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Experimental study on mechanical properties of PE/CNT composites

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
High density polyethylene/carbon nanotube composites have been produced for investigations. Four CNT volume fractions and two injection pressures were considered. According to the Taguchi approach, eight experiments were designed. The effect of the carbon nanotubes weight fraction and injection pressure on hardness and impact strength of nanocomposite samples were investigated. The results showed that the effect of the carbon nanotube weight fraction on hardness and impact strength of nanocomposite samples was much higher than the effect of injection pressure. By adding 1%wt (weight) carbon nanotube into the polymer, the impact strength and hardness of the samples improved by 74% and 47%, respectively
Rocznik
Strony
719--726
Opis fizyczny
Bibliogr. 16 poz., rys., tab.
Twórcy
autor
  • Department of Mechanical Engineering, Tabriz Branch, Islamic Azad University, Tabriz, Iran
  • Department of Mechanical Engineering, Tabriz Branch, Islamic Azad University, Tabriz, Iran
Bibliografia
  • 1. Ajayan P.M., Stephan O., Colliex C., Trauth D., 1994, Aligned carbon nanotube arrays formed by cutting a polymer resin-nanotube composite, Science, 265, 1212-1214
  • 2. Azizi S., Fattahi A.M., Kahnamouei J.T., 2015a, Evaluating mechanical properties of nano- -platelet reinforced composites under mechanical and thermal loads, Journal of Computational and Theoretical Nanoscience, 12, 1, 4179-4185
  • 3. Azizi S., Safaei B., Fattahi A.M., Tekere M., 2015b, Nonlinear vibrational analysis of nano- -beams embedded in an elastic medium including surface stress effects, Advances in Materials Science and Engineering, 12, 1, 1-7
  • 4. Douglas C., 2013, Statistical Quality Control, Wiley, 7th Edition
  • 5. Fattahi A.M., Safaei B., 2017, Buckling analysis of CNT-reinforced beams with arbitrary boundary conditions, Microsystem Technologies, 2017, 3, 1-13
  • 6. Haggenmueller R., Gommans H.H., Rinzler A.G., Fischer J.E., Winey K.I., 2000, Aligned single wall carbon nanotubes in composites by melt processing methods, Chemical Physics Letters, 330, 219-225
  • 7. Jin L., Bower C., Zhou O., 1998, Alignment of carbon nanotubes in a polymer matrix by mechanical stretching, Applied Physics Letters, 73, 1197-1199
  • 8. Jordan J., Jacob K.I., Tannenbaum R., Sharaf M.A., Jasiuk I., 2005, Experimental trends in polymer nanocomposites-a review, Materials Science and Engineering A, 393, 1-11
  • 9. Komarneni S., 1992, Nanocomposites, Journal of Materials Chemistry, 2, 1219-1230
  • 10. Navidfar A., 2014, Experimental study of mechanical properties of nano-composites containing carbon nanotubes produced by injection molding, M.D. Thesis, Ourmieh University, Ourmieh
  • 11. Najipour A., Fattahi A.M., 2016, Experimental study on polyethylene/carbon nanotube injected composites, Croizatia, 93, 2, 145-152
  • 12. Safaei B., Fattahi A.M., 2016, Vibrational response analysis of polymer/CNT plates using molecular dynamics simulation, Croizatia, 93, 2, 65-79
  • 13. Sahmani S., Fattahi A.M., 2016, Size-dependent nonlinear instability of shear deformable cylindrical nanopanels subjected to axial compression in thermal environments, Microsystem Technologies, 2016, 12, 1-15
  • 14. Sahmani S., Fattahi A.M., 2017. Thermo-electro-mechanical size-dependent postbuckling response of axially loaded piezoelectric shear deformable nanoshells via nonlocal elasticity theory, Microsystem Technologies, 2017, 2, 1-15
  • 15. Schadler L.S., Giannaris S.C., Ajayan P.M., 1998, Load transfer in carbon nanotube epoxy composites, Applied Physics Letters, 73, 3842-3844
  • 16. Shishavan, Mamaghani S., Azdast T., Ahmadi S.R., 2014, Investigation of the effect of nanoclay and processing parameters on the tensile strength and hardness of injection molded Acrylonitrile Butadiene Styrene-organoclay nanocomposites, Materials and Design, 58, 527-534
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-464285f7-c728-4c49-97a9-fa289c9c884b
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