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Advances in Materials Research
  Volume 5, Number 2, June 2016 , pages 121-130
DOI: https://doi.org/10.12989/amr.2016.5.2.121
 

Mechanical and Thermal Properties of Homo-PP/GF/CaCO3 Hybrid Nanocomposites
Mehran Parhizkar, Karim Shelesh-Nezhad and Abbas Rezaei

 
Abstract
    In an attempt to reach a balance of performances in homo-polypropylene based system, the effects of single and hybrid reinforcements inclusions comprising calcium carbonate nanoparticles (2, 4 and 6 phc) and glass fibers (10 wt.%) on the mechanical and thermal properties were investigated. Different samples were prepared by employing twin-screw extruder and injection molding machine. In morphological studies, the uniform distribution of glass fibers in PP matrix, relative adhesion between glass fibers and polymer, and existence of nanoparticles in polymer matrix were observed. PP/CaCO3(6 phc) as compared to pure PP and PP/GF had superior tensile and flexural strengths, impact resistance and deformation temperature under load (DTUL). PP/GF/CaCO3(6 phc) composite displayed comparable tensile and flexural strengths and impact resistance to neat PP, while its tensile and flexural moduli and deformation temperature under load (DTUL) were 436%, 99% and 26°C greater respectively. The maximum impact resistance was observed in PP/CaCO3(6 phc). The highest DTUL was perceived in PP hybrid nanocomposite containing 10 wt.% glass fiber and 4 phc CaCO3 nanoparticle.
 
Key Words
    hybrid composites; homo-polypropylene; glass fiber; CaCO3 nanoparticles; mechanical and thermal behavior
 
Address
Mehran Parhizkar,Abbas Rezaei: Faculty of Mechanical Engineering, University of Maragheh, Maragheh, Iran

Karim Shelesh-Nezhad: Plastics and Composites Engineering Center, Department of Mechanical Engineering, University of Tabriz, Tabriz 51666-1476, Iran
 

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