and the associated modelling methods for aluminium alloys under hot forming conditions. Particular attention is focused on dynamic recrystallisation (DRX), which occurs during hot forming. The mechanisms, key features, and conditions of occurrence (forming temperature, strain rates, etc.) during hot forming for each type of DRX type are classified. The relationships between microstructures and macroscopic responses, including the flow behaviour, the post-form strength and ductility, are summarised based on existing experimental results. Most importantly, the associated modelling work, describing the recrystallisation and the viscoplastic behaviour under hot forming conditions, is grouped into four types, to enable a clear and concise understanding of the existing quantitative micro–macro interactions, which are particularly valuable for the future development of advanced physically based multi-scale modelling work for hot-forming processes in aluminium alloys. |
topic |
hot forming recrystallisation viscoplasticity mechanical property modelling aluminium alloy |
url |
https://www.mdpi.com/2075-4701/10/11/1516 |
work_keys_str_mv |
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