1. Flow-induced fretting in DEMO divertor targets equipped with swirl tapes, Fusion Engineering and Design (2025)
2. Modeling in tribology: Recent advances, applications, and open questions, Tribology International (2025)
3. The surface-topography challenge: A multi-laboratory benchmark study to advance the characterization of topography, Tribology Letters (2025)
4. A predictor-corrector scheme for approximating signed distances using finite element methods, arXiv preprint arXiv:2506.17830 (2025)
5. A time-discontinuous elasto-plasticity formalism to simulate instantaneous plastic flow bursts, International Journal of Solids and Structures (2025)
6. Adaptive Cross Approximation with a Geometrical Pivot Choice: ACA-GP Method, arXiv preprint arXiv:2502.03886 (2025)
Research Experience
Mainly: Mechanics of rough contact, Fast-BEM for conductivity problems, Computational contact mechanics; Also: Contact static seals, Wear of drilling tools, Electric contact, Wear, Behavior of elastomers, Mechanics of metallic materials, Iceberg calving and capsize, Fluid-structure interaction, Non-linear dynamics.
Education
Insufficient information
Background
CNRS Research Scientist in Mechanics and Physics of Solids. Specializes in the computational and physical aspects of contact and friction at both macroscopic and microscopic scales. His theoretical research relies on boundary element and finite element methods. His academic interests are broad, encompassing a diverse array of physical phenomena, from detailed atomistic descriptions to geological scale phenomena like earthquakes and glacier sliding and flow. At Mines Paris, he teaches continuum mechanics, the finite element method, contact mechanics, computational contact mechanics, and the multiscale mechanics of materials.
Miscellany
Personal Interests: Featured in a short film about his research made by CNRS (2018)