Three-dimensional numerical analysis of twist extrusion process for annealed copper

Nowadays in order to achieve the materials with superior strength and appropriate formability, severe plastic deformation (SPD) methods are used in which the available coarsegrained materials are processed to produce substantial grain refinement and a nanostructure. A new SPD method based on direct...

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Опубліковано в: :Физика и техника высоких давлений
Дата:2007
Автори: Akbari Mousavi, S.A.A., Shahab, A.R., Mastoori, M.
Формат: Стаття
Мова:Англійська
Опубліковано: Донецький фізико-технічний інститут ім. О.О. Галкіна НАН України 2007
Онлайн доступ:https://nasplib.isofts.kiev.ua/handle/123456789/70300
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Three-dimensional numerical analysis of twist extrusion process for annealed copper / S.A.A. Akbari Mousavi, A.R. Shahab, M. Mastoori // Физика и техника высоких давлений. — 2007. — Т. 17, № 1. — С. 117-125. — Бібліогр.: 11 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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author Akbari Mousavi, S.A.A.
Shahab, A.R.
Mastoori, M.
author_facet Akbari Mousavi, S.A.A.
Shahab, A.R.
Mastoori, M.
citation_txt Three-dimensional numerical analysis of twist extrusion process for annealed copper / S.A.A. Akbari Mousavi, A.R. Shahab, M. Mastoori // Физика и техника высоких давлений. — 2007. — Т. 17, № 1. — С. 117-125. — Бібліогр.: 11 назв. — англ.
collection DSpace DC
container_title Физика и техника высоких давлений
description Nowadays in order to achieve the materials with superior strength and appropriate formability, severe plastic deformation (SPD) methods are used in which the available coarsegrained materials are processed to produce substantial grain refinement and a nanostructure. A new SPD method based on direct extrusion process, proposed recently, is the «Twist Extrusion process». The process is capable of industrial usage and has the advantage of producing a finer structure as compared with other SPD methods. In this investigation, in order to help in determining the effective process variables and in understanding the die manufacturing process, the simulation of the twist extrusion process is presented by using explicit analysis procedure, and the von-Misses and equivalent plastic, strain distributions are considered. The effects of friction coefficient and speed of deformation on the maximum values of von-Misses stress and equivalent plastic strain for the annealed copper material are investigated, they are validated and compared with the corresponding theoretical and experimental values obtained from researchers. The simulation results show that the maximum and minimum equivalent plastic strains are produced at the corner and at the center of the billet, respectively. The maximum and minimum equivalent plastic strains predicted by the simulations are found to be 1.3 and 0.3, respectively. Serrated diagrams of instantaneous stress versus strain and applicable flow stress were observed and recalculated. Simulation results placed next to experimental results are indicative of an acceptable level of compatibility.
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spelling Akbari Mousavi, S.A.A.
Shahab, A.R.
Mastoori, M.
2014-11-02T08:37:08Z
2014-11-02T08:37:08Z
2007
Three-dimensional numerical analysis of twist extrusion process for annealed copper / S.A.A. Akbari Mousavi, A.R. Shahab, M. Mastoori // Физика и техника высоких давлений. — 2007. — Т. 17, № 1. — С. 117-125. — Бібліогр.: 11 назв. — англ.
0868-5924
PACS: 66.20.Fe
https://nasplib.isofts.kiev.ua/handle/123456789/70300
Nowadays in order to achieve the materials with superior strength and appropriate formability, severe plastic deformation (SPD) methods are used in which the available coarsegrained materials are processed to produce substantial grain refinement and a nanostructure. A new SPD method based on direct extrusion process, proposed recently, is the «Twist Extrusion process». The process is capable of industrial usage and has the advantage of producing a finer structure as compared with other SPD methods. In this investigation, in order to help in determining the effective process variables and in understanding the die manufacturing process, the simulation of the twist extrusion process is presented by using explicit analysis procedure, and the von-Misses and equivalent plastic, strain distributions are considered. The effects of friction coefficient and speed of deformation on the maximum values of von-Misses stress and equivalent plastic strain for the annealed copper material are investigated, they are validated and compared with the corresponding theoretical and experimental values obtained from researchers. The simulation results show that the maximum and minimum equivalent plastic strains are produced at the corner and at the center of the billet, respectively. The maximum and minimum equivalent plastic strains predicted by the simulations are found to be 1.3 and 0.3, respectively. Serrated diagrams of instantaneous stress versus strain and applicable flow stress were observed and recalculated. Simulation results placed next to experimental results are indicative of an acceptable level of compatibility.
en
Донецький фізико-технічний інститут ім. О.О. Галкіна НАН України
Физика и техника высоких давлений
Three-dimensional numerical analysis of twist extrusion process for annealed copper
Article
published earlier
spellingShingle Three-dimensional numerical analysis of twist extrusion process for annealed copper
Akbari Mousavi, S.A.A.
Shahab, A.R.
Mastoori, M.
title Three-dimensional numerical analysis of twist extrusion process for annealed copper
title_full Three-dimensional numerical analysis of twist extrusion process for annealed copper
title_fullStr Three-dimensional numerical analysis of twist extrusion process for annealed copper
title_full_unstemmed Three-dimensional numerical analysis of twist extrusion process for annealed copper
title_short Three-dimensional numerical analysis of twist extrusion process for annealed copper
title_sort three-dimensional numerical analysis of twist extrusion process for annealed copper
url https://nasplib.isofts.kiev.ua/handle/123456789/70300
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AT shahabar threedimensionalnumericalanalysisoftwistextrusionprocessforannealedcopper
AT mastoorim threedimensionalnumericalanalysisoftwistextrusionprocessforannealedcopper