معرفی
Tsilla BENSABATH-PEREZ is a Lecturer at the University of Lille, affiliated with the Materials and Transformations Unit (UMET CNRS UMR 8207) and the National School of Chemistry of Lille. She works in Building C7 office 08 at Avenue Dimitri Mendeleïev, Villeneuve d'Ascq, France. Her academic position places her within the Department of Materials Science and Engineering, specifically as a member of the Polymer Systems Engineering research team.
Her research focuses on modeling the fire resistance of materials, with particular expertise in polymer systems and flame-retardant technologies. She investigates how materials behave under fire conditions, with emphasis on intumescent polypropylene systems, expandable graphite behavior, and radiative barrier coatings. Her work bridges theoretical modeling with practical fire safety applications, contributing significantly to the understanding of fire-retardant mechanisms in polymer materials.
Analysis of her recent publications reveals a strong focus on the intersection of polymer science and fire safety engineering. Her research demonstrates particular expertise in the anisotropic properties of flame retardants, interactions between physical and chemical expansion mechanisms in intumescent systems, and the development of novel protective coatings. These contributions address critical challenges in improving fire safety of polymeric materials used in construction and other applications.
As an academic advisor, she has co-directed PhD research, most recently supervising TANG Mingwei's 2024 thesis on "Fire behavior and numerical simulation of facade elements for buildings" alongside Professor Serge BOURBIGOT. This indicates her active role in mentoring the next generation of fire safety researchers.
Her collaborative work spans multiple institutions and researchers, demonstrating her integration within the broader fire science community. She frequently publishes with colleagues from the Materials and Transformations Unit, contributing to the international body of knowledge in fire-resistant materials.