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Section 1: Progress in Additive Manufacturing (6 Chapters) Chapter 1: Binder Jet Additive Manufacturing of Silicon Carbide-Based Ceramic Matrix Composites for High Efficiency Applications Michael C. Halbig 1 and Mrityunjay Singh 2 Chapter 2: Ceramic Additive Manufacturing: Innovations Driving Net-Zero Carbon Solutions Sinuo Zhang a, Hui-suk Yun Chapter 3: Synthesis and Characterization of 3D Printed PEEK-based Composites for Aerospace and Biomedical Applications Alexander Thorne a, Vaibhav Sharma b, Md Amirul Islam b, Hallie Chelmo b, Surojit Gupta b Chapter 4: Development of piezoelectric composites: From design to additive manufacturing Yan Li*, Xiangbei Liu, Ya Tang, Huan Zhao Chapter 5: Direct Ink Write Additive Manufacturing (DIWAM) and Modeling of 3D Batteries - Technical Challenges and Opportunities Amjad S. Almansour 1, Roy M. Sullivan 1, Donald Dornbusch 1, Zachary Tuchfeld 2, Mrityunjay Singh 3 Chapter 6: Advances in Spatial Design and Functionality of Ceramics via Stereolithographic Additive Manufacturing Fiona Spirrett and Soshu Kirihara Section 2: Innovations in Si3 N4 and SiC-based Technologies (7 Chapters) Chapter 7: Manufacturing of SiC-based Composites for Nuclear Energy Applications Qiance Zhang 1, Alex Leide 1,2, Dong (Lilly) Liu 1 Chapter 8: Review of developments in silicon nitride ceramics: Current trends in power electronics and biomedical applications Stuart Hampshire Chapter 9: Thermal Cycling Reliability of Metallized Si3N4 Substrates for Next Generation of Power Modules: Essential Elements to Achieve Net-Zero Carbon Emissions Minh Chu Ngo*, Hiroyuki Miyazaki, Kiyoshi Hirao, Tatsuki Ohji, Manabu Fukushima Chapter 10: Structural investigation of SiC and multilayered graphene added GPS sintered Si3 N4 matrix Katalin Balázsi 1 and Csaba Balázsi 1 Chapter 11: High-Performance Silicon Nitride Substrate Development With AI-Driven Properties Prediction Yuki Nakashima, Ryoichi Furushima, You Zhou, Kiyoshi Hirao, Tatsuki Ohji, and Manabu Fukushima Chapter 12: Microscale Mechanical Properties of Silicon Nitride for Advanced Micro-Devices Junichi Tatami and Tatsuki Ohji Chapter 13: Silicon Carbide: A Versatile Ceramic Alloy with Tunable Electrical, Thermal, and Mechanical Properties Hyun-Sik Kim 1* and Young-Wook Kim 2 Section 3: Progress in development of next generation ceramics (5 Chapters) Chapter 14: Innovative Exploration of Advanced Compositionally Complex Ceramics in Extreme Environments via Material Genome Engineering Jie Zhang, Xirui Lv, Siyan Zhang, and Jiemin Wang Chapter 15: Self-healing complex oxide coatings H. Suematsu1, T. M. D. Do 1, S. T. Nguyen 2, A. Okawa 3, L. He 4, M. Nanko 5, H. T. Nguyen 5, Gordon J. Thorogood 6, T. Nakayama 1 and K. Niihara Chapter 16: Progress and perspectives on the integrated design of multicomponent rare-earth silicates for environmental barrier coatings: phase formation capability and CMAS corrosion resistance Yixiu Luo, Luchao Sun, and Jingyang Wang Chapter 17: Advanced Sintering Technologies of Ceramics Wei Ji 1,*, Zhengyi Fu Chapter 18: Development of precursor ceramics using organic silicon polymer Toshihiro Ishikawa Section-4: Incorporating sustainability and energy research in ceramics manufacturing (5 Chapters) Chapter 19: Achieving a Sustainable Path for the Silica Value Chain Arish Naim, Subhash Hanamant Risbud Chapter 20: Technological Strategies for Innovative Material Synthesis and Separation to Achieve a Circular Economy in Harmony with Carbon Net-Zero Goals Chiharu Tokoro Chapter 21: Preceramic Polymers Joining of Ceramic Matrix Composites: a contribution to Net-Zero Carbon Emission Monica Ferraris, Nicolo’ Tagliafico, Marco Tresso, Aurora Pizzinat Chapter 22: Innovative Pathways for Sustainable Ammonia Production: Catalysis, Storage, and Scale-Up Challenges Touraj Karimpour a, Fabio A. Pires abc, Naina Goyal a, Benedict Witulski a, Flavio L. Souza bcd, Sanjay Mathur Chapter 23: Ceramics for energy conversion in hydrogen technologies: recycling and manufacturing strategies Sonia Fiorilli, Sofia Saffirio, Simone Anelli, Federico Smeacetto |
Surojit Gupta, PhD, is Professor of Mechanical Engineering at the University of North Dakota. He has published over 50 technical papers, received 5 patents, and chaired the Engineering Ceramics Division and ICACC conference of the American Ceramic Society.
Mrityunjay Singh, PhD, is Chief Scientist at Ohio Aerospace Institute. A past President of ACerS and President of the World Academy of Ceramics, he is a Fellow of ACerS, ASM International, AAAS, and the National Academy of Inventors.
Tatsuki Ohji, PhD, is an emeritus researcher at AIST and visiting professor at Yokohama National University and Nagoya Institute of Technology. He has authored over 380 peer-reviewed papers and served as President of the American Ceramic Society in 2019-2020.
Michael C. Halbig is Senior Materials Research Engineer and Tech Lead for Additive Manufacturing and Joining at NASA Glenn Research Center. He has authored over 80 journal articles and is a past Chair and current Trustee of the Engineering Ceramics Division of ACerS.