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Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates

Lode Daelemans (UGent) , Timo Meireman (UGent) , Ives De Baere (UGent) , Hubert Rahier, Wim Van Paepegem (UGent) and Karen De Clerck (UGent)
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Abstract
Fiber reinforced polymer composites are the material of choice for designing applications which require a high strength and stiffness at minimal weight such as aerospace structures, wind turbines or ultralight vehicles. However, delamination between the reinforcing plies remains a major problem as it limits further breakthrough of these materials. Recently, interleaving electrospun nanofibres between the reinforcing plies has proven to be a viable interlaminar toughening method which can significantly limit the occurrence of delamination failure in composite materials. This presentation will give a thorough insight into the relationship between the electrospun nanofibre properties and the resulting tough composites, and as such, allow for engineering novel and damage resistant nanofiber toughened composites.
Keywords
composites, electrospinning, delamination, mechanical properties

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MLA
Daelemans, Lode, et al. “Electrospun Nanofibers for Highly Toughened Fibre Reinforced Polymer Composite Laminates.” International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings, 2017.
APA
Daelemans, L., Meireman, T., De Baere, I., Rahier, H., Van Paepegem, W., & De Clerck, K. (2017). Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates. In International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : proceedings. Ghent.
Chicago author-date
Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Electrospun Nanofibers for Highly Toughened Fibre Reinforced Polymer Composite Laminates.” In International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings. Ghent.
Chicago author-date (all authors)
Daelemans, Lode, Timo Meireman, Ives De Baere, Hubert Rahier, Wim Van Paepegem, and Karen De Clerck. 2017. “Electrospun Nanofibers for Highly Toughened Fibre Reinforced Polymer Composite Laminates.” In International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : Proceedings. Ghent.
Vancouver
1.
Daelemans L, Meireman T, De Baere I, Rahier H, Van Paepegem W, De Clerck K. Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates. In: International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : proceedings. Ghent; 2017.
IEEE
[1]
L. Daelemans, T. Meireman, I. De Baere, H. Rahier, W. Van Paepegem, and K. De Clerck, “Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates,” in International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : proceedings, Ghent, 2017.
@inproceedings{8629108,
  abstract     = {Fiber reinforced polymer composites are the material of choice for designing applications which require a high
strength and stiffness at minimal weight such as aerospace structures, wind turbines or ultralight vehicles.
However, delamination between the reinforcing plies remains a major problem as it limits further breakthrough
of these materials. Recently, interleaving electrospun nanofibres between the reinforcing plies has proven to be a
viable interlaminar toughening method which can significantly limit the occurrence of delamination failure in
composite materials. This presentation will give a thorough insight into the relationship between the electrospun
nanofibre properties and the resulting tough composites, and as such, allow for engineering novel and damage
resistant nanofiber toughened composites.},
  author       = {Daelemans, Lode and Meireman, Timo and De Baere, Ives and Rahier, Hubert and Van Paepegem, Wim and De Clerck, Karen},
  booktitle    = {International Conference on Intelligent Textiles and Mass Customisation (ITMC2017) : proceedings},
  keywords     = {composites,electrospinning,delamination,mechanical properties},
  language     = {eng},
  location     = {Ghent},
  pages        = {3},
  title        = {Electrospun nanofibers for highly toughened fibre reinforced polymer composite laminates},
  year         = {2017},
}