Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact

It is impossible to ignore the realm of the topics related recycling aluminium scraps. The recycled form of this material can be a good replacement for the primary resources due to the economic and environmental benefits. Numerous investigation must be conducted to establish the mechanical behaviour...

Full description

Saved in:
Bibliographic Details
Main Authors: Ho, C.S., Ab Rani, M. A., Mohd Nor, M. K., Ma’at, N., Hameed Sultan, M. T., Lajis, M. A., Yusuf, N. K.
Format: Article
Language:en
Published: Penerbit UTHM 2019
Subjects:
Online Access:http://eprints.uthm.edu.my/4620/1/AJ%202019%20%28295%29.pdf
http://eprints.uthm.edu.my/4620/
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1833417646042775552
author Ho, C.S.
Ab Rani, M. A.
Mohd Nor, M. K.
Ma’at, N.
Hameed Sultan, M. T.
Lajis, M. A.
Yusuf, N. K.
author_facet Ho, C.S.
Ab Rani, M. A.
Mohd Nor, M. K.
Ma’at, N.
Hameed Sultan, M. T.
Lajis, M. A.
Yusuf, N. K.
author_sort Ho, C.S.
building UTHM Library
collection Institutional Repository
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
continent Asia
country Malaysia
description It is impossible to ignore the realm of the topics related recycling aluminium scraps. The recycled form of this material can be a good replacement for the primary resources due to the economic and environmental benefits. Numerous investigation must be conducted to establish the mechanical behaviour before the specific applications can be identified. In this research, Taylor Cylinder Impact tests used to investigate anisotropic damage behaviour in recycled aluminium alloy is presented. To be specific, by performing Taylor Cylinder Impact test at velocities ranging from 190m/s to 300m/s, anisotropic and damage characteristics can be observed in the samples as a function of the large stress, strain, and strain-rate gradient. The application of Taylor Cylinder Impact test as a technique to validate both the constitutive and dynamic fracture responses in such materials is also discussed. The structure of recycled aluminium AA6061 including the damage initiation and evolution are observed under optical microscope (OM) and scanning electron microscope (SEM). The results revealed that the damage evolution of the material change with the increasing impact velocity. Further, the digitised footprint analysis showed a pronounced anisotropic characteristic of the recycled aluminium AA6061.
format Article
id my.uthm.eprints-4620
institution Universiti Tun Hussein Onn Malaysia
language en
publishDate 2019
publisher Penerbit UTHM
record_format eprints
spelling my.uthm.eprints-46202021-12-07T09:07:36Z http://eprints.uthm.edu.my/4620/ Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact Ho, C.S. Ab Rani, M. A. Mohd Nor, M. K. Ma’at, N. Hameed Sultan, M. T. Lajis, M. A. Yusuf, N. K. TS200-770 Metal manufactures. Metalworking It is impossible to ignore the realm of the topics related recycling aluminium scraps. The recycled form of this material can be a good replacement for the primary resources due to the economic and environmental benefits. Numerous investigation must be conducted to establish the mechanical behaviour before the specific applications can be identified. In this research, Taylor Cylinder Impact tests used to investigate anisotropic damage behaviour in recycled aluminium alloy is presented. To be specific, by performing Taylor Cylinder Impact test at velocities ranging from 190m/s to 300m/s, anisotropic and damage characteristics can be observed in the samples as a function of the large stress, strain, and strain-rate gradient. The application of Taylor Cylinder Impact test as a technique to validate both the constitutive and dynamic fracture responses in such materials is also discussed. The structure of recycled aluminium AA6061 including the damage initiation and evolution are observed under optical microscope (OM) and scanning electron microscope (SEM). The results revealed that the damage evolution of the material change with the increasing impact velocity. Further, the digitised footprint analysis showed a pronounced anisotropic characteristic of the recycled aluminium AA6061. Penerbit UTHM 2019 Article PeerReviewed text en http://eprints.uthm.edu.my/4620/1/AJ%202019%20%28295%29.pdf Ho, C.S. and Ab Rani, M. A. and Mohd Nor, M. K. and Ma’at, N. and Hameed Sultan, M. T. and Lajis, M. A. and Yusuf, N. K. (2019) Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact. The International Journal of Integrated Engineering, 11 (1). pp. 247-256. ISSN 2229-838X
spellingShingle TS200-770 Metal manufactures. Metalworking
Ho, C.S.
Ab Rani, M. A.
Mohd Nor, M. K.
Ma’at, N.
Hameed Sultan, M. T.
Lajis, M. A.
Yusuf, N. K.
Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact
title Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact
title_full Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact
title_fullStr Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact
title_full_unstemmed Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact
title_short Characterization of anisotropic damage behaviour of recycled aluminium alloys AA6061 undergoing high velocity impact
title_sort characterization of anisotropic damage behaviour of recycled aluminium alloys aa6061 undergoing high velocity impact
topic TS200-770 Metal manufactures. Metalworking
url http://eprints.uthm.edu.my/4620/1/AJ%202019%20%28295%29.pdf
http://eprints.uthm.edu.my/4620/
url_provider http://eprints.uthm.edu.my/