Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method

Metal network compounds have primary properties. The use of lightweight and low vitality is a testament to the growing interest in the automotive industry. Aluminum alloys, due to their advanced physical, mechanical and tribological properties, have become a highly emerging material for a variety of...

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Main Authors: C.R. Kannan, S. Suresh, M. Navaneetha Krishnan
Format: Article
Language:English
Published: Polish Academy of Sciences 2023-03-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/126258/PDF/AMM-2023-1-34-Kannan.pdf
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author C.R. Kannan
S. Suresh
M. Navaneetha Krishnan
author_facet C.R. Kannan
S. Suresh
M. Navaneetha Krishnan
author_sort C.R. Kannan
collection DOAJ
description Metal network compounds have primary properties. The use of lightweight and low vitality is a testament to the growing interest in the automotive industry. Aluminum alloys, due to their advanced physical, mechanical and tribological properties, have become a highly emerging material for a variety of industrial applications and the importance of efficient material selection is explained. In this paper, an Al8011 hybrid metal matrix composite is developed through the stir casting process. The different weight proportions of B 4C (3%, 6%, 9% & 12%) and fixed proportions of 2% MoS2 have been used. Composite developed are subjected to mechanical properties evaluation and seawater corrosion studies following standard procedures. To study the porosity of the composite samples, theoretical density and actual density are calculated. An acoustic emission system-assisted tensile test is carried out to report the strength of the composite. From this experimental method, adding reinforcement can increase the tensile strength and hardness of the composites. Under sea water, the increase in reinforcement found an increase in corrosion resistance. Fractured surfaces were perused using SEM and EDS analysis.
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spelling doaj.art-17fc0e96d4ed49f388a98611cfc5f1ad2023-03-16T15:02:45ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092023-03-01vol. 68No 1223235https://doi.org/10.24425/amm.2023.141498Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting MethodC.R. Kannan0S. Suresh1M. Navaneetha Krishnan2Universal College of Engineering and Technology, Department of Mechanical Engineering, Vallioor, Tamilnadu, IndiaUniversity College of Engineering, Nagercoil, Department of Mechanical Engineering Tamilnadu, IndiaAmrita College of Engineering and Technology, Department of Mechanical Engineering, Amritagiri, Erachakulam (Po), Nagercoil, Tamil Nadu, IndiaMetal network compounds have primary properties. The use of lightweight and low vitality is a testament to the growing interest in the automotive industry. Aluminum alloys, due to their advanced physical, mechanical and tribological properties, have become a highly emerging material for a variety of industrial applications and the importance of efficient material selection is explained. In this paper, an Al8011 hybrid metal matrix composite is developed through the stir casting process. The different weight proportions of B 4C (3%, 6%, 9% & 12%) and fixed proportions of 2% MoS2 have been used. Composite developed are subjected to mechanical properties evaluation and seawater corrosion studies following standard procedures. To study the porosity of the composite samples, theoretical density and actual density are calculated. An acoustic emission system-assisted tensile test is carried out to report the strength of the composite. From this experimental method, adding reinforcement can increase the tensile strength and hardness of the composites. Under sea water, the increase in reinforcement found an increase in corrosion resistance. Fractured surfaces were perused using SEM and EDS analysis.https://journals.pan.pl/Content/126258/PDF/AMM-2023-1-34-Kannan.pdfal8011stir castingacoustic emission (ae)tensilecorrosion
spellingShingle C.R. Kannan
S. Suresh
M. Navaneetha Krishnan
Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method
Archives of Metallurgy and Materials
al8011
stir casting
acoustic emission (ae)
tensile
corrosion
title Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method
title_full Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method
title_fullStr Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method
title_full_unstemmed Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method
title_short Influence of Acoustic Emission Signals and Damage Analysis During the Tensile Test on Al8011 Hybrid Composites by Stir Casting Method
title_sort influence of acoustic emission signals and damage analysis during the tensile test on al8011 hybrid composites by stir casting method
topic al8011
stir casting
acoustic emission (ae)
tensile
corrosion
url https://journals.pan.pl/Content/126258/PDF/AMM-2023-1-34-Kannan.pdf
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AT ssuresh influenceofacousticemissionsignalsanddamageanalysisduringthetensiletestonal8011hybridcompositesbystircastingmethod
AT mnavaneethakrishnan influenceofacousticemissionsignalsanddamageanalysisduringthetensiletestonal8011hybridcompositesbystircastingmethod