Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys

Recently, offshore and ocean engineering have been dealing with novel materials that play a significant role in reducing the weight of structures used in the ship construction industry. 5XXX series of aluminum alloys are of the novel alloys are suitable for construction of ship hulls and the topside...

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Main Authors: Milad Janbakhsh, Mohammad Riahi, Faramarz Djavanroodi
Format: Article
Language:English
Published: Islamic Azad University-Isfahan (Khorasgan) Branch 2012-06-01
Series:International Journal of Advanced Design and Manufacturing Technology
Online Access:https://admt.isfahan.iau.ir/article_534785_389fbe43a25ea549d89228041735f4b8.pdf
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author Milad Janbakhsh
Mohammad Riahi
Faramarz Djavanroodi
author_facet Milad Janbakhsh
Mohammad Riahi
Faramarz Djavanroodi
author_sort Milad Janbakhsh
collection DOAJ
description Recently, offshore and ocean engineering have been dealing with novel materials that play a significant role in reducing the weight of structures used in the ship construction industry. 5XXX series of aluminum alloys are of the novel alloys are suitable for construction of ship hulls and the topside structures of offshore platforms. Within different 5XXX aluminum alloys, AA5083 is of great importance which is extensively used in the ship construction industry. In the present study, formability of AA5083-H111 aluminum alloy is investigated in room temperature by using uni-axial tensile tests and hydraulic bulge tests. Tensile tests were performed to evaluate materials anisotropy in different directions with respect to rolling direction. Anisotropy coefficients were then used to correct flow stress curves obtained by balanced biaxial bulge tests. Moreover, flow stress curves obtained from both tests were separately introduced to an explicit commercial finite element code. Comparisons showed that numerical simulation done in this study stand in according with the experiments.
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spelling doaj.art-b2c80c40aa4d45208aea06a3b05f79f02023-10-18T09:46:39ZengIslamic Azad University-Isfahan (Khorasgan) BranchInternational Journal of Advanced Design and Manufacturing Technology2252-04062383-44472012-06-0153534785Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum AlloysMilad Janbakhsh0Mohammad Riahi1Faramarz Djavanroodi2Iran University of Science and TechnologyIran University of Science and TechnologyIran University of Science and TechnologyRecently, offshore and ocean engineering have been dealing with novel materials that play a significant role in reducing the weight of structures used in the ship construction industry. 5XXX series of aluminum alloys are of the novel alloys are suitable for construction of ship hulls and the topside structures of offshore platforms. Within different 5XXX aluminum alloys, AA5083 is of great importance which is extensively used in the ship construction industry. In the present study, formability of AA5083-H111 aluminum alloy is investigated in room temperature by using uni-axial tensile tests and hydraulic bulge tests. Tensile tests were performed to evaluate materials anisotropy in different directions with respect to rolling direction. Anisotropy coefficients were then used to correct flow stress curves obtained by balanced biaxial bulge tests. Moreover, flow stress curves obtained from both tests were separately introduced to an explicit commercial finite element code. Comparisons showed that numerical simulation done in this study stand in according with the experiments.https://admt.isfahan.iau.ir/article_534785_389fbe43a25ea549d89228041735f4b8.pdf
spellingShingle Milad Janbakhsh
Mohammad Riahi
Faramarz Djavanroodi
Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys
International Journal of Advanced Design and Manufacturing Technology
title Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys
title_full Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys
title_fullStr Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys
title_full_unstemmed Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys
title_short Anisotropy Induced Biaxial Stress-Strain Relationships in Aluminum Alloys
title_sort anisotropy induced biaxial stress strain relationships in aluminum alloys
url https://admt.isfahan.iau.ir/article_534785_389fbe43a25ea549d89228041735f4b8.pdf
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