TY - JOUR
T1 - Structure design, fabrication, properties of laminated ceramics
T2 - A review
AU - Cheng, Laifei
AU - Sun, Mengyong
AU - Ye, Fang
AU - Bai, Yuhang
AU - Li, Mingxing
AU - Fan, Shangwu
AU - Zhang, Litong
N1 - Publisher Copyright:
© 2018 The Authors
PY - 2018/9
Y1 - 2018/9
N2 - Various methods exist to improve the toughness and reduce the sensitivity to the defects in ceramic materials; however, the bionic laminated ceramics are the most promising ones. In this paper, we review preparation, sintering, properties and toughening mechanisms of laminated ceramics. Delamination cracks and crack deflection are the main sources of energy dissipation during the fracture of laminated ceramics with weak interfaces. The increasing fracture toughness is due to the residual compressive stress and is the mechanism of laminated ceramics toughness with strong interfaces. These extensively studied laminated ceramics with excellent comprehensive performances (such as high temperature resistance, ablation resistance, thermal shock resistance, high thermal conductivity and impact resistance) have broadened the scope of potential and useful engineering applications. This paper also predicts the feasibility of complex structural 3D designs for rapid prototyping as well as aid development of the new sintering technology, such as cold sintering process and liquid silicon infiltration process, for the preparation of laminated ceramics.
AB - Various methods exist to improve the toughness and reduce the sensitivity to the defects in ceramic materials; however, the bionic laminated ceramics are the most promising ones. In this paper, we review preparation, sintering, properties and toughening mechanisms of laminated ceramics. Delamination cracks and crack deflection are the main sources of energy dissipation during the fracture of laminated ceramics with weak interfaces. The increasing fracture toughness is due to the residual compressive stress and is the mechanism of laminated ceramics toughness with strong interfaces. These extensively studied laminated ceramics with excellent comprehensive performances (such as high temperature resistance, ablation resistance, thermal shock resistance, high thermal conductivity and impact resistance) have broadened the scope of potential and useful engineering applications. This paper also predicts the feasibility of complex structural 3D designs for rapid prototyping as well as aid development of the new sintering technology, such as cold sintering process and liquid silicon infiltration process, for the preparation of laminated ceramics.
KW - Application
KW - Laminated ceramics
KW - Properties
KW - Toughening mechanism
UR - http://www.scopus.com/inward/record.url?scp=85078858280&partnerID=8YFLogxK
U2 - 10.1016/j.ijlmm.2018.08.002
DO - 10.1016/j.ijlmm.2018.08.002
M3 - 文献综述
AN - SCOPUS:85078858280
SN - 2588-8404
VL - 1
SP - 126
EP - 141
JO - International Journal of Lightweight Materials and Manufacture
JF - International Journal of Lightweight Materials and Manufacture
IS - 3
ER -