Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates

This paper deals with experimental investigations of aluminium-based fibre metal laminates (FMLs) under quasi-static bending and tensile loading. The objectives are to study the failure modes, bending and tensile behaviour of the structure under bending and tensile loads. The FMLs in this paper comp...

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Main Authors: Abu Husain, Nurulakmar, Chi, Loog Pang, Abdullah, Mohamed Ruslan, Abu Bakar, M. A.
Format: Conference or Workshop Item
Published: 2013
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Online Access:http://eprints.utm.my/id/eprint/37691/
https://www.researchgate.net/publication/270884273_Experimental_Analysis_of_Bending_and_Tensile_Behaviour_of_Aluminium-based_Fibre_Metal_Laminates
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spelling my.utm.376912017-09-26T03:40:39Z http://eprints.utm.my/id/eprint/37691/ Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates Abu Husain, Nurulakmar Chi, Loog Pang Abdullah, Mohamed Ruslan Abu Bakar, M. A. TJ Mechanical engineering and machinery This paper deals with experimental investigations of aluminium-based fibre metal laminates (FMLs) under quasi-static bending and tensile loading. The objectives are to study the failure modes, bending and tensile behaviour of the structure under bending and tensile loads. The FMLs in this paper comprised of layers of glass fibre-reinforced plastics sandwiched between layers of 0.3 mm and 0.6 mm aluminium alloy (2/1 and 3/2 FMLs plates) and bonded using epoxy adhesive. Two different types of glass fibre-reinforced plastics were used for fabrication: chopped strand mat (CSM) and woven roving (WR). In this work, both bending test and tensile test were performed using a Universal Testing Machine to determine out-of-plane bending properties and in-plane tensile properties respectively. In order to get the bending load-displacement response and investigate the deformation pattern, the bending test was run with bending rate of 2mm/min until the specimen fails using a three point bend setup. It was found that a 2/1 configuration yields the highest properties compared to any other configurations tested. In addition, the tensile test was run with load rate of 2mm/min up until the point of fracture. It was observed that the specimen behaved differently under in-plane loadings, but still a 2/1 configuration FMLs spot better properties and good deformation pattern. Lastly, corresponding deformation and failure modes (interface failure and delamination) are presented, compared and discussed. 2013 Conference or Workshop Item PeerReviewed Abu Husain, Nurulakmar and Chi, Loog Pang and Abdullah, Mohamed Ruslan and Abu Bakar, M. A. (2013) Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates. In: 9th International Conference on Fracture & Strength of Solids. https://www.researchgate.net/publication/270884273_Experimental_Analysis_of_Bending_and_Tensile_Behaviour_of_Aluminium-based_Fibre_Metal_Laminates
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Abu Husain, Nurulakmar
Chi, Loog Pang
Abdullah, Mohamed Ruslan
Abu Bakar, M. A.
Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
description This paper deals with experimental investigations of aluminium-based fibre metal laminates (FMLs) under quasi-static bending and tensile loading. The objectives are to study the failure modes, bending and tensile behaviour of the structure under bending and tensile loads. The FMLs in this paper comprised of layers of glass fibre-reinforced plastics sandwiched between layers of 0.3 mm and 0.6 mm aluminium alloy (2/1 and 3/2 FMLs plates) and bonded using epoxy adhesive. Two different types of glass fibre-reinforced plastics were used for fabrication: chopped strand mat (CSM) and woven roving (WR). In this work, both bending test and tensile test were performed using a Universal Testing Machine to determine out-of-plane bending properties and in-plane tensile properties respectively. In order to get the bending load-displacement response and investigate the deformation pattern, the bending test was run with bending rate of 2mm/min until the specimen fails using a three point bend setup. It was found that a 2/1 configuration yields the highest properties compared to any other configurations tested. In addition, the tensile test was run with load rate of 2mm/min up until the point of fracture. It was observed that the specimen behaved differently under in-plane loadings, but still a 2/1 configuration FMLs spot better properties and good deformation pattern. Lastly, corresponding deformation and failure modes (interface failure and delamination) are presented, compared and discussed.
format Conference or Workshop Item
author Abu Husain, Nurulakmar
Chi, Loog Pang
Abdullah, Mohamed Ruslan
Abu Bakar, M. A.
author_facet Abu Husain, Nurulakmar
Chi, Loog Pang
Abdullah, Mohamed Ruslan
Abu Bakar, M. A.
author_sort Abu Husain, Nurulakmar
title Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
title_short Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
title_full Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
title_fullStr Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
title_full_unstemmed Experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
title_sort experimental analysis of bending and tensile behaviour of aluminium-based fibre metal laminates
publishDate 2013
url http://eprints.utm.my/id/eprint/37691/
https://www.researchgate.net/publication/270884273_Experimental_Analysis_of_Bending_and_Tensile_Behaviour_of_Aluminium-based_Fibre_Metal_Laminates
_version_ 1643650152284553216
score 13.18916