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Determination of the effective thermoelastic properties of cork-based agglomerates

Article dans une revue avec comité de lecture
Auteur
DELUCIA, Marco
164351 Institut de Mécanique et d'Ingénierie de Bordeaux [I2M]
CATAPANO, Anita
164351 Institut de Mécanique et d'Ingénierie de Bordeaux [I2M]
MONTEMURRO, Marco
164351 Institut de Mécanique et d'Ingénierie de Bordeaux [I2M]
PAILHES, Jérôme
164351 Institut de Mécanique et d'Ingénierie de Bordeaux [I2M]

URI
http://hdl.handle.net/10985/16436
DOI
10.1177/0731684419846991
Date
2019
Journal
Journal of Reinforced Plastics and Composites

Résumé

In this paper, a general numerical homogenisation scheme coupled with an efficient modelling strategy for predicting the effective thermoelastic properties of cork-based agglomerates is presented. In order to generate a realistic representation of the geometry and distribution of particles for the representative volume element (RVE) of the agglomerate at the mesoscopic scale, a general parametric model based on the Voronoi’s tesselation (VT) has been developed. However, the classical algorithm for VT has been enhanced by adding a full parametrization of the RVE. The grains composing the RVE are generated by considering the full set of design variables involved at this scale, i.e. the material properties of the constitutive phases (grains and matrix) and the main geometric parameters related to the grain (volume fraction, average diameter, geometric and material orientations). Numerical results show that the macroscopic effective thermoelastic properties of the cork-based agglomerate are strongly affected by the previous parameters in perfect agreement with experimental results available in literature.

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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.

  • Thermo-mechanical homogenisation of cork-based composites: variability in materials properties and propagation of uncertainty 
    Conférence invitée
    DELUCIA, Marco; CATAPANO, Anita; MONTEMURRO, Marco; PAILHES, Jérôme (2019)
    The last decades have been characterized by a growth of raw material demand, in particular due to the consumerism in developed countries and to the fast industrialization of emerging economies. Nowadays, with the aim to ...
  • Multi-scale optimisation of thin-walled structures by considering a global/local modelling approach 
    Article dans une revue avec comité de lecture
    IZZI, Michele Iacopo; MONTEMURRO, Marco; CATAPANO, Anita; FANTERIA, Daniele; PAILHES, Jérôme (SAGE Publications, 2020)
    In this work, a design strategy for optimising thin-walled structures based on a global-local finite element (FE) modelling approach is presented. The preliminary design of thin-walled structures can be stated in the form ...
  • A multi-scale two-level optimisation strategy integrating a global/local modelling approach for composite structures 
    Article dans une revue avec comité de lecture
    IZZI, Michele Iacopo; MONTEMURRO, Marco; CATAPANO, Anita; PAILHES, Jérôme (Elsevier, 2020)
    In this work, a multi-scale optimisation strategy for the preliminary design of composite structures involving design requirements at different scales, is presented. Such a strategy, denoted as GL-MS2LOS, has been formulated ...
  • A general multi-scale design strategy for the optimisation of variable stiffness composites 
    Communication avec acte
    MONTEMURRO, Marco; CATAPANO, Anita (2016)
    The present paper focuses on the development of a multi-scale design strategy for the optimisation of variable angle stiffness laminates. The main goal consists in proving that it is possible to design structures having ...
  • A multi-scale approach for the simultaneous shape and material optimisation of sandwich panels with cellular core 
    Article dans une revue avec comité de lecture
    MONTEMURRO, Marco; CATAPANO, Anita; DOROSZEWSKI, Dominique (Elsevier, 2016)
    This work deals with the problem of the optimum design of a sandwich panel made of carbon-epoxy skins and a metallic cellular core. The proposed design strategy is a multi-scale numerical optimisation procedure that does ...

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