The institute
FEMTO's news

Toward a new generation of recyclable composites

The PEPR RECYCOMP project, in collaboration with the FEMTO-ST Institute, is developing recyclable high-performance composites for a circular economy.

Composites, which combine a fibrous reinforcement (carbon, glass, flax, etc.) with a polymer matrix, offer both lightness and mechanical performance.  These materials are thus increasingly used in many industrial sectors such as aerospace, automotive, energy, and sports. However, recycling them by separating the fiber and matrix components—remains a complex challenge today, exacerbated by the ever-increasing volume of end-of-life materials.

As part of the PEPR (Priority Research Programs and Equipment) “Recycling, Recyclability, and Reuse of Materials,” the RECYCOMP project (ANR-22-PERE-0005) aims to address this major industrial and environmental challenge by developing a new generation of recyclable organic matrix composite materials without compromising mechanical performance.Bringing together nine research laboratories from across the country, this four-year project—which began in February 2023—explores two innovative approaches: supercritical solvolysis and twin-screw extrusion, using end-of-life components from wind turbine blades, ships, and automotive sandwich structures.  In addition, the project also proposes incorporating the recycling process into the material’s design from the outset. For example, flax fibers are first surface-treated with iron oxides to impart magnetic properties to them, enabling the selective recycling of their components.

The contribution of the FEMTO-ST Institute, through Adam LEVEZIEL’s thesis, is to characterize the interfacial properties of the materials developed in the RECYCOMP project at the micro-scale. Indeed, the fiber-matrix interface plays a crucial role in the mechanical performance of composites. To this end, a comprehensive study was conducted on the detachment of microdroplets from individual fibers. This test involves measuring, on a single fiber approximately 10 to 20 µm in diameter (thinner than a human hair), the force required to detach a microdroplet of polymer resin in order to evaluate the fiber-matrix bond in a composite.

In particular, an in situ device was developed with support from the MIMENTO, MIFHySTO, and AMETISTE platforms to enable this test to be conducted in an X-ray microtomograph and thus observe, for the first time in real time, the interfacial damage mechanisms responsible for the composite’s failure. The results obtained therefore provide a better understanding of the behavior of the fiber/matrix interface in the materials developed in the RECYCOMP project.

Ultimately, this research paves the way for the development of materials that are more durable, high-performance, and easier to recycle, addressing the environmental and industrial challenges of the future.

 
 
 
Read n° 168 of JEC COMPOSITES Magazine : https://digital-magazine.jeccomposites.com/
 
  • Fei Gao wins the "Sustainable Future Visionary Award"

    Full professor at UTBM and researcher at FEMTO-ST institute, Fei Gao is today one of the world's leading specialists in fuel cells and digital twins.

    Read more
  • Gold micron award at MICRONORA trade fair 2022

    FEMTO-ST is awarded a gold micron for its three-dimensional nanorobotic structure, which is precisely and continuously actuated according to the power of light for the gripping of nano objects.

    Read more
  • FEMTO-ST at MICRONORA trade fair 2022

    From September 27th to 30th, more than 600 direct exhibitors and 15000 professional visitors are expected in Besançon on the international microtechnology exhibition. FEMTO-ST and FEMTO Engineering will be present.

    Read more
  • The fastest pick-and-place robot in the world

    A research team has developed a miniature robot capable of manipulating micrometric objects at unprecedented speeds. This work has been published in the prestigious American journal "Science Robotics"

    Read more
  • Aude Bolopion receives the 2022 “Big-in-Small award”

    This yearly award, from the microrobotics international community in the MARSS conference in Toronto, promotes “the best microrobotician” of the year at the international level.

    Read more
  • Engins spatiaux : un lubrifiant solide adapté à l'air comme au vide

    les engins spatiaux sont soumis à des contraintes extrêmes. Des chercheurs ont développé un prototype de lubrifiant solide qui ne souffre pas de l’oxydation à l’air libre et qui fonctionne mieux que les solutions actuelles dans le vide. Ces travaux ont abouti à un dépôt de brevet.

    Read more
  • FEMTO-ST : 2 full professors appointed to the IUF in its class 2022

    Ausrine MARGUERON-BARTASYTE and Daniel HISSEL are among the 164  national laureates appointed to the Institut Universitaire de France (IUF) by the Minister of Higher Education and Research

    Read more
  • Tribute to our colleague Philippe LUTZ

    Our scientific community of Burgundy-Franche-Comté has just suddenly lost Philippe LUTZ, full professor at the University of Franche-Comté and a leading figure in microrobotics and micromechatronics research at the FEMTO-ST laboratory.

    Read more
  • How to create a chemical bond with light?

    The formation of a chemical bond between two molecules often requires an activation process. Light is a stimulus that is particularly interesting

    Read more
  • Best student paper Award for Clément Carlé at the international conférence IFCS-EFTF2022

    This award was obtained in the "Microwave Frequency Standards" category of this major international conference in the field of time-frequency metrology, which took place in Paris from 24 to 28 April 2022.

    Read more