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Pure Appl. Chem., 1985, Vol. 57, No. 11, pp. 1651-1657

Critical issues in achieving desirable mechanical properties for short fiber composites

J. L. Kardos

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  • Hu Zhong, Hossan Mohammad Robiul: Strength Evaluation and Failure Prediction of Short Carbon Fiber Reinforced Nylon Spur Gears by Finite Element Modeling. Appl Compos Mater 2013, 20, 315. <>
  • Frei S., Andrä H., Pinnau R., Tse O.: Optimizing fiber orientation in fiber-reinforced materials using efficient upscaling. Comput Optim Appl 2013. <>
  • Lalwani Gaurav, Henslee Allan M., Farshid Behzad, Parmar Priyanka, Lin Liangjun, Qin Yi-Xian, Kasper F. Kurtis, Mikos Antonios G., Sitharaman Balaji: Tungsten disulfide nanotubes reinforced biodegradable polymers for bone tissue engineering. Acta Biomaterialia 2013, 9, 8365. <>
  • Lalwani Gaurav, Henslee Allan M., Farshid Behzad, Lin Liangjun, Kasper F. Kurtis, Qin Yi-Xian, Mikos Antonios G., Sitharaman Balaji: Two-Dimensional Nanostructure-Reinforced Biodegradable Polymeric Nanocomposites for Bone Tissue Engineering. Biomacromolecules 2013, 14, 900. <>
  • Seo D.-W., Kim H.-J., Bae K.-U., Myung N.-H.: The Effect of Fiber Orientation Distribution on the Effective Permittivity of Fiber Composite Materials. Journal of Electromagnetic Waves and Applications 2010, 24, 2419. <>
  • Manitiu Mihai, Horsch Steven, Gulari Esin, Kannan Rangaramanujam M.: Role of polymer–clay interactions and nano-clay dispersion on the viscoelastic response of supercritical CO2 dispersed polyvinylmethylether (PVME)–Clay nanocomposites. Polymer 2009, 50, 3786. <>
  • Grujicic Mica, Pandurangan B., Angstadt D. C., Koudela K. L., Cheeseman B. A.: Ballistic-performance optimization of a hybrid carbon-nanotube/E-glass reinforced poly-vinyl-ester-epoxy-matrix composite armor. J Materials Sci 2007, 42, 5347. <>
  • Nikpur K., Chen Y.F., Kardos J.L.: Fracture toughness of unidirectional short-fiber reinforced epoxy composites. Compos Sci and Technol 1990, 38, 175. <>