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Siegfried Fouvry

Siegfried Fouvry

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
51
Citations
9010
World Ranking
1122
National Ranking
24

Overview

Siegfried Fouvry is affiliated with Mines ParisTech in the United States. Their research primarily focuses on engineering, with a strong emphasis on the mechanics of materials and mechanical engineering, complemented by work in control and systems engineering, materials chemistry, and metals and alloys.

Their scholarly contributions reflect expertise in several core research topics, including:

  • Mechanical stress and fatigue analysis
  • Electrical contact performance and analysis
  • Adhesion, friction, and surface interactions
  • Vibration and dynamic analysis
  • Metal and thin film mechanics
  • Mechanical failure analysis and simulation
  • Fatigue and fracture mechanics

Fouvry's publication record includes numerous papers in key venues that address wear, tribology, and material fatigue phenomena. Frequent publication venues for their research are:

  • Wear
  • Tribology International
  • International Journal of Fatigue
  • SSRN Electronic Journal
  • Engineering Failure Analysis

Among recent papers, notable works include:

  • Understanding and formalization of the fretting-wear behavior of a cobalt-based alloy at high temperature, 2020, Wear
  • Modeling adhesive and abrasive wear phenomena in fretting interfaces: A multiphysics approach coupling friction energy, third body and contact oxygenation concepts, 2021, Tribology International
  • Modelling adhesive wear extension in fretting interfaces: An advection-dispersion-reaction contact oxygenation approach, 2020, Tribology International
  • An experimental investigation of adhesive wear extension in fretting interface: Application of the contact oxygenation concept, 2020, Tribology International
  • Modeling contact size effect on fretting wear: a combined contact oxygenation - third body approach, 2021, Wear

Fouvry frequently collaborates with other researchers in their field. The most regular coauthors include:

  • Pierre Arnaud
  • Soha Baydoun
  • Camille Gandiolle
  • S. Montalvo
  • Véronique Aubin

Best Publications

  • Quantification of fretting damage

    Siegfried Fouvry;Philippe Kapsa;Leo Vincent

  • An energy description of wear mechanisms and its applications to oscillating sliding contacts

    S. Fouvry;T. Liskiewicz;Ph. Kapsa;S. Hannel

  • Analysis of sliding behaviour for fretting loadings : determination of transition criteria

    S. Fouvry;Ph. Kapsa;L. Vincent

  • A quantitative approach of Ti–6Al–4V fretting damage: friction, wear and crack nucleation

    S. Fouvry;P. Duó;Ph. Perruchaut

  • Tribologically transformed structure in fretting

    E Sauger;S Fouvry;L Ponsonnet;Ph Kapsa

  • Wear analysis in fretting of hard coatings through a dissipated energy concept

    Siegfried Fouvry;Philippe Kapsa;Hassan Zahouani;Leo Vincent

  • The fretting sliding transition as a criterion for electrical contact performance

    S Hannel;S Fouvry;Ph Kapsa;L Vincent

  • A fretting crack initiation prediction taking into account the surface roughness and the crack nucleation process volume

    Henry Proudhon;Henry Proudhon;Siegfried Fouvry;Jean-Yves Buffiere

  • Effect of shot peening on the fretting wear of Ti–6Al–4V

    V. Fridrici;S. Fouvry;Ph. Kapsa

  • An energy description of hard coating wear mechanisms

    S Fouvry;Ph Kapsa

  • An elastic–plastic shakedown analysis of fretting wear

    S. Fouvry;Ph. Kapsa;L. Vincent

  • Contact size, frequency and cyclic normal force effects on Ti–6Al–4V fretting wear processes: An approach combining friction power and contact oxygenation

    S. Fouvry;P. Arnaud;A. Mignot;P. Neubauer

  • Application of an energy wear approach to quantify fretting contact durability: Introduction of a wear energy capacity concept

    S. Fouvry;C. Paulin;T. Liskiewicz

  • Finite element modelling of fretting wear surface evolution : Application to a Ti-6A1-4V contact

    C. Paulin;S. Fouvry;C. Meunier

  • A Multiaxial Fatigue Analysis of Fretting Contact Taking Into Account the Size Effect

    S Fouvry;P Kapsa;L Vincent

  • Fretting wear of stainless steels under variable temperature conditions: Introduction of a ‘composite’ wear law

    R. Rybiak;R. Rybiak;S. Fouvry;B. Bonnet

  • Impact of contact size and complex gross–partial slip conditions on Ti–6Al–4V/Ti–6Al–4V fretting wear

    S. Fouvry;C. Paulin;S. Deyber

  • Pressure and temperature effects on Fretting Wear damage of a Cu–Ni–In plasma coating versus Ti17 titanium alloy contact

    C. Mary;C. Mary;S. Fouvry;J.M. Martin;B. Bonnet

  • Numerical prediction of fretting contact durability using energy wear approach: Optimisation of finite-element model

    C. Mary;S. Fouvry

  • Fretting wear behavior of a Cu–Ni–In plasma coating

    V Fridrici;S Fouvry;Ph Kapsa

  • Introduction of a new sliding regime criterion to quantify partial, mixed and gross slip fretting regimes: Correlation with wear and cracking processes

    S. Heredia;S. Fouvry

  • Prediction of crack nucleation under partial slip fretting conditions

    S Fouvry;K Elleuch;G Simeon

Frequent Co-Authors

Leo Vincent
Leo Vincent École Centrale de Lyon
Jean-Yves Buffiere
Jean-Yves Buffiere Institut National des Sciences Appliquées de Lyon
Georges Cailletaud
Georges Cailletaud Mines ParisTech
Johann Michler
Johann Michler Swiss Federal Laboratories for Materials Science and Technology
Anthony Gravouil
Anthony Gravouil Institut National des Sciences Appliquées de Lyon
Anne Neville
Anne Neville University of Leeds
Hassan Zahouani
Hassan Zahouani École Centrale de Lyon
David Nowell
David Nowell Imperial College London
D.A. Hills
D.A. Hills University of Oxford

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