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Fabrication, characterization and mechanical properties of hybrid composites of copper using the nanoparticulates of SiC and carbon nanotubes

Akbarpour, M. R ; Sharif University of Technology

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  1. Type of Document: Article
  2. DOI: 10.1016/j.msea.2013.02.039
  3. Abstract:
  4. Copper based hybrid composites containing nano-sized silicon carbide and carbon nanotubes reinforcements with minimal porosity were fabricated via mechanical milling followed by hot pressing technique. Microstructures of the powders and consolidated materials were studied using scanning electron microscope, X-ray diffraction, Raman spectroscopy, and scanning transmission electron microscope. Microstructural characterization of the materials revealed that the addition of nanosized silicon carbide reinforcement lowered the grain growth rate and enhanced the homogenization during mechanical milling. Microhardness measurements and compression test showed considerable improvements in mechanical properties of the composites due to the addition of nanoparticulates and the grain refinement. The strength of the composite materials was discussed using theoretical models of the Hall-Petch, Orowan, and thermal mismatch mechanisms to determine the contribution of each mechanism in total strength
  5. Keywords:
  6. Carbon nanotubes ; Copper ; SiC ; Consolidated materials ; Hybrid composites ; Mechanical milling ; Micro-structural characterization ; Microhardness measurement ; Scanning electron microscope ; Scanning transmission electron microscopes ; Characterization ; Compression testing ; Grain growth ; Grain size and shape ; Hot pressing ; Mechanical alloying ; Mechanical properties ; Milling (machining) ; Raman spectroscopy ; Reinforcement ; Strength of materials ; Transmission electron microscopy ; X ray diffraction ; X ray powder diffraction ; Silicon carbide
  7. Source: Materials Science and Engineering A ; Volume 572 , 2013 , Pages 83-90 ; 09215093 (ISSN)
  8. URL: http://www.sciencedirect.com/science/article/pii/S0921509313001974