Jean-François CARON is a Professor and Research Director at the Navier Laboratory affiliated with École des Ponts ParisTech. His primary role involves advancing research in composite materials, damage modeling, and digital construction technologies. He leads the Architected Materials and Structures team at the Navier Laboratory and oversees the development of additive manufacturing and robotic construction platforms. His work integrates mechanical engineering, civil engineering, and advanced materials science to address challenges in sustainable construction and composite applications. Research Interests: His research focuses on composite materials for construction (e.g., wood/concrete hybrids, deployable structures), additive manufacturing (3D printing of concrete), and digital construction methodologies. He also explores material characterization, residual stress control, and low-carbon materials for eco-friendly infrastructure. Articles Trends: His recent publications emphasize experimental and computational studies of 3D-printed concrete properties, material lifecycle assessments, and structural optimization. Key themes include minimizing carbon footprints through multiobjective optimization, residual stress mitigation in additive manufacturing, and quality control across 3D printing scales. Scientific Contributions: He has pioneered studies on composite applications in civil engineering and leads initiatives for advanced construction technologies. His work bridges material science with engineering practices, contributing to both theoretical and applied advancements in sustainable infrastructure. Grants & Advising: While specific grants are not detailed, his roles as a Lab Director and Professor imply involvement in major research programs. He likely advises students on topics related to composite materials and digital construction, though no explicit student list is provided. Labs & Teams: He is responsible for the Architected Materials and Structures team at Navier Laboratory, driving innovation in additive manufacturing and robotic construction techniques. His work supports the deployment of experimental platforms for next-generation construction methods.








