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D-Index & Metrics

Engineering and Technology

D-Index
38
Citations
4577
World Ranking
8183
National Ranking
185

Overview

Fahmi Zaïri is affiliated with the University of Lille in France and focuses research primarily within the fields of Engineering and Materials Science, with interdisciplinary contributions extending into Medicine. Their work spans multiple subfields, predominantly Biomedical Engineering, Polymers and Plastics, and Mechanical Engineering, complemented by research in Mechanics of Materials and Pathology and Forensic Medicine.

Their research extensively covers topics related to Elasticity and Material Modeling, Spine and Intervertebral Disc Pathology, and Polymer Crystallization and Properties. Additional notable themes include Polymer Nanocomposites and Properties, Musculoskeletal Pain and Rehabilitation, Mechanical Behavior of Composites, and Medical Imaging and Analysis.

Fahmi Zaïri's publication record features contributions to various scientific journals, with frequent articles appearing in:

  • Mechanics of Materials
  • International Journal of Plasticity
  • Polymers
  • Engineering Failure Analysis
  • Acta Biomaterialia

Some recent publications showcasing a range of topics and methods include:

  • "Failure modes, mechanisms and causes of shafts in mechanical equipment," 2022, Engineering Failure Analysis
  • "A micromechanics-based model for deformation-induced damage and failure in elastomeric media," 2021, International Journal of Plasticity
  • "Microstructure evolution of a multi-track AlCoCrFeNi high entropy alloy coating fabricated by laser cladding," 2021, Materials Characterization
  • "A micromechanics-based model for visco-super-elastic hydrogel-based nanocomposites," 2021, International Journal of Plasticity
  • "Evaluation of intrinsic dissipation based on self-heating effect in high-cycle metal fatigue," 2020, International Journal of Fatigue

Collaboration is a significant feature of Zaïri's research approach, with frequent co-authors including Fahed Zaïri, Ning Ding, Amar Mesbah, Linan Tian, and Qiang Guo. These collaborations have contributed to the development of studies across various engineering and materials science domains.

Best Publications

  • Modelling large deformation behaviour under loading-unloading of semicrystalline polymers: Application to a high density polyethylene

    Georges Ayoub;Fahmi Zaïri;Moussa Nait-Abdelaziz;J.M. Gloaguen

  • Micromechanics-based modelling of stiffness and yield stress for silica/polymer nanocomposites

    S. Boutaleb;Fahmi Zaïri;A. Mesbah;Moussa Nait-Abdelaziz

  • Effects of crystal content on the mechanical behaviour of polyethylene under finite strains: Experiments and constitutive modelling

    G. Ayoub;Fahmi Zairi;C. Fréderix;Jean-Michel Gloaguen

  • Modelling of the elasto-viscoplastic damage behaviour of glassy polymers

    F. Zaïri;M. Naït-Abdelaziz;J.M. Gloaguen;J.M. Lefebvre

  • A physically-based constitutive model for anisotropic damage in rubber-toughened glassy polymers during finite deformation

    Fahmi Zairi;M. Naït-Abdelaziz;Jean-Michel Gloaguen;Jean-Marc Lefebvre

  • A continuum damage model for the high-cycle fatigue life prediction of styrene-butadiene rubber under multiaxial loading

    G. Ayoub;M. Naït-Abdelaziz;Fahmi Zairi;Jean-Michel Gloaguen

  • A visco-hyperelastic damage model for cyclic stress-softening, hysteresis and permanent set in rubber using the network alteration theory

    Georges Ayoub;Fahmi Zaïri;Moussa Nait-Abdelaziz;Jean-Michel Gloaguen

  • Modeling the low-cycle fatigue behavior of visco-hyperelastic elastomeric materials using a new network alteration theory: Application to styrene-butadiene rubber

    G. Ayoub;Fahmi Zairi;M. Naït-Abdelaziz;Jean-Michel Gloaguen

  • A finite strain thermo-viscoelastic constitutive model to describe the self-heating in elastomeric materials during low-cycle fatigue

    C. Ovalle Rodas;C. Ovalle Rodas;F. Zaïri;M. Naït-Abdelaziz

  • Fatigue life prediction of rubber-like materials under multiaxial loading using a continuum damage mechanics approach: Effects of two-blocks loading and R ratio

    G. Ayoub;M. Naït-Abdelaziz;Fahmi Zairi;Jean-Michel Gloaguen

  • Constitutive equations for the viscoplastic-damage behaviour of a rubber-modified polymer

