World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
38
Citations
6574
World Ranking
7986
National Ranking
177

Overview

Leo Vincent is affiliated with École Centrale de Lyon in France. Their research primarily focuses on engineering and materials science, with a significant concentration in mechanical engineering and the mechanics of materials.

The scientist has contributed to several topics in their field, including:

  • Fatigue and fracture mechanics
  • High temperature alloys and creep
  • Microstructure and mechanical properties of steels
  • Material properties and failure mechanisms
  • Fire effects on concrete materials
  • Advanced materials and composites
  • Metal alloys wear and properties

Leo Vincent's recent publications cover multiple aspects of steel behavior and mechanical integrity under various conditions. Selected papers include:

  • "High cycle thermal fatigue of two austenitic stainless steels" (2024), published in International Journal of Fatigue
  • "Brittle fracture mechanisms and toughness of model low alloy steels chemically representative of macrosegregated forgings" (2025), published in Journal of Nuclear Materials
  • "Effects of quenching and tempering conditions of a low-alloy pressure vessel steel (A508 Gr.3) on its brittle fracture initiation and toughness" (2025), published in Procedia Structural Integrity
  • "Effect of microstructure on creep mechanical behavior and damage mechanisms of AISI 316L (N) austenitic stainless steels" (2025), published in Procedia Structural Integrity
  • "Modelling the effect of carbide population and bainitic grain size on the fracture toughness of three forged low alloy steels" (2025), published in Procedia Structural Integrity

Frequent co-authors collaborating with Leo Vincent include:

  • Bernard Marini
  • Jean-Philippe Mathieu
  • Cainã Bemfica
  • Pierre Joly
  • Elodie Rouesne

Publication venues where Leo Vincent has contributed multiple works include:

  • Procedia Structural Integrity
  • International Journal of Fatigue
  • Journal of Nuclear Materials

Overall, Leo Vincent's work addresses fundamental engineering challenges relating to the mechanical performance and failure mechanisms of steels and alloys under thermal and mechanical stress. Their research integrates aspects of material microstructure, high cycle fatigue, fracture mechanics, and creep behavior for applications relevant to structural integrity and materials engineering.

Best Publications

  • Quantification of fretting damage

    Siegfried Fouvry;Philippe Kapsa;Leo Vincent

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

    S. Fouvry;Ph. Kapsa;L. Vincent

  • Mixed fretting regime

    Z.R. Zhou;L. Vincent

  • Tribologically transformed structure in fretting

    E Sauger;S Fouvry;L Ponsonnet;Ph Kapsa

  • Progress in fretting maps

    Z.R. Zhou;K. Nakazawa;K. Nakazawa;M.H. Zhu;N. Maruyama

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

    Siegfried Fouvry;Philippe Kapsa;Hassan Zahouani;Leo Vincent

  • Fretting fatigue and fretting wear

    Y. Berthier;L. Vincent;M. Godet

  • Velocity accommodation in fretting

    Y. Berthier;L. Vincent;M. Godet

  • Fretting: Load Carrying Capacity of Wear Debris

    Ch. Colombié;Y. Berthier;A. Floquet;L. Vincent

  • Material effects in fretting wear : application to iron, titanium, and aluminum alloys

    P. Blanchard;C. Colombie;V. Pellerin;S. Fayeulle

  • Mechanics and materials in fretting

    L. Vincent;Y. Berthier;M.C. Dubourg;M. Godet

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

    S Hannel;S Fouvry;Ph Kapsa;L Vincent

  • Cracking behaviour of various aluminium alloys during fretting wear

    Z.R. Zhou;S. Fayeulle;L. Vincent

  • An elastic–plastic shakedown analysis of fretting wear

    S. Fouvry;Ph. Kapsa;L. Vincent

  • Study of the interfacial degradation of a glass-epoxy composite during hygrothermal ageing using water diffusion measurements and dynamic mechanical thermal analysis

    Unknown

  • Lubrication in fretting—a review

    Z.R Zhou;L Vincent

  • Study of the tribologically transformed structure created during fretting tests

    E Sauger;L Ponsonnet;J.M Martin;L Vincent

  • Effect of surface topography on formation of squeal under reciprocating sliding

    Chen Guangxiong;Zhou Zhongrong;Philippe Kapsa;Leo Vincent

  • Cracking induced by fretting of aluminium alloys

    Z. R. Zhou;L. Vincent

  • An investigation on fretting wear life of bonded MoS2 solid lubricant coatings in complex conditions

    J Xu;M.H Zhu;Z.R Zhou;Ph Kapsa

  • Fretting Behavior of Titanium Alloys

    S. Fayeulle;P. Blanchard;L. Vincent

  • Testing Methods in Fretting Fatigue: A Critical Appraisal

    L Vincent;Y Berthier;M Godet

Frequent Co-Authors

Siegfried Fouvry
Siegfried Fouvry Mines ParisTech
Yves Berthier
Yves Berthier Institut National des Sciences Appliquées de Lyon
Minhao Zhu
Minhao Zhu Southwest Jiaotong University
Zhongrong Zhou
Zhongrong Zhou Southwest Jiaotong University
Albano Cavaleiro
Albano Cavaleiro University of Coimbra
Hassan Zahouani
Hassan Zahouani École Centrale de Lyon

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Best Scientists Citing Leo Vincent