Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing

This study involves experimental investigation on severe plastic deformation (SPD) of Ti using novel equal-channel angular pressing (ECAP) at ambient temperature. Ti wire is tightly encapsulated in a hollow host material made of Al-based functionally graded material (FGM). The host material is prepa...

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Main Authors: Jamian, Saifulnizan, Sato, Hisashi, Fujiwara, Eri Miura, Yoshimi, Watanabe
Format: Article
Language:English
Published: Japan Society of Applied Physics 2012
Subjects:
Online Access:http://eprints.uthm.edu.my/3939/1/AJ%202017%20%28539%29.pdf
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author Jamian, Saifulnizan
Sato, Hisashi
Fujiwara, Eri Miura
Yoshimi, Watanabe
author_facet Jamian, Saifulnizan
Sato, Hisashi
Fujiwara, Eri Miura
Yoshimi, Watanabe
author_sort Jamian, Saifulnizan
collection UTHM
description This study involves experimental investigation on severe plastic deformation (SPD) of Ti using novel equal-channel angular pressing (ECAP) at ambient temperature. Ti wire is tightly encapsulated in a hollow host material made of Al-based functionally graded material (FGM). The host material is prepared by embedding Al–Al3Ti alloy into Al. Three types of the Al–Al3Ti alloys with different Al3Ti volume fractions are used to prepare the host materials. ECAP for specimens is carried out for up to eight passes by route A. The microstructure and hardness of ECAPed specimens are investigated. The changes in microstructure and the increase in the hardness value of Ti with increased number of ECAP passes are evidences showing that Ti is successfully deformed by this technique.
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spelling uthm.eprints-39392021-11-22T07:23:17Z http://eprints.uthm.edu.my/3939/ Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing Jamian, Saifulnizan Sato, Hisashi Fujiwara, Eri Miura Yoshimi, Watanabe TA401-492 Materials of engineering and construction. Mechanics of materials This study involves experimental investigation on severe plastic deformation (SPD) of Ti using novel equal-channel angular pressing (ECAP) at ambient temperature. Ti wire is tightly encapsulated in a hollow host material made of Al-based functionally graded material (FGM). The host material is prepared by embedding Al–Al3Ti alloy into Al. Three types of the Al–Al3Ti alloys with different Al3Ti volume fractions are used to prepare the host materials. ECAP for specimens is carried out for up to eight passes by route A. The microstructure and hardness of ECAPed specimens are investigated. The changes in microstructure and the increase in the hardness value of Ti with increased number of ECAP passes are evidences showing that Ti is successfully deformed by this technique. Japan Society of Applied Physics 2012 Article PeerReviewed text en http://eprints.uthm.edu.my/3939/1/AJ%202017%20%28539%29.pdf Jamian, Saifulnizan and Sato, Hisashi and Fujiwara, Eri Miura and Yoshimi, Watanabe (2012) Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing. Japanese Journal of Applied Physics, 51 (1). pp. 1-7. ISSN 0021-4922 https://dx.doi.org/10.1143/JJAP.51.01AK04
spellingShingle TA401-492 Materials of engineering and construction. Mechanics of materials
Jamian, Saifulnizan
Sato, Hisashi
Fujiwara, Eri Miura
Yoshimi, Watanabe
Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing
title Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing
title_full Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing
title_fullStr Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing
title_full_unstemmed Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing
title_short Experimental study on severe plastic deformation of Ti by novel equal-channel angular pressing
title_sort experimental study on severe plastic deformation of ti by novel equal channel angular pressing
topic TA401-492 Materials of engineering and construction. Mechanics of materials
url http://eprints.uthm.edu.my/3939/1/AJ%202017%20%28539%29.pdf
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AT satohisashi experimentalstudyonsevereplasticdeformationoftibynovelequalchannelangularpressing
AT fujiwaraerimiura experimentalstudyonsevereplasticdeformationoftibynovelequalchannelangularpressing
AT yoshimiwatanabe experimentalstudyonsevereplasticdeformationoftibynovelequalchannelangularpressing