TY - JOUR
T1 - Fibre-reinforced multifunctional SiC matrix composite materials
AU - Yin, X. W.
AU - Cheng, L. F.
AU - Zhang, L. T.
AU - Travitzky, N.
AU - Greil, P.
N1 - Publisher Copyright:
© 2017 Institute of Materials, Minerals and Mining and ASM International.
PY - 2017/4/3
Y1 - 2017/4/3
N2 - In the last two decades, fibre-reinforced SiC ceramic-matrix composites (CMCs) have attracted extensive interests. Owing to the designable multi-scale microstructure feature and the tailorable processing methods such as chemical vapour infiltration and polymer derived ceramics, SiC matrix composites attain great potential as multifunctional composites. Through designing the fibre, interphase, matrix and coating, the composite exhibits a multitude of functionalities which are desirable for various technological applications. Besides strengthening and toughening design of CMCs, three inspiring issues of multifunctional CMCs are receiving increasing attention, including crack self-healing, friction self-lubrication, and electromagnetic shielding and absorption, which are the key mechanisms to promote the application of CMCs in hot structures of engines and aerospace vehicles, braking pads/discs, various electronic devices, etc. The present review covers the main mechanisms on strengthening and toughening, crack self-healing, friction self-lubrication, and electromagnetic shielding and absorption of CMCs. Key developments and future challenges in this field are summarised.
AB - In the last two decades, fibre-reinforced SiC ceramic-matrix composites (CMCs) have attracted extensive interests. Owing to the designable multi-scale microstructure feature and the tailorable processing methods such as chemical vapour infiltration and polymer derived ceramics, SiC matrix composites attain great potential as multifunctional composites. Through designing the fibre, interphase, matrix and coating, the composite exhibits a multitude of functionalities which are desirable for various technological applications. Besides strengthening and toughening design of CMCs, three inspiring issues of multifunctional CMCs are receiving increasing attention, including crack self-healing, friction self-lubrication, and electromagnetic shielding and absorption, which are the key mechanisms to promote the application of CMCs in hot structures of engines and aerospace vehicles, braking pads/discs, various electronic devices, etc. The present review covers the main mechanisms on strengthening and toughening, crack self-healing, friction self-lubrication, and electromagnetic shielding and absorption of CMCs. Key developments and future challenges in this field are summarised.
KW - Ceramic-matrix composites
KW - Dielectric property
KW - Electromagnetic absorption property
KW - Electromagnetic interference shielding property
KW - Mechanical properties
KW - Oxidation resistance
KW - Wear resistance
UR - http://www.scopus.com/inward/record.url?scp=84981731414&partnerID=8YFLogxK
U2 - 10.1080/09506608.2016.1213939
DO - 10.1080/09506608.2016.1213939
M3 - 文献综述
AN - SCOPUS:84981731414
SN - 0950-6608
VL - 62
SP - 117
EP - 172
JO - International Materials Reviews
JF - International Materials Reviews
IS - 3
ER -