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Comparison of the crushing performance of hollow and foam-filled small-scale composite tubes with different geometrical shapes for use in sacrificial cladding structures

  • Sivakumar Palanivelu
  • , Wim Van Paepegem
  • , Joris Degrieck
  • , John Vantomme
  • , Dimitrios Kakogiannis
  • , Johan Van Ackeren
  • , Danny Van Hemelrijck
  • , Jan Wastiels
    • University of Ghent
    • VUB University

    Onderzoeksoutput: Bijdrage aan een tijdschriftArtikelpeer review

    65 Citaten (Scopus)

    Samenvatting

    This paper presents the quasi-static crushing performance of nine different geometrical shapes of small-scale glass/polyester composite tubes filled with polyurethane closed-cell foam for use in sacrificial cladding structures. The effect of polyurethane foam on the crushing characteristics and the corresponding energy absorption is addressed for each geometrical shape of the composite tube. Composite tubes with two different thicknesses (1 mm and 2 mm) have been considered to study the influence of polyurethane foam on the crushing performance. From the present study, it was found that the presence of polyurethane foam inside the composite tubes suppressed the circumferential delamination process and fibre fracturing; consequently, it reduced the specific energy absorption of composite tubes. Furthermore, the polyurethane foam attributed to a higher peak crush load for each composite tube. However, the presence of polyurethane foam inside the composite tubes significantly increased the stability of the crushing phenomena especially for the square and hexagonal cross-sectional composite tubes with 1 mm wall thickness. The results from this study are compared with our previous results for composite tubes without polyurethane foam [1].

    Originele taal-2Engels
    Pagina's (van-tot)434-445
    Aantal pagina's12
    TijdschriftComposites Part B:Engineering
    Volume41
    Nummer van het tijdschrift6
    DOI's
    StatusGepubliceerd - sep. 2010

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