• Title of article

    Processing and Characterization of AA2024/Al2O3/SiC Reinforces Hybrid Composites Using Squeeze Casting Technique

  • Author/Authors

    Senthil Kumar, M School of Mechanical and Building Sciences - VIT - Chennai, India , Natrayan, L School of Mechanical and Building Sciences - VIT - Chennai, India , Mangalaraja, R.V Department of Materials Engineering - Faculty of Engineering - University of Concepcion - Concepcion, Chile , Senthil Kumar, R Department of Mechanical Engineering - Dhaanish Ahmed College of Engineering - Chennai, India

  • Pages
    13
  • From page
    55
  • To page
    67
  • Abstract
    The present requirement of the automobile industry is seeking lightweight material that satis􀀠es the technical and technological requirements with better mechanical and tribological characteristics. Aluminum matrix composite (AMC) materials meet the requirements of modern demands. AMCs are used in automotive applications as engine cylinders, pistons, disc, and drum brakes. This paper investigates the effect of particle size and wt% of Al2O3/SiC reinforcement on mechanical and tribological properties of hybrid metal matrix composites (HMMCs). AA2024 aluminum alloy is reinforced with Al2O3/SiC different particle sizes (10, 20 and 40 μm) and weight fractions (upto 10 wt %) fabricated by using a squeeze casting technique. HMMCs were characterized for its properties such as X-ray diffraction (XRD), density, scanning electron microscope (SEM), hardness, tensile strength, wear and coef􀀠cient of friction. AA2024/5wt%Al2O3/5wt%SiC with 10 􀀷m reinforced particle size showed maximum hardness and tensile strength of 156.4 HV and 531.43 MPa and a decrease in wear rate was observed from 0.00307 to 0.00221 at 10N. Hybrid composites showed improved mechanical and wear resistance suitable for engine cylinder liner applications.
  • Keywords
    Squeeze casting and Particle size , Wear , Tensile strength , Density , Hardness
  • Journal title
    Astroparticle Physics
  • Serial Year
    2019
  • Record number

    2450681