Relationship between local damage and macroscopic response of soft materials highly reinforced by monodispersed particles
Article dans une revue avec comité de lecture
Date
2020Journal
Mechanics of MaterialsRésumé
A rubberlike matrix highly filled with spherical micrometric glass beads is submitted to uniaxial tension tests until break. X-ray tomography imaging performed on the material while submitted to uniaxial tension reveals early debonding at the matrix/filler interfaces at the poles of the particles followed by void coalescence creating damage localization. The latter causes a downturn of the macroscopic stress-strain response. These phenomena are analyzed further with three-dimensional finite element simulations, where 64 spherical beads are distributed randomly in a periodic cell. A simple version of the Tvergaard-Hutchinson cohesive-zone model allows to reproduce all the experimental trends well. The effects of the three parameters involved are analyzed, and three different types of macroscopic behaviors are observed corresponding to three different microstructure damages. The value of the initial stiffness of the interface, limited by numerical convergence, has little effect on how the local damage evolves but has a significant impact on the overall macroscopic stress values. The local damage is strongly dependent on the critical strength and the separation failure displacement, and the adhesion energy may be considered as a resulting parameter of the two previous ones. The interfacial critical strength appears to have a significant impact on the damage initiation, either spread across the structure for low values, or localized for high values. Increasing the interface separation failure displacement delays the possible loss of adhesion to a higher strain and preserves the integrity of the composite material.
Fichier(s) constituant cette publication
- Nom:
- PIMM_MM_ 2020_GILORMINI.pdf
- Taille:
- 3.399Mo
- Format:
- Description:
- Article
- Fin d'embargo:
- 2020-01-01
Cette publication figure dans le(s) laboratoire(s) suivant(s)
Documents liés
Visualiser des documents liés par titre, auteur, créateur et sujet.
-
Article dans une revue avec comité de lectureDE FRANCQUEVILLE, Foucault; GILORMINI, Pierre; DIANI, Julie; VANDENBROUCKE, Aude (Elsevier, 2020)Motivated by the different uniaxial responses of two actual materials filled with either sifted glass beads or sifted glass grits, the influence of the fillers shape on the finite strain behavior of highly filled composites ...
-
Article dans une revue avec comité de lectureDE FRANCQUEVILLE, Foucault; DIANI, Julie; GILORMINI, Pierre; VANDENBROUCKE, Aude (Elsevier, 2021)The development of new generations of propellants with better energetic properties may be hampered by unsatisfactory mechanical behaviors in terms of strength and toughness. A micromechanical approach is adopted to provide ...
-
Article dans une revue avec comité de lectureFOUCAULT DE FRANCQUEVILLE; GILORMINI, Pierre; DIANI, Julie (Elsevier, 2019)A method is proposed for generating reliable representative volume elements (RVEs) that allows reducing the statistical analysis required for the simulation of the mechanical behavior of isotropic composites highly filled ...
-
Article dans une revue avec comité de lectureDIANI, Julie; GILORMINI, Pierre; FREDY, Carole; ROUSSEAU, Ingrid (Elsevier, 2012)The viscoelastic behavior of an amorphous shape-memory polymer network and its dependence on time and temperature were measured by dynamic mechanical analysis. The resulting thermomechanical behavior was modeled and ...
-
Article dans une revue avec comité de lectureDIANI, Julie; GILORMINI, Pierre (Elsevier, 2017)A three-dimensional cubic Monte Carlo lattice model is considered to test the impact of volume on the molecularmobility of amorphous polymers. Assuming classic polymer chain dynamics, the concept of locked volume limiting ...