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Larissa Gorbatikh

Larissa Gorbatikh

D-Index & Metrics

Materials Science

D-Index
46
Citations
9017
World Ranking
11380
National Ranking
133

Overview

Larissa Gorbatikh is affiliated with KU Leuven in Belgium. Their research primarily covers areas within engineering and materials science, with a focus on mechanics of materials and materials chemistry. They have also contributed to fields such as mechanical engineering, polymers and plastics, and computer vision and pattern recognition.

Their work addresses topics including mechanical behavior of composites, fiber-reinforced polymer composites, composite material mechanics, graphene research and applications, optical measurement and interference techniques, natural fiber reinforced composites, and thermal properties of materials.

Frequent co-authors of Larissa Gorbatikh include Stepan Vladimirovitch Lomov, Yentl Swolfs, Mahoor Mehdikhani, Christian Breite, and Francisco Mesquita.

The scientist has published extensively in several venues, including:

  • Composites Science and Technology
  • Composites Part A Applied Science and Manufacturing
  • Composites Part B Engineering
  • Composite Structures
  • Data in Brief

Recent publications by Larissa Gorbatikh include the following:

  • "Digital volume correlation for meso/micro in-situ damage analysis in carbon fiber reinforced composites," 2021, Composites Science and Technology
  • "Combining digital image correlation with X-ray computed tomography for characterization of fiber orientation in unidirectional composites," 2020, Composites Part A Applied Science and Manufacturing
  • "Detailed experimental validation and benchmarking of six models for longitudinal tensile failure of unidirectional composites," 2021, Composite Structures
  • "Digital image correlation assisted characterization of Mode I fatigue delamination in composites," 2020, Composite Structures
  • "Commercial self-reinforced composites: A comparative study," 2021, Composites Part B Engineering

Best Publications

  • Fibre hybridisation in polymer composites: a review

    Yentl Swolfs;Larissa Gorbatikh;Ignaas Verpoest

  • Voids in fiber-reinforced polymer composites: A review on their formation, characteristics, and effects on mechanical performance:

    Mahoor Mehdikhani;Larissa Gorbatikh;Ignaas Verpoest;Stepan V Lomov

  • Influence of carbon nanotube reinforcement on the processing and the mechanical behaviour of carbon fiber/epoxy composites

    A. Godara;L. Mezzo;F. Luizi;A. Warrier

  • Interfacial shear strength of a glass fiber/epoxy bonding in composites modified with carbon nanotubes

    A. Godara;L. Gorbatikh;G. Kalinka;A. Warrier

  • Assessment of the tensile properties of coir, bamboo and jute fibre

    Nele Defoirdt;Nele Defoirdt;Subhankar Biswas;Subhankar Biswas;Linde De Vriese;Le Quan Ngoc Tran;Le Quan Ngoc Tran

  • The effect of adding carbon nanotubes to glass/epoxy composites in the fibre sizing and/or the matrix

    Ashish Warrier;Ajay Godara;Olivier Rochez;Luca Mezzo

  • Recent advances in fibre-hybrid composites: materials selection, opportunities and applications

    Yentl Swolfs;Ignaas Verpoest;Larissa Gorbatikh

  • Full-field strain measurements at the micro-scale in fiber-reinforced composites using digital image correlation

    Mahoor Mehdikhani;Mohammadali Aravand;Baris Sabuncuoglu;Michaël G Callens

  • Hybrid effects in thin ply carbon/glass unidirectional laminates: Accurate experimental determination and prediction

    Michael R. Wisnom;Gergely Czél;Yentl Swolfs;Meisam Jalalvand

  • STATISTICAL ANALYSIS OF REAL AND SIMULATED FIBRE ARRANGEMENTS IN UNIDIRECTIONAL COMPOSITES

    Valentin Romanov;Stepan Vladimirovitch Lomov;Yentl Swolfs;Svetlana Orlova

  • Synchrotron radiation computed tomography for experimental validation of a tensile strength model for unidirectional fibre-reinforced composites

    Y. Swolfs;H. Morton;A.E. Scott;L. Gorbatikh

  • Impact and residual after impact properties of carbon fiber/epoxy composites modified with carbon nanotubes

    Marcel Siegfried;Carmen Tola;Michael Claes;Stepan Vladimirovitch Lomov

  • Stress concentrations in an impregnated fibre bundle with random fibre packing

    Yentl Swolfs;Larissa Gorbatikh;Valentin Romanov;Svetlana Orlova

  • Matrix cracks around fibre breaks and their effect on stress redistribution and failure development in unidirectional composites

    Yentl Swolfs;Robert M. McMeeking;Robert M. McMeeking;Ignaas Verpoest;Larissa Gorbatikh

  • The effect of fibre dispersion on initial failure strain and cluster development in unidirectional carbon/glass hybrid composites

    Yentl Swolfs;Robert M. McMeeking;Robert M. McMeeking;Ignaas Verpoest;Larissa Gorbatikh

  • The effect of carbon nanotubes on the damage development in carbon fiber/epoxy composites

    Niels De Greef;Larissa Gorbatikh;Ajay Godara;Luca Mezzo

  • Issues in strength models for unidirectional fibre-reinforced composites related to Weibull distributions, fibre packings and boundary effects

    Yentl Swolfs;Ignaas Verpoest;Larissa Gorbatikh

  • Ductile steel fibre composites with brittle and ductile matrices

    Michaël Callens;Larissa Gorbatikh;Ignace Verpoest

  • A review of input data and modelling assumptions in longitudinal strength models for unidirectional fibre-reinforced composites

    Yentl Swolfs;Ignaas Verpoest;Larissa Gorbatikh

  • Modelling evidence of stress concentration mitigation at the micro-scale in polymer composites by the addition of carbon nanotubes

    Valentin Romanov;Stepan Vladimirovitch Lomov;Ignace Verpoest;Larissa Gorbatikh

  • Tensile behaviour of intralayer hybrid composites of carbon fibre and self-reinforced polypropylene

    Yentl Swolfs;Liesbet Crauwels;Eline Van Breda;Larissa Gorbatikh

Frequent Co-Authors

I. M. Ward
I. M. Ward University of Leeds
Robert M. McMeeking
Robert M. McMeeking University of California, Santa Barbara
Pedro P. Camanho
Pedro P. Camanho University of Porto
Ian Sinclair
Ian Sinclair University of Southampton
S.M. Spearing
S.M. Spearing University of Southampton
Michael R Wisnom
Michael R Wisnom University of Bristol

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