Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy

In present work, an attempt has been made to investigate the effect of alumina and graphene nanoplatelets (GNP) hybrid nano reinforcement to the wetting behavior and mechanical property of adhesively joint aluminum alloy with epoxy adhesive. Alumina-GNP hybrid nano adhesive at 1.0 wt% concentration...

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Main Authors: Mohamad Syaiful Izwan, Alies, Nur Zalikha, Khalil
Format: Article
Language:English
Published: Elsevier Ltd 2021
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/33465/1/Effect%20of%20alumina%20graphene%20hybrid%20nano%20reinforcement%20to%20the%20adhesion%20.pdf
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author Mohamad Syaiful Izwan, Alies
Nur Zalikha, Khalil
author_facet Mohamad Syaiful Izwan, Alies
Nur Zalikha, Khalil
author_sort Mohamad Syaiful Izwan, Alies
collection UMP
description In present work, an attempt has been made to investigate the effect of alumina and graphene nanoplatelets (GNP) hybrid nano reinforcement to the wetting behavior and mechanical property of adhesively joint aluminum alloy with epoxy adhesive. Alumina-GNP hybrid nano adhesive at 1.0 wt% concentration with various weight ratio combination (i.e.: 10:0, 7:3, 5:5, 3:7, 0:10) was adopted into two components structural epoxy adhesive to bond 7075-T6 aluminum alloy. When compared to pristine adhesive, hybrid nano adhesive has shown two distinct trends with regard to the spread area behavior: (i) hybrid nano adhesive at 7:3 and 5:5 wt ratio combination exhibits a reduction of spread area up to 71.59 % and 48.07% respectively while (ii) hybrid nano adhesive at 3:7 wt ratio combination has shown an increase of spread up to 31.58%. It is also observed that the incorporation of hybrid nano reinforcement at 7:3 wt ratio combination has demonstrated highest shear strength up to 42.29% as compared to the pristine adhesive counterpart. Moreover, as compared to specimens with single alumina and GNP nano adhesives (i.e.: 10:0 and 0:10 wt ratio), specimens with hybrid nano adhesive at 7:3 wt ratio demonstrates an improved shear strength up to 61.48% and 101.2%, respectively. In current work, it has been observed that regardless of alumina-GNP weight ratio combination, all fractured specimens demonstrated the combination of adhesive and cohesive fractures behavior
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spelling UMPir334652022-04-08T04:27:03Z http://umpir.ump.edu.my/id/eprint/33465/ Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy Mohamad Syaiful Izwan, Alies Nur Zalikha, Khalil TJ Mechanical engineering and machinery In present work, an attempt has been made to investigate the effect of alumina and graphene nanoplatelets (GNP) hybrid nano reinforcement to the wetting behavior and mechanical property of adhesively joint aluminum alloy with epoxy adhesive. Alumina-GNP hybrid nano adhesive at 1.0 wt% concentration with various weight ratio combination (i.e.: 10:0, 7:3, 5:5, 3:7, 0:10) was adopted into two components structural epoxy adhesive to bond 7075-T6 aluminum alloy. When compared to pristine adhesive, hybrid nano adhesive has shown two distinct trends with regard to the spread area behavior: (i) hybrid nano adhesive at 7:3 and 5:5 wt ratio combination exhibits a reduction of spread area up to 71.59 % and 48.07% respectively while (ii) hybrid nano adhesive at 3:7 wt ratio combination has shown an increase of spread up to 31.58%. It is also observed that the incorporation of hybrid nano reinforcement at 7:3 wt ratio combination has demonstrated highest shear strength up to 42.29% as compared to the pristine adhesive counterpart. Moreover, as compared to specimens with single alumina and GNP nano adhesives (i.e.: 10:0 and 0:10 wt ratio), specimens with hybrid nano adhesive at 7:3 wt ratio demonstrates an improved shear strength up to 61.48% and 101.2%, respectively. In current work, it has been observed that regardless of alumina-GNP weight ratio combination, all fractured specimens demonstrated the combination of adhesive and cohesive fractures behavior Elsevier Ltd 2021-12-22 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/33465/1/Effect%20of%20alumina%20graphene%20hybrid%20nano%20reinforcement%20to%20the%20adhesion%20.pdf Mohamad Syaiful Izwan, Alies and Nur Zalikha, Khalil (2021) Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy. Materials Today: Proceedings, 51 (2). pp. 1437-1443. ISSN 2214-7853. (Published) https://doi.org/10.1016/j.matpr.2021.12.087 https://doi.org/10.1016/j.matpr.2021.12.087
spellingShingle TJ Mechanical engineering and machinery
Mohamad Syaiful Izwan, Alies
Nur Zalikha, Khalil
Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
title Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
title_full Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
title_fullStr Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
title_full_unstemmed Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
title_short Effect of alumina/graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
title_sort effect of alumina graphene hybrid nano reinforcement to the adhesion and mechanical properties of adhesively bonded aluminum alloy with epoxy
topic TJ Mechanical engineering and machinery
url http://umpir.ump.edu.my/id/eprint/33465/1/Effect%20of%20alumina%20graphene%20hybrid%20nano%20reinforcement%20to%20the%20adhesion%20.pdf
work_keys_str_mv AT mohamadsyaifulizwanalies effectofaluminagraphenehybridnanoreinforcementtotheadhesionandmechanicalpropertiesofadhesivelybondedaluminumalloywithepoxy
AT nurzalikhakhalil effectofaluminagraphenehybridnanoreinforcementtotheadhesionandmechanicalpropertiesofadhesivelybondedaluminumalloywithepoxy