    Fahmi Zaïri;Moussa Naït-Abdelaziz;Krzysztof Woznica;Jean-Michel Gloaguen

  • Failure modes, mechanisms and causes of shafts in mechanical equipment

    Unknown

  • Identification of viscoplastic parameters of phenomenological constitutive equations for polymers by deterministic and evolutionary approach

    Mariusz Pyrz;Fahmi Zairi

  • Micromechanical modelling and simulation of chopped random fiber reinforced polymer composites with progressive debonding damage

    Fahmi Zaïri;Moussa Nait-Abdelaziz;J.M. Gloaguen;A. Bouaziz

  • A thermo-viscoelastic-damage constitutive model for cyclically loaded rubbers. Part I: Model formulation and numerical examples

    Qiang Guo;Qiang Guo;Fahmi Zaïri;Xinglin Guo

  • Study of the effect of size and clay structural parameters on the yield and post-yield response of polymer/clay nanocomposites via a multiscale micromechanical modelling

    Fahmi Zaïri;Jean-Michel Gloaguen;Moussa Nait-Abdelaziz;A. Mesbah

  • A computational study of die geometry and processing conditions effects on equal channel angular extrusion of a polymer

    B. Aour;F. Zaïri;M. Naït-Abdelaziz;J.M. Gloaguen

  • On the overall elastic moduli of polymer–clay nanocomposite materials using a self-consistent approach. Part I: Theory

    Kokou Anoukou;Fahmi Zaïri;Moussa Nait-Abdelaziz;Ali Zaoui

  • Numerical modelling of elastic–viscoplastic equal channel angular extrusion process of a polymer

    Fahmi Zaïri;B. Aour;Jean-Michel Gloaguen;Moussa Nait-Abdelaziz

  • Multiaxial fatigue life predictors for rubbers: Application of recent developments to a carbon-filled SBR

    Georges Ayoub;Moussa Nait-Abdelaziz;Fahmi Zaïri

  • Large-strain viscoelastic–viscoplastic constitutive modeling of semi-crystalline polymers and model identification by deterministic/evolutionary approach

    Hemin Abdul-Hameed;Tanguy Messager;Fahmi Zaïri;Moussa Naït-Abdelaziz

  • An intrinsic dissipation model for high-cycle fatigue life prediction

    Qiang Guo;Fahmi Zaïri;Xinglin Guo

  • A thermo-viscoelastic-damage constitutive model for cyclically loaded rubbers. Part II: Experimental studies and parameter identification

    Qiang Guo;Qiang Guo;Fahmi Zaïri;Xinglin Guo

  • A chemo-mechanical model for osmo-inelastic effects in the annulus fibrosus

    Amil Derrouiche;Fahmi Zaïri;Fahed Zaïri

  • On the overall elastic moduli of polymer–clay nanocomposite materials using a self-consistent approach. Part II: Experimental verification

    Kokou Anoukou;Fahmi Zaïri;Moussa Nait-Abdelaziz;Ali Zaoui

  • Computational homogenization of elastic???plastic composites

    Y.K. Khdir;Toufik Kanit;Fahmi Zaïri;Moussa Nait-Abdelaziz

  • Time to failure prediction in rubber components subjected to thermal ageing: A combined approach based upon the intrinsic defect concept and the fracture mechanics

    M. Ben Hassine;Moussa Nait-Abdelaziz;Fahmi Zaïri;X. Colin

  • Interlamellar-induced time-dependent response of intervertebral disc annulus: A microstructure-based chemo-viscoelastic model.

    Karim Kandil;Fahmi Zaïri;Amil Derrouiche;Tanguy Messager

  • A micromechanics-based model for visco-super-elastic hydrogel-based nanocomposites

    Mahrez Saadedine;Mahrez Saadedine;Fahmi Zaïri;Nourdine Ouali;Abderrahman Tamoud;Abderrahman Tamoud

  • Computational homogenization of plastic porous media with two populations of voids

    Younis-Khalid Khdir;Toufik Kanit;Fahmi Zaïri;Moussa Naït-Abdelaziz

  • Evaluation of intrinsic dissipation based on self-heating effect in high-cycle metal fatigue

    Qiang Guo;Fahmi Zaïri;Wenping Yang

Frequent Co-Authors

Jean-Marc Lefebvre
Jean-Marc Lefebvre University of Lille
Roland Séguéla
Roland Séguéla Institut National des Sciences Appliquées de Lyon
Chi-Man Lawrence Wu
Chi-Man Lawrence Wu City University of Hong Kong
Andrzej Galeski
Andrzej Galeski Polish Academy of Sciences
Xian Zhao
Xian Zhao Shandong University

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