• français
    • English
    English
  • Ouvrir une session
Aide
Voir le document 
  •   Accueil de SAM
  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)
  • Voir le document
  • Accueil de SAM
  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)
  • Voir le document
JavaScript is disabled for your browser. Some features of this site may not work without it.

A review on the mechanical behaviour of microcellular and nanocellular polymeric foams: What is the effect of the cell size reduction?

Article dans une revue avec comité de lecture
Auteur
ccLE BARBENCHON, Louise
1002421 Institut de Mécanique et d'Ingénierie [I2M]
ccKOPP, Jean-Benoit
1002421 Institut de Mécanique et d'Ingénierie [I2M]

URI
http://hdl.handle.net/10985/25651
DOI
10.1177/0021955x241246066
Date
2024-05-24
Journal
Journal of Cellular Plastics

Résumé

Research on nanocellular foams is motivated in part by the promise of physical properties, in particular mechanical properties, that can go beyond the classical mechanical framework. However, due to the difficulty in obtaining foams of a given density but different cell sizes, determining the effect of cell size on the mechanical properties of polymer foams remains a challenge. To overcome this difficulty, studies on the mechanical behaviour of mesocellular, microcellular and nanocellular polymer foams have been compiled in this review article. After describing the different cellular structures between meso-, micro- and nanocellular foams, the mechanical properties are examined as a function of relative density and cell size. It is shown that for small strains and at low strain rates, nanocellular foams exhibit mechanical behaviour predicted by the Gibson and Ashby model. Relative density remains the first important factor to be taken into account when studying the Young’s modulus and buckling stress of nanocellular foams. The focus then shifts to fracture properties, as microcellular foams have already been shown to be far superior to more conventional foams. As studies are still scarce and different methodologies have been used, no general conclusions can be drawn. However, the fracture and impact properties could be greatly improved by this change in scale. The local confinement of molecular chains in polymeric nanocellular foams or the relaxation of the triaxial stress state in front of the crack tip could explain these observations.

Fichier(s) constituant cette publication

Nom:
I2M-JCP-lebarbenchon-2024.pdf
Taille:
29.28Mo
Format:
PDF
Voir/Ouvrir

Cette publication figure dans le(s) laboratoire(s) suivant(s)

  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)

Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Influence of the microstructure on the compressive behaviour of porous aluminas: From microstructural characterisation to fracture mechanisms 
    Article dans une revue avec comité de lecture
    ccHENRY, Quentin; ccVIOT, Philippe; ccLE BARBENCHON, Louise; ccCOSCULLUELA, Antonio; ccKOPP, Jean-Benoit (Elsevier BV, 2024-06)
    The mechanical response of porous aluminas under compressive loading was studied and compared with the fracture mechanisms. Aluminas with a wide range of pore sizes and porosity rates (1–60%) were produced to deconvolve ...
  • A thick cellular structural adhesive: Identification of its behavior under shear loading 
    Article dans une revue avec comité de lecture
    WETTA, Maxime; ccKOPP, Jean-Benoit; ccLE BARBENCHON, Louise; ccVIOT, Philippe (Elsevier BV, 2023-06)
    This study focuses on the link between the microstructure and the mechanical behavior under shear loading of a thick cellular structural adhesive (TCSA). X-ray microtomography and image post-processing were first used to ...
  • Reinforcement of cellular materials with short fibres: Application to a bio-based cork multi-scale foam 
    Article dans une revue avec comité de lecture
    LE BARBENCHON, Louise; ccKOPP, Jean-Benoit; ccGIRARDOT, Jeremie; ccVIOT, Philippe (Elsevier, 2020)
    A bio-sourced foam, agglomerated cork, was chosen to evaluate the influence of short fibres on the mechanical behaviour of cellular materials. The final material was obtained by mixing cork particles with a thermoset resin. ...
  • Multi-scale foam : 3D structure/compressive behaviour relationship of agglomerated cork 
    Article dans une revue avec comité de lecture
    LE BARBENCHON, Louise; ccGIRARDOT, Jeremie; ccKOPP, Jean-Benoit; ccVIOT, Philippe (Elsevier, 2019)
    This study focuses on the microstructural aspects of a cork-based by-product known as agglomerated cork and its influence on the compressive mechanical behaviour. The material consists in granulates of a natural polymeric ...
  • Energy Absorption Capacity of Agglomerated Cork Under Severe Loading Conditions 
    Article dans une revue avec comité de lecture
    ccLE BARBENCHON, Louise; ccVIOT, Philippe; ccGIRARDOT, Jeremie; ccKOPP, Jean-Benoit (Springer, 2021)
    Understanding the mechanical behavior of materials in working conditions is a current problem in transport industries. In this article, we demonstrate why the temperature and the strain-rate are first-order parameters when ...

Parcourir

Tout SAMLaboratoiresAuteursDates de publicationCampus/InstitutsCe LaboratoireAuteursDates de publicationCampus/Instituts

Lettre Diffuser la Science

Dernière lettreVoir plus

Statistiques de consultation

Publications les plus consultéesStatistiques par paysAuteurs les plus consultés

ÉCOLE NATIONALE SUPERIEURE D'ARTS ET METIERS

  • Contact
  • Mentions légales

ÉCOLE NATIONALE SUPERIEURE D'ARTS ET METIERS

  • Contact
  • Mentions légales