Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method

The present work investigates the microstructural and mechanical properties of nano-Si3N4-BN hardened Al–Zn–Mg alloy hybrid nanocomposites synthesized by a vacuum-assisted stir casting process using different weight fractions. The microstructural analysis is performed using an optical microscope and...

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Main Authors: L. Tharanikumar, B. Mohan, G. Anbuchezhiyan
Format: Article
Language:English
Published: Elsevier 2022-09-01
Series:Journal of Materials Research and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2238785422013266
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author L. Tharanikumar
B. Mohan
G. Anbuchezhiyan
author_facet L. Tharanikumar
B. Mohan
G. Anbuchezhiyan
author_sort L. Tharanikumar
collection DOAJ
description The present work investigates the microstructural and mechanical properties of nano-Si3N4-BN hardened Al–Zn–Mg alloy hybrid nanocomposites synthesized by a vacuum-assisted stir casting process using different weight fractions. The microstructural analysis is performed using an optical microscope and the morphology studies were characterized using SEM analysis. The B117 salt spray test has been used to analyze the corrosion tests on hybrid nano composites. The microstructure evaluation revealed that nano-reinforcing particles are uniformly distributed in the matrix alloy without residual pores forming in the matrix alloy and shows the occurrence of intradendritic grains along the grain boundaries. Morphology analysis of synthesized Aluminium alloy hybrid nanocomposites illustrates that ceramic hard particles cannot be resolved and appear as fine globular species at high temperatures and its crystalline size of an average 44.9 nm has been observed. Owing to reduction in grain size and enhanced grain refinement the tensile and compressive strength of hybrid nano composites significantly increased in comparison with as cast Al–Zn–Mg alloy. The presence of Al2Cu forms as an intermetallic phase, impeding dislocation progression and it acts as corrosion resistant of developed hybrid nano composites.
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spelling doaj.art-06cc1339dc7142e0835af77a4976bb8b2022-12-22T02:03:07ZengElsevierJournal of Materials Research and Technology2238-78542022-09-012036463655Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting methodL. Tharanikumar0B. Mohan1G. Anbuchezhiyan2Department of Mechanical Engineering, Mohamed Sathak AJ College of Engineering, Chennai-603103, Tamil Nadu, India; Corresponding author.Department of Mechanical Engineering, CEG Campus, Anna University, Chennai-600025, Tamil Nadu, IndiaDepartment of Mechanical Engineering, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences, Chennai-602105, TamilNadu, IndiaThe present work investigates the microstructural and mechanical properties of nano-Si3N4-BN hardened Al–Zn–Mg alloy hybrid nanocomposites synthesized by a vacuum-assisted stir casting process using different weight fractions. The microstructural analysis is performed using an optical microscope and the morphology studies were characterized using SEM analysis. The B117 salt spray test has been used to analyze the corrosion tests on hybrid nano composites. The microstructure evaluation revealed that nano-reinforcing particles are uniformly distributed in the matrix alloy without residual pores forming in the matrix alloy and shows the occurrence of intradendritic grains along the grain boundaries. Morphology analysis of synthesized Aluminium alloy hybrid nanocomposites illustrates that ceramic hard particles cannot be resolved and appear as fine globular species at high temperatures and its crystalline size of an average 44.9 nm has been observed. Owing to reduction in grain size and enhanced grain refinement the tensile and compressive strength of hybrid nano composites significantly increased in comparison with as cast Al–Zn–Mg alloy. The presence of Al2Cu forms as an intermetallic phase, impeding dislocation progression and it acts as corrosion resistant of developed hybrid nano composites.http://www.sciencedirect.com/science/article/pii/S2238785422013266Al–Zn–Mg alloySilicon nitrideBoron nitrideVacuum assisted stir castingSalt spray testMicrohardnes
spellingShingle L. Tharanikumar
B. Mohan
G. Anbuchezhiyan
Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method
Journal of Materials Research and Technology
Al–Zn–Mg alloy
Silicon nitride
Boron nitride
Vacuum assisted stir casting
Salt spray test
Microhardnes
title Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method
title_full Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method
title_fullStr Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method
title_full_unstemmed Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method
title_short Enhancing the microstructure and mechanical properties of Si3N4–BN strengthened Al–Zn–Mg alloy hybrid nano composites using vacuum assisted stir casting method
title_sort enhancing the microstructure and mechanical properties of si3n4 bn strengthened al zn mg alloy hybrid nano composites using vacuum assisted stir casting method
topic Al–Zn–Mg alloy
Silicon nitride
Boron nitride
Vacuum assisted stir casting
Salt spray test
Microhardnes
url http://www.sciencedirect.com/science/article/pii/S2238785422013266
work_keys_str_mv AT ltharanikumar enhancingthemicrostructureandmechanicalpropertiesofsi3n4bnstrengthenedalznmgalloyhybridnanocompositesusingvacuumassistedstircastingmethod
AT bmohan enhancingthemicrostructureandmechanicalpropertiesofsi3n4bnstrengthenedalznmgalloyhybridnanocompositesusingvacuumassistedstircastingmethod
AT ganbuchezhiyan enhancingthemicrostructureandmechanicalpropertiesofsi3n4bnstrengthenedalznmgalloyhybridnanocompositesusingvacuumassistedstircastingmethod