World's Best Scientists 2026 revealed!
Djimedo Kondo

Djimedo Kondo

Overview

Djimedo Kondo is affiliated with Sorbonne University in France and focuses their research primarily on engineering and materials science. Their work explores several subfields, including mechanics of materials, materials chemistry, polymers and plastics, biomaterials, and renewable energy, sustainability, and the environment.

The main topics of Djimedo Kondo's work comprise:

  • Numerical methods in engineering
  • Composite material mechanics
  • Polymer nanocomposites and properties
  • Nanoparticle-based drug delivery
  • Iron oxide chemistry and applications
  • Rock mechanics and modeling
  • Nonlocal and gradient elasticity in micro/nano structures

Djimedo Kondo has published extensively in various scientific venues, with frequent appearances in:

  • HAL (Le Centre pour la Communication Scientifique Directe)
  • Journal of the Mechanics and Physics of Solids
  • Nanocomposites
  • SSRN Electronic Journal
  • International Journal of Solids and Structures

Recent papers authored by Djimedo Kondo include:

  • "Effective toughness of disordered brittle solids: A homogenization framework," 2021, Journal of the Mechanics and Physics of Solids
  • "Incremental variational homogenization of elastoplastic composites with isotropic and Armstrong-Frederick type nonlinear kinematic hardening," 2021, International Journal of Solids and Structures
  • "Effects of particles size on the overall strength of nanocomposites: Molecular Dynamics simulations and theoretical modeling," 2021, Mechanics Research Communications
  • "MEALOR II Damage Mechanics and Local Approach to Fracture," 2023, HAL (Le Centre pour la Communication Scientifique Directe)
  • "Striking effect of the iron stearate purity on the shape and size of maghemite nanoparticles," 2023, Colloids and Surfaces A Physicochemical and Engineering Aspects

Djimedo Kondo has collaborated repeatedly with several coauthors, demonstrating ongoing research partnerships with:

  • Fahmi Bédoui
  • Sakina Meftah
  • Anh-Tu Ngo
  • Isabelle Lisiecki
  • Adoté Sitou Blivi

Their multidisciplinary research approach integrates advanced modeling, theoretical frameworks, and experimental studies across material properties and mechanical behaviors. This includes work on nanocomposites, damage mechanics, fracture modeling, and nanoparticle synthesis and characterization.

Best Publications

  • Microporomechanics: Dormieux/Microporomechanics

    Luc Dormieux;Djimédo Kondo;Franz-Josef Ulm

  • A coupled elastoplastic damage model for semi-brittle materials and extension to unsaturated conditions

    Jian-Fu Shao;Yun Jia;Djimedo Kondo;Anne-Sophie Chiarelli

  • Micromechanical approach to the behavior of poroelastic materials

    Luc Dormieux;A. Molinari;Djimedo Kondo

  • Micromechanical Analysis of Anisotropic Damage in Brittle Materials

    Vincent Pensée;Djimedo Kondo;Luc Dormieux

  • Macroscopic yield criteria for plastic anisotropic materials containing spheroidal voids

    Vincent Monchiet;Oana Cazacu;Eric Charkaluk;Djimedo Kondo

  • Computational homogenization of elasto-plastic porous metals

    Felix Fritzen;Samuel Forest;Thomas Böhlke;Djimedo Kondo

  • Micromechanical analysis of coupling between anisotropic damage and friction in quasi brittle materials: Role of the homogenization scheme

    Q.Z. Zhu;Q.Z. Zhu;D. Kondo;J.F. Shao

  • A micro–macro model for clayey rocks with a plastic compressible porous matrix

    W.Q. Shen;J.F. Shao;D. Kondo;B. Gatmiri

  • A micromechanical model of elastoplastic and damage behavior of a cohesive geomaterial

    Ariane Abou-Chakra Guéry;Fabrice Cormery;Jian-Fu Shao;Djimedo Kondo

  • Approche micromécanique du couplage perméabilité–endommagement

    Luc Dormieux;Djimedo Kondo

  • Micromechanical modelling of anisotropic damage in brittle rocks and application

    Qizhi Zhu;Djimedo Kondo;Jianfu Shao;Vincent Pensee

  • Effective thermal conductivity of partially saturated porous rocks

    C. Gruescu;A. Giraud;F. Homand;D. Kondo

  • A micromechanics-based thermodynamic formulation of isotropic damage with unilateral and friction effects

    Qi-Zhi Zhu;Qi-Zhi Zhu;J.-F. Shao;D. Kondo

  • Effective thermal conductivity of transversely isotropic media with arbitrary oriented ellipsoïdal inhomogeneities

    A. Giraud;C. Gruescu;D.P. Do;F. Homand

  • MICROMECHANICAL APPROACH TO NONLINEAR POROELASTICITY: APPLICATION TO CRACKED ROCKS

    Vincent Deude;Luc Dormieux;Djimedo Kondo;S. Maghous

  • A closed-form three scale model for ductile rocks with a plastically compressible porous matrix

    Wanqing Shen;Djimedo Kondo;Luc Dormieux;Jian-Fu Shao

  • Hashin–Shtrikman bounds on the bulk modulus of a nanocomposite with spherical inclusions and interface effects

    Sébastien Brisard;Luc Dormieux;Djimedo Kondo

  • An improvement of Gurson-type models of porous materials by using Eshelby-like trial velocity fields

    Vincent Monchiet;Eric Charkaluk;Djimedo Kondo

  • Effective poroelastic properties of transversely isotropic rock-like composites with arbitrarily oriented ellipsoidal inclusions

    Albert Giraud;Quoc Vu Huynh;Dashnor Hoxha;Djimedo Kondo

  • An approximate yield criterion for porous single crystals

    Joseph Paux;Léo Morin;Renald Brenner;Djimédo Kondo

Frequent Co-Authors

Jian-Fu Shao
Jian-Fu Shao University of Lille
Qi-Zhi Zhu
Qi-Zhi Zhu Hohai University
Jean-Baptiste Leblond
Jean-Baptiste Leblond Université Paris Cité
Christian Soize
Christian Soize Université Gustave Eiffel
Michel Bornert
Michel Bornert École des Ponts ParisTech
Oana Cazacu
Oana Cazacu University of Florida
Samuel Forest
Samuel Forest Mines ParisTech
Thomas Böhlke
Thomas Böhlke Karlsruhe Institute of Technology
Dirk Mohr
Dirk Mohr ETH Zurich

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