Proceedings of the 65th Conference of Metallurgy & Materials, COM 2026
Buch, Englisch, Format (B × H): 155 mm x 235 mm
ISBN: 978-3-032-35451-8
Verlag: Springer
The Proceedings includes research from the symposium held at the Conference of Metallurgy & Materials on recent advances in materials and manufacturing technologies designed for harsh and extreme service environments. The papers presented in this volume reflect the breadth and interdisciplinary nature of research in this rapidly evolving field. They cover a wide range of topics, including high-performance alloys, ceramics, composites, coatings, and multifunctional materials with enhanced environmental resistance; innovative manufacturing technologies such as additive manufacturing, hybrid processing, advanced joining, and digital process control; process optimization; microstructural engineering and advanced materials characterization. The proceedings also include research on the design, modeling, and multiscale simulation of materials subjected to coupled extreme loading conditions, together with studies focused on testing, qualification, structural integrity, degradation mechanisms, and performance evaluation for both established and emerging engineering applications. This work highlights the importance of interdisciplinary collaboration between academia, research organizations, and industry in developing practical engineering solutions that address current and future challenges associated with harsh-service environments.
Zielgruppe
Research
Fachgebiete
Weitere Infos & Material
COM26045: Evaluating X-ray Computed Tomography (XCT) as a Quantitative Tool for Pore and Crack Analysis in Hydrogen-Reduced Iron Ore Pellets.- COM26056: Using Thermodynamics and Microstructure to Mitigate Overfitting in Pellet Reduction Models.- COM26076: Volume Change of Iron Ore Pellets in a Multi-Pellet Configuration during Reduction Using Pure Hydrogen.- COM26092: Valorization of Steelmaking Slags by Hydrogen Direct Reduction and Magnetic Separation.- COM26107: Melting Behavior of Hydrogen-Reduced and Carbonaceous Direct Reduced Iron: Slag Interactions and Implications for Hydrogen Metallurgy.- COM26116: Laboratory-scale study of a pellet-based H2 reduction and electric smelting process for New Zealand titanomagnetite ironsand.- COM26119: Design and Installation of a Lab-scale Fluidised Bed Reactor for Batch & Continuous High-pressure H2-based Ironmaking.




