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D-Index & Metrics

Engineering and Technology

D-Index
57
Citations
11014
World Ranking
2685
National Ranking
22

Research.com Recognitions

  • Member of the European Academy of Sciences and Arts
  • Member of the European Academy of Sciences and Arts
  • Member of the European Academy of Sciences and Arts

Overview

Gilles Lubineau is affiliated with the King Abdullah University of Science and Technology in Saudi Arabia. Their primary field of study is Engineering, with a significant focus on Mechanics of Materials, Mechanical Engineering, Biomedical Engineering, Electrical and Electronic Engineering, and Materials Chemistry.

Their research covers a range of topics, including:

  • Mechanical Behavior of Composites
  • Advanced Sensor and Energy Harvesting Materials
  • Adhesion, Friction, and Surface Interactions
  • Additive Manufacturing and 3D Printing Technologies
  • Fiber-reinforced polymer composites
  • Advanced Materials and Mechanics
  • Cellular and Composite Structures

Lubineau has published numerous papers, with several recent contributions as follows:

  • Metallization of polymers and composites: State-of-the-art approaches, 2022, Materials & Design
  • Post Processing Strategies for the Enhancement of Mechanical Properties of ENMs (Electrospun Nanofibrous Membranes): A Review, 2021, Membranes
  • Atmospheric-moisture-induced polyacrylate hydrogels for hybrid passive cooling, 2023, Nature Communications
  • Surface preparation strategies in secondary bonded thermoset-based composite materials: A review, 2021, Composites Part A Applied Science and Manufacturing
  • Post-impact flexural behavior of carbon-aramid/epoxy hybrid composites, 2020, Composite Structures

Frequent publication venues include:

  • Composites Part A Applied Science and Manufacturing
  • SSRN Electronic Journal
  • Composite Structures
  • International Journal of Solids and Structures
  • Composites Science and Technology

Regular collaborators in their research work are:

  • Arief Yudhanto
  • A. Wagih
  • Xiaole Li
  • Ran Tao
  • Ruslan Melentiev

Gilles Lubineau has been recognized by election as a Member of the European Academy of Sciences and Arts.

Best Publications

  • Flexible, highly graphitized carbon aerogels based on bacterial cellulose/lignin: Catalyst-free synthesis and its application in energy storage devices

    Xuezhu Xu;Jian Zhou;Doddahalli H. Nagaraju;Long Jiang

  • Coaxial Thermoplastic Elastomer-Wrapped Carbon Nanotube Fibers for Deformable and Wearable Strain Sensors

    Jian Zhou;Xuezhu Xu;Yangyang Xin;Gilles Lubineau

  • A review of strategies for improving the degradation properties of laminated continuous-fiber/epoxy composites with carbon-based nanoreinforcements

    G. Lubineau;A. Rahaman

  • The temperature-dependent microstructure of PEDOT/PSS films: insights from morphological, mechanical and electrical analyses

    Jian Zhou;Dalaver H. Anjum;Long Chen;Xuezhu Xu

  • A morphing strategy to couple non-local to local continuum mechanics

    Gilles Lubineau;Yan Azdoud;Fei Han;Christian Rey

  • On a damage mesomodel for laminates: micro–meso relationships, possibilities and limits

    P. Ladevèze;G. Lubineau

  • Ultrasensitive, Stretchable Strain Sensors Based on Fragmented Carbon Nanotube Papers.

    Jian Zhou;Hu Yu;Hu Yu;Xuezhu Xu;Fei Han

  • Metallization of polymers and composites: State-of-the-art approaches

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  • An enhanced mesomodel for laminates based on micromechanics

    P Ladeveze;G Lubineau

  • Construction of a micromechanics-based intralaminar mesomodel, and illustrations in ABAQUS/Standard

    Gilles Lubineau;Pierre Ladevèze

  • A morphing approach to couple state-based peridynamics with classical continuum mechanics

    Fei Han;Gilles Lubineau;Yan Azdoud;Abe Askari

  • Towards a bridge between the micro- and mesomechanics of delamination for laminated composites

    Pierre Ladevèze;Gilles Lubineau;David Marsal

  • Highly transparent, low-haze, hybrid cellulose nanopaper as electrodes for flexible electronics

    Xuezhu Xu;Xuezhu Xu;Jian Zhou;Long Jiang;Gilles Lubineau

  • Improving Electrical Conductivity in Polycarbonate Nanocomposites Using Highly Conductive PEDOT/PSS Coated MWCNTs

    Jian Zhou;Gilles Lubineau

  • Semi-metallic, strong and stretchable wet-spun conjugated polymer microfibers

    Jian Zhou;Er Qiang Li;Ruipeng Li;Xuezhu Xu

  • A highly sensitive, low-cost, wearable pressure sensor based on conductive hydrogel spheres.

    Yanlong Tai;Matthieu Mulle;Isaac Aguilar Ventura;Gilles Lubineau

  • Coupling of nonlocal and local continuum models by the Arlequin approach

    Fei Han;Gilles Lubineau

  • High-ampacity conductive polymer microfibers as fast response wearable heaters and electromechanical actuators

    Jian Zhou;Matthieu Mulle;Yaobin Zhang;Xuezhu Xu

  • Identification of the parameters of an elastic material model using the constitutive equation gap method

    Eric Florentin;Gilles Lubineau

  • Adaptive coupling between damage mechanics and peridynamics: A route for objective simulation of material degradation up to complete failure

    Fei Han;Gilles Lubineau;Yan Azdoud

  • Analysis of interlaminar fracture toughness and damage mechanisms in composite laminates reinforced with sprayed multi-walled carbon nanotubes

    Khaled Almuhammadi;Marco Alfano;Marco Alfano;Yang Yang;Gilles Lubineau

  • On a damage mesomodel for laminates: micromechanics basis and improvement

    Pierre Ladevèze;Gilles Lubineau

Frequent Co-Authors

Pierre Ladevèze
Pierre Ladevèze École Normale Supérieure Paris-Saclay
Sigurdur T. Thoroddsen
Sigurdur T. Thoroddsen King Abdullah University of Science and Technology
Mohamed A. Eltaher
Mohamed A. Eltaher King Abdulaziz University
Glaucio H. Paulino
Glaucio H. Paulino Princeton University
Mgd Marc Geers
Mgd Marc Geers Eindhoven University of Technology
Jacques Verdu
Jacques Verdu Arts et Metiers Institute of Technology
Constantinos Soutis
Constantinos Soutis University of Manchester
Dalaver H. Anjum
Dalaver H. Anjum Khalifa University
Wolfgang Heidrich
Wolfgang Heidrich King Abdullah University of Science and Technology
Bing Pan
Bing Pan Beihang University

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