Wolfgang Pantleon is a Professor in the Department of Civil and Mechanical Engineering at the Technical University of Denmark (DTU), specializing in Materials and Surface Engineering. His research is centered on microstructure evolution, plastic deformation, and advanced characterization techniques in metallic materials, particularly tungsten and nickel-based superalloys. He is actively involved in projects related to fusion materials, additive manufacturing, and high-temperature stability. His research interests include plastic deformation , dislocation structures , annealing , grain growth , recrystallization , and composite materials , with a strong focus on tungsten fiber-reinforced composites for plasma-facing applications. He employs advanced techniques such as electron backscatter diffraction (EBSD) and high-resolution reciprocal space mapping for in-depth microstructural analysis. His recent publications (2024–2025) reflect a strong trend in materials for nuclear fusion , additive manufacturing of superalloys , and in-situ characterization of phase transformations . These works span journals like Scripta Materialia , Materials Characterization , and Fusion Engineering and Design , emphasizing mechanical performance, microstructural stability, and restoration mechanisms under extreme conditions. He has received notable scientific recognition, including: SOFT2024 PhD Poster Prize Winner (2024) Best Poster Award (2019) Wolfgang Pantleon actively supervises PhD students and leads significant research projects, such as Thermal Stability of Tungsten Fiber-reinforced Tungsten Composites and Stability of Tungsten Plates during High Temperatures . He has secured funding from EU and national sources, demonstrating strong grant acquisition capabilities. His collaborative network includes institutions in Germany and international partners in fusion research. He is affiliated with the Materials and Surface Engineering section at DTU, where he contributes to both fundamental and applied research in advanced materials, particularly for energy and industrial applications.











