Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own

In advanced industries, the demand of light and efficient parts in terms of structural integrity under particular mechanical purpose and aggressive environmental conditions has increased. Thus, requirement for a creative process that is aimed to upgrade metal material properties without adding addit...

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Main Author: Mahmoud Sarhan, Saddam Own
Format: Thesis
Published: 2018
Subjects:
Online Access:http://studentsrepo.um.edu.my/9046/
http://studentsrepo.um.edu.my/9046/7/sarhan.pdf
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author Mahmoud Sarhan, Saddam Own
author_facet Mahmoud Sarhan, Saddam Own
author_sort Mahmoud Sarhan, Saddam Own
building UM Research Repository
collection Online Access
description In advanced industries, the demand of light and efficient parts in terms of structural integrity under particular mechanical purpose and aggressive environmental conditions has increased. Thus, requirement for a creative process that is aimed to upgrade metal material properties without adding additional weight or additives to the metal was a must. Several processes are categorized under the Severe Plastic Deformation (SPD) such as equal channel angular extrusion (ECAE), another method called equal channel angular pressing (ECAP), as well as high pressure torsion (HPT), and Parallel Tubular channel angular pressing (PTCAP). PTCAP is a recently developed and powerful plastic deformation method that is used to enhance the mechanical properties of the processed tubes. Residual stresses are generated inside the processed tubes during the deformation processes and could significantly influence or affect the mechanical performance of the final part. Thus, the effects of deformation process on residual stress, strain and to the crystallite size of Magnesium Alloy tubes was examined by means of X-Ray Diffraction (XRD). The results have shown that: residual stress was clearly changed from tensile stress before the deformation to compressive stress after the deformation process which means more crack resistance and better performance; the crystallite size shows reduction from 20.39
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spelling um-90462021-03-07T23:04:56Z Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own Mahmoud Sarhan, Saddam Own T Technology (General) TS Manufactures In advanced industries, the demand of light and efficient parts in terms of structural integrity under particular mechanical purpose and aggressive environmental conditions has increased. Thus, requirement for a creative process that is aimed to upgrade metal material properties without adding additional weight or additives to the metal was a must. Several processes are categorized under the Severe Plastic Deformation (SPD) such as equal channel angular extrusion (ECAE), another method called equal channel angular pressing (ECAP), as well as high pressure torsion (HPT), and Parallel Tubular channel angular pressing (PTCAP). PTCAP is a recently developed and powerful plastic deformation method that is used to enhance the mechanical properties of the processed tubes. Residual stresses are generated inside the processed tubes during the deformation processes and could significantly influence or affect the mechanical performance of the final part. Thus, the effects of deformation process on residual stress, strain and to the crystallite size of Magnesium Alloy tubes was examined by means of X-Ray Diffraction (XRD). The results have shown that: residual stress was clearly changed from tensile stress before the deformation to compressive stress after the deformation process which means more crack resistance and better performance; the crystallite size shows reduction from 20.39 2018-06 Thesis NonPeerReviewed application/pdf http://studentsrepo.um.edu.my/9046/7/sarhan.pdf Mahmoud Sarhan, Saddam Own (2018) Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own. Masters thesis, University of Malaya. http://studentsrepo.um.edu.my/9046/
spellingShingle T Technology (General)
TS Manufactures
Mahmoud Sarhan, Saddam Own
Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own
title Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own
title_full Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own
title_fullStr Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own
title_full_unstemmed Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own
title_short Study of residual stress and microstructure evolution in magnesium alloy (WE43) due to deformation process via (PTCAP) / Mahmoud Sarhan Saddam Own
title_sort study of residual stress and microstructure evolution in magnesium alloy (we43) due to deformation process via (ptcap) / mahmoud sarhan saddam own
topic T Technology (General)
TS Manufactures
url http://studentsrepo.um.edu.my/9046/
http://studentsrepo.um.edu.my/9046/7/sarhan.pdf