Investigation of Mechanical and Tribological Properties of AA6061/MWCNT/B4C Hybrid Metal Matrix Composite

Carbon nanotubes (CNTs) and graphene, in particular, have been the subject of many recent studies since their discovery in the early 2000s. Because of their unusual properties, carbon nanotubes (CNTs) have piqued the interest of scientists across a wide range of disciplines. An Al matrix was reinfor...

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Published inAdvances in materials science and engineering Vol. 2022; pp. 1 - 8
Main Authors Satishkumar, P., Natarajan, N., Saminathan, Rajasekaran, Hillary, J. Justin Maria, Birhanu, Biru, Alguno, Arnold C., Capangpangan, Rey Y., Raj, Vishnu, Livingston, Stephen
Format Journal Article
LanguageEnglish
Published New York Hindawi 2022
John Wiley & Sons, Inc
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Abstract Carbon nanotubes (CNTs) and graphene, in particular, have been the subject of many recent studies since their discovery in the early 2000s. Because of their unusual properties, carbon nanotubes (CNTs) have piqued the interest of scientists across a wide range of disciplines. An Al matrix was reinforced with powder metallurgy-fabricated B4C and CNT composites. The nanocomposite aluminium matrix was examined for tribological behaviour, density, stiffness, and compressive strength before and after hot isostatic pressing (HIP). Scanning electron microscopy and TEM were used to analyze the carbon nanotubes and their hybrid counterparts (SEM). The density of nanocomposites was reduced by 38% without HIP but by 45% after it was added to the mixture. Hardness was also increased by 40%, but following HIP, the hardness rose to 67%. Before and after HIP, the compression strength increased by 39% and 60%, respectively. HIP improves the wear rate by 45%, and B4C and CNTs improve the coefficient of friction by 20% in all volume fractions but only by 48% in the case of nanocomposites.
AbstractList Carbon nanotubes (CNTs) and graphene, in particular, have been the subject of many recent studies since their discovery in the early 2000s. Because of their unusual properties, carbon nanotubes (CNTs) have piqued the interest of scientists across a wide range of disciplines. An Al matrix was reinforced with powder metallurgy-fabricated B4C and CNT composites. The nanocomposite aluminium matrix was examined for tribological behaviour, density, stiffness, and compressive strength before and after hot isostatic pressing (HIP). Scanning electron microscopy and TEM were used to analyze the carbon nanotubes and their hybrid counterparts (SEM). The density of nanocomposites was reduced by 38% without HIP but by 45% after it was added to the mixture. Hardness was also increased by 40%, but following HIP, the hardness rose to 67%. Before and after HIP, the compression strength increased by 39% and 60%, respectively. HIP improves the wear rate by 45%, and B4C and CNTs improve the coefficient of friction by 20% in all volume fractions but only by 48% in the case of nanocomposites.
Author Capangpangan, Rey Y.
Natarajan, N.
Saminathan, Rajasekaran
Satishkumar, P.
Raj, Vishnu
Birhanu, Biru
Hillary, J. Justin Maria
Livingston, Stephen
Alguno, Arnold C.
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  surname: Natarajan
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  organization: Department of Mechanical EngineeringMuthayammal Engineering CollegeRasipuramNamakkalTamil Nadu 637408Indiamuthayammalengg.ac.in
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  givenname: Rajasekaran
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  surname: Saminathan
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  organization: Mechanical Engineering College of EngineeringJazan UniversityJizanSaudi Arabiajazanu.edu.sa
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  givenname: J. Justin Maria
  surname: Hillary
  fullname: Hillary, J. Justin Maria
  organization: Department of Mechanical EngineeringSri Krishna College of Engineering and TechnologyCoimbatoreTamil Nadu 641105Indiaskcet.ac.in
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  givenname: Biru
  orcidid: 0000-0002-2410-3720
  surname: Birhanu
  fullname: Birhanu, Biru
  organization: Motor Vechicle EngineeringDefense University College of EngineeringOromiaEthiopia
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  givenname: Arnold C.
  surname: Alguno
  fullname: Alguno, Arnold C.
  organization: Department of PhysicsMindanao State UniversityLligan Institute of TechnologyLliganPhilippinesmsumain.edu.ph
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  givenname: Rey Y.
  orcidid: 0000-0002-7078-9903
  surname: Capangpangan
  fullname: Capangpangan, Rey Y.
  organization: Department of Physical Science and MathematicsCollege of Science and EnvironmentMindanao State UniversityNaawanMisamis OrientalPhilippinesmsumain.edu.ph
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  givenname: Vishnu
  orcidid: 0000-0002-1989-2454
  surname: Raj
  fullname: Raj, Vishnu
  organization: Department of Aeronautical EngineeringManav Rachna International Institute of Research and StudiesFabidabadIndia
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  orcidid: 0000-0001-6314-8123
  surname: Livingston
  fullname: Livingston, Stephen
  organization: Department of Mechanical EngineeringStudy World College of EngineeringCoimbatoreTamil Nadu 641105Indiaritindia.edu
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Snippet Carbon nanotubes (CNTs) and graphene, in particular, have been the subject of many recent studies since their discovery in the early 2000s. Because of their...
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SubjectTerms Aluminum
Boron
Boron carbide
Carbon
Coefficient of friction
Composite materials
Compressive strength
Density
Friction
Graphene
Graphite
Hardness
Hot isostatic pressing
Investigations
Magnesium alloys
Mechanical properties
Metal matrix composites
Multi wall carbon nanotubes
Nanocomposites
Plasma sintering
Powder metallurgy
Stiffness
Tribology
Wear rate
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Title Investigation of Mechanical and Tribological Properties of AA6061/MWCNT/B4C Hybrid Metal Matrix Composite
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