This edition presents selected papers from the 10th International Conference on Advanced Materials, Mechanics and Structural Engineering (AMMSE 2023), which was successfully held on December 15-17, 2023, in Seoul, South Korea. The primary objective of AMMSE 2023 was to provide a world-class forum for exchanging original ideas and new information, the latest research and experience and provide a platform for establishment of collaborative research projects. The meeting brought together academics, scientists, engineers, postgraduates and other professionals in the field of materials science and engineering technology from all over the world.
Selected peer-reviewed full text papers from the 10th International Conference on Advanced Materials, Mechanics and Structural Engineering (AMMSE 2023)
Selected peer-reviewed full text papers from the 10th International Conference on Advanced Materials, Mechanics and Structural Engineering (AMMSE 2023), December 15-17, 2023, Seoul, South Korea
- Preface
- Chapter 1: Properties and Processing Technologies of Structural Metals
- Strip Casting of Al-25%Si-4%Mg Using Unequal Diameter Twin Roll Caster Equipped with Steel Rolls
- Casting of Aluminum Alloy Wire Using Three-Wheel Caster
- Effects of High Temperature to Improve Hot Forging Process of SACM 645 Nitriding Steel
- Chapter 2: Functional Materials
- Tuned Photodegradation Efficiency of Bimetallic Copper-Iron Oxide Catalysts via Precursor Stoichiometry Control for Water Decontamination
- Spectroscopic Analysis of Electrolyte Solutions with Diverse Metal Ions for Aqueous Zinc-Ion Batteries
- Impacts of Lithium Salt on Interfacial Reactions between SiO and Ethlyene Carbonate-Based Solutions in Lithium Secondary Batteries
- Chapter 3: Building Materials
- Experimental Evaluation of the Shear Stress of Concrete with Macro-Synthetic Fibers and Steel Fibers for Structural
- Evaluation of Structural Response in Ultra-High-Strength Concrete and Carbon Fiber Reinforced Frames Exposed to High Temperatures Using Numerical Simulation
- Influence of Rice Husk Ash on Self-Compacting Concrete to Avoid the Presence of Honeycombs in Columns
- Modified Model of Prediction of Carbonation Depth Based on CEB-FIP for Concrete with Portland Cement with High Water-Cement Ratios
- Chapter 4: Research of Equipment and Machine Parts
- Methodology for the Analysis of the Operation of High-Performance Computing Equipment
- Methodology for Thermal Analysis of Combustion Engines, Applied to Automobiles