第十四届先进陶瓷国际会议
Invited Speakers
S1.先进结构陶瓷和复合材料前沿:从日常使用到极端高温
S2.纳米层状碳化物/氮化物/硼化物及其二维材料
S3. 聚合物前驱体陶瓷
S4. 陶瓷基复合材料前沿
S5. 多孔陶瓷及其在能源与环境中的应用
S6.  先进耐火材料与传统陶瓷
S7.  透明陶瓷与发光材料
S8. 新型陶瓷涂层与技术
S9.  粉体工艺与烧结前沿
S9: Advanced powder processing and sintering

Originated from traditional firing processes for structural and functional components, modern sintering technology arises as an advanced and essential tool for a variety of applications. In recent years, two trends have been witnessed in this old and new research field. One is the perusing of high efficiency in sintering, for which external fields such as electricity or stress are usually exploited. The other one is realization of sintering at low temperature, for which reaction process during densification are typically involved.
Accordingly, novel technologies such as flash sintering, cold sintering and bioinspired densification (mineralization) are under rapid development in ceramic community. Moreover, as the properties of raw powders significantly affect sintering kinetics and quality, advances in powder processing is of great interest from both scientific and industrial point of view. Finally, the novel sintering processing could result in distinct microstructure of ceramics, and thus directly affects the mechanical and functional properties.
This symposium seeks to provide a platform for global researchers to share the latest developments in sintering science and technology, as well as microstructural evolution for powder-based materials. The topics will include but not limit to fundamentals of sintering, development of novel sintering techniques, sintering-enabled novel properties, and industrial applications. Special attention will also be paid to the design of complex and multifunctional materials with specific microstructures and properties.

Focused topics:
1.Powder processing for sintering
2.Fundamentals of sintering
3.Modeling and simulation of sintering
4.Novel sintering techniques
5.Sintering in additive manufacturing
6.Sintering for industrial applications

Organizers:
Yuchi Fan (Donghua University, China);
Yanhao Dong (Tsinghua University, China);
Eugene A. Olevsky (San Diego State University, USA);
Yiquan Wu (Afred University, USA);
Motoyuki Iijima (Yokohama National University, Japan);
Salvatore Grasso (Queen Mary University of London, UK);
Jing Guo (Xian Jiaotong University, China);
Jiang Li (Shanghai Institute of Ceramics, CAS, China);
Jinling Liu (Southwest Jiaotong University, China);
Zhulin Huang (Institute of Solid State Physics, CAS, China);
Wei Ji (Whuhan University of Technology, China);
Wei Luo (Donghua University, China);
Rujie He (Beijing Institute of Technology, China)

Point of Contact:
Yuchi Fan (Donghua University) Email: yuchifan@dhu.edu.cn
Yanhao Dong (Tsinghua University) Email: dongyanhao@tsinghua.edu.cn
S10.3D 打印和增材制造进展
S11.  热电材料与器件
S12. 铁电与压电陶瓷
S13.  铁电与多铁薄膜
S14.  先进储能电介质材料
S15.  新兴光伏材料和器件
S16. 高熵陶瓷:极端环境下设计、加工和应用的创新
S17.  陶瓷材料纳米级表征
S18. 微波介电陶瓷及其应用
S19.  离子及混合传导陶瓷
S20.  生物陶瓷前沿
S21.数据驱动和人工智能在陶瓷和复合材料中的应用
S22. 用于传感器件的多功能纳米材料和异质结构
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