TY - JOUR
T1 - Functionally graded composite ceramics
T2 - design, manufacturing, properties and applications
AU - Zheng, Yingqi
AU - Sun, Jialin
AU - Li, Xiao
AU - Zhao, Jun
AU - Wang, Haibin
AU - Yun, Xialun
AU - Li, Zhuan
AU - Huang, Zhifu
N1 - Publisher Copyright:
© 2025 Elsevier Ltd
PY - 2025/11
Y1 - 2025/11
N2 - Functionally graded ceramics (FGCs) are a class of advanced ceramic materials with spatially varying composition, phase or microstructure, designed to achieve continuous or discrete variations in material properties through advanced techniques. They have played a crucial role in replacing conventional ceramic materials in advanced applications as a function of its superior performance in balancing mutually exclusive properties (toughness and strength etc.). Herein, we apply towards comprehensively discuss the emerging advancements in FGCs, highlighting their design, manufacturing, properties and applications. Different design principles were discussed from structural design, stress design, composition design to computer-aided design. Furthermore, in-depth perspective analysis of advanced processing technologies was summarized including powder metallurgy, slip casting, and additive manufacturing. Additionally, the thermal and mechanical properties of FGCs were summarized, accompanied by the corresponding property enhancement mechanisms. Finally, the critical challenges and potential applications in further developing functionally graded ceramics were provided. This comprehensive overview of FGC would be referenceable and helpful to the researchers working in this area or new-come to this field, thereby identifying the research gaps for advancing the field.
AB - Functionally graded ceramics (FGCs) are a class of advanced ceramic materials with spatially varying composition, phase or microstructure, designed to achieve continuous or discrete variations in material properties through advanced techniques. They have played a crucial role in replacing conventional ceramic materials in advanced applications as a function of its superior performance in balancing mutually exclusive properties (toughness and strength etc.). Herein, we apply towards comprehensively discuss the emerging advancements in FGCs, highlighting their design, manufacturing, properties and applications. Different design principles were discussed from structural design, stress design, composition design to computer-aided design. Furthermore, in-depth perspective analysis of advanced processing technologies was summarized including powder metallurgy, slip casting, and additive manufacturing. Additionally, the thermal and mechanical properties of FGCs were summarized, accompanied by the corresponding property enhancement mechanisms. Finally, the critical challenges and potential applications in further developing functionally graded ceramics were provided. This comprehensive overview of FGC would be referenceable and helpful to the researchers working in this area or new-come to this field, thereby identifying the research gaps for advancing the field.
KW - Advanced applications
KW - Advanced processing techniques
KW - Enhancing mechanisms of thermal–mechanical properties
KW - Functionally graded ceramics
KW - Principles of FGC design
UR - https://www.scopus.com/pages/publications/105004262486
U2 - 10.1016/j.pmatsci.2025.101496
DO - 10.1016/j.pmatsci.2025.101496
M3 - 文献综述
AN - SCOPUS:105004262486
SN - 0079-6425
VL - 154
JO - Progress in Materials Science
JF - Progress in Materials Science
M1 - 101496
ER -