Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution

High Pressure Torsion Extrusion (HPTE) is a novel technique which has been recently introduced to the society of Nano-SPD researchers. HPTE exploits the deformation mechanics of HPT but in a larger scale using rod-shape samples and is capable of applying high values of strain to materials in one pas...

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Main Authors: Omranpour, B., Kulagin, R, Ivanisenko, Y, García Sánchez, Edgar
Format: Article
Language:English
Published: 2017
Subjects:
Online Access:http://eprints.uanl.mx/14534/1/52.pdf
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author Omranpour, B.
Kulagin, R
Ivanisenko, Y
García Sánchez, Edgar
author_facet Omranpour, B.
Kulagin, R
Ivanisenko, Y
García Sánchez, Edgar
author_sort Omranpour, B.
collection Repositorio Institucional
description High Pressure Torsion Extrusion (HPTE) is a novel technique which has been recently introduced to the society of Nano-SPD researchers. HPTE exploits the deformation mechanics of HPT but in a larger scale using rod-shape samples and is capable of applying high values of strain to materials in one pass. This research aims to evaluate the effect of HPTE on mechanical properties of materials and also to study the effect of geometry of HPTE die on strain distribution in deformed samples by using Finite Element Method (FEM). Commercial pure Aluminium AA1050 was used for experimental work; and eccentric dies with parallelmisaligned channels were developed for evaluation by numerical modelling. Results of this research will help us better understand the effect of process parameters and also geometry of the die on materials.
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spelling eprints-145342024-03-05T18:07:28Z http://eprints.uanl.mx/14534/ Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution Omranpour, B. Kulagin, R Ivanisenko, Y García Sánchez, Edgar T Tecnología en General High Pressure Torsion Extrusion (HPTE) is a novel technique which has been recently introduced to the society of Nano-SPD researchers. HPTE exploits the deformation mechanics of HPT but in a larger scale using rod-shape samples and is capable of applying high values of strain to materials in one pass. This research aims to evaluate the effect of HPTE on mechanical properties of materials and also to study the effect of geometry of HPTE die on strain distribution in deformed samples by using Finite Element Method (FEM). Commercial pure Aluminium AA1050 was used for experimental work; and eccentric dies with parallelmisaligned channels were developed for evaluation by numerical modelling. Results of this research will help us better understand the effect of process parameters and also geometry of the die on materials. 2017 Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/14534/1/52.pdf http://eprints.uanl.mx/14534/1.haspreviewThumbnailVersion/52.pdf Omranpour, B. y Kulagin, R y Ivanisenko, Y y García Sánchez, Edgar (2017) Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution. IOP Conference Series: Materials Science and Engineering, 194. 012047. ISSN 1757-8981 http://doi.org/10.1088/1757-899X/194/1/012047 doi:10.1088/1757-899X/194/1/012047
spellingShingle T Tecnología en General
Omranpour, B.
Kulagin, R
Ivanisenko, Y
García Sánchez, Edgar
Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution
title_full Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution
title_fullStr Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution
title_full_unstemmed Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution
title_short Experimental and numerical analysis of HPTE on mechanical properties of materials and strain distribution
title_sort experimental and numerical analysis of hpte on mechanical properties of materials and strain distribution
topic T Tecnología en General
url http://eprints.uanl.mx/14534/1/52.pdf
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AT garciasanchezedgar experimentalandnumericalanalysisofhpteonmechanicalpropertiesofmaterialsandstraindistribution