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Multi-scale foam : 3D structure/compressive behaviour relationship of agglomerated cork

Article dans une revue avec comité de lecture
Auteur
LE BARBENCHON, Louise
ccGIRARDOT, Jeremie
ccKOPP, Jean-Benoit
ccVIOT, Philippe

URI
http://hdl.handle.net/10985/17576
DOI
10.1016/j.mtla.2019.100219
Date
2019
Journal
Materialia

Résumé

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 foam - cork - mixed together with a small quantity of a bio-sourced resin. Optical and scanning electron microscopy (SEM) are first used to investigate on the bead geometry and placement and interfaces arrangement. Then X-ray computed tomography allows to study the spatial arrangement of agglomerated cork microstructure and hence to complete and confirm 2D observations. 2D and 3D observations show a transverse anisotropic material which is confirmed by the mechanical tests. SEM pictures demonstrate an intricate and heterogeneous material. Microtomography confirms the presence of macroporosities between cork granulates having a mean volume around 0.1 mm 3 . Cork cell specific geometry is also confirmed. The volume of those cells lies around 10 −5 mm 3 . Finally quasi-static compression tests are run to establish a link between microstructure and mechanical behaviour thanks to digital image correlation (DIC). Cork agglomerate demonstrates strong strain localisation at its surface caused by its multi-scale structure.

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

Documents liés

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

  • 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. ...
  • 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 ...
  • In situ characterisation of dynamic fracture in $$Al_2O_3$$ using ultra-fast X-ray phase contrast radioscopy: effects of porosity and crack speed 
    Article dans une revue avec comité de lecture
    HENRY, Quentin; ccKOPP, Jean-Benoit; ccLE BARBENCHON, Louise; ccGIRARDOT, Jérémie; ccLUKIC, Bratislav; ccCOHEN, Amitay; ccCOSCULLUELA, Antonio; ccVIOT, Philippe (2025)
    The dynamic fracture properties of porous ceramics were studied using single bunch synchrotron X-ray phase contrast imaging. The modified brazilian geometry was used to initiate and propagate a pure mode I crack. The ...
  • 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 ...

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