第十四届先进陶瓷国际会议
Invited Speakers
S1.Frontiers in Advanced Structural Ceramics and composites: From Daily Use to Extreme Heat
S2.Nano-laminated Carbides, Nitrides and Borides and Their 2D Counterparts (MAX/MAB phases and MXenes/MBenes)
S3. Polymer-Derived Ceramics
S4. Advances in Ceramic Matrix Composites
S5. Porous Ceramics and Their Applications in Energy and Environment
S6.  Advanced Refractories and Traditional Ceramics 
S7.  Transparent Ceramics and Luminescent Materials
S8.  Novel Ceramic Coatings and Technology 
S9.  Advanced Powder Processing and Sintering
S10. Progress in 3D Printing and Additive Manufacturing
S11.  Thermoelectric Materials and Devices
S12. Ferroelectric and Piezoelectric Ceramics
S13.  Ferroelectric and Multiferroic thin films
S14.  Advanced Dielectrics for Energy Storage Applications 
S15. Emerging Photovoltaic Materials and Devices
S16. High-Entropy Ceramics: Innovations in Design, Processing, and Applications for Extreme Environments
S17.  Nanoscale Characterization of Ceramic materials
S18. Microwave Dielectric Ceramics and applications
S19.  Ionic and Mixed Conducting Ceramics 
S20.  Advances in Bioceramics 
S21.Data Driven and AI for Ceramics and Composites 
S21 Data driven and AI for ceramics and composites

As we approach the new area of explosive generation of big data and creative concept of high-throughput modeling and design, artificial intelligence and machine learning, we may envisage a completely different paradigm for advancing new knowledge and discovery of ceramic materials. This symposium will focus on the fronties of computational-experimental advancements on the fundamental understanding and improvement of ceramic performances, the discovery of new ceramic materials, and the design of structural ceramic components. A broader perspective will be discussed on the key challenges and opportunities for AI related science and technology in accelerating materials innovation and creating sustainable development. Key topics include high throughput design and characterization, informatics and machine learning, and modeling of ceramics and composites with different approaches in both computational research and experimental measurements across the length and time scales so as to further optimize their behavior and facilitate the design of new structural and functional ceramics and composites with tailored properties.

Focused topics:
1.High-throughput design and characterization
2.Informatics and machine learning
3.Multi-scale modeling of processing, microstructure and performance
4.Modeling of structure and property of ceramics and composites
5.Modeling various defects and amorphous matter at multiple scales
6.Modeling and design of continuous fiber-reinforced ceramic matrix composites
7.Modeling and prediction of ceramic materials properties in local structures, such as interfaces, surfaces and dislocations.

Organizers:
Jingyang Wang, Institute of Metal Research, Chinese Academy of Sciences, China
Bin Liu, Shanghai University, China
Yuelei Bai, Harbin Institute of Technology, China
Gerard L. Vignoles, University of Bordeaux, France
Sergei Manzhos, Tokyo Institute of Technology, Japan
Shuzhou Li, Nanyang Technological University, Singapore
Shijun Zhao, City University of Hong Kong, China
Neng Li, Wuhan University of Technology, China
Liang Wang, Shanghai Institute of Ceramics, Chinese Academy of Sciences, China
Huimin Xiang, Zhengzhou University, China
Weiwei Sun, Southeast University, China
Yiran Li, Shanghai University, China

Point of Contact:
Jingyang Wang: jywang@imr.ac.cn
Bin Liu: binliu@shu.edu.cn
Yuelei Bai: baiyl@hit.edu.cn
S22. Multifuctional Nanomaterials and Heterostructures for Sensing Devices
Back

Copyright © 2018 . The Chinese Ceramic Society All rights reserved.