TY - JOUR
T1 - Influences of SiC infiltration and coating on compressive mechanical behaviours of 2D C/SiC composites up to 1600 °C at wide-ranging strain rates
AU - Zhang, Chao
AU - Guan, Tianhao
AU - Ren, Tengfei
AU - Zhang, Xinyue
AU - Wang, Bo
AU - Zhou, Xi
AU - Suo, Tao
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2022/8
Y1 - 2022/8
N2 - The influences of the SiC infiltration and coating on the compressive mechanical behaviours of 2D C/SiC composites were determined up to 1600 °C at 0.001 and 1000/s strain rates in argon and air. In addition, the failure mechanisms responsible for the compressive mechanical behaviours were elucidated through in-situ observation and micro-analysis-based methods. The 2D C/SiC composite compressive strength was highly sensitive to temperature, loading rate, and oxidation, and was enhanced by the change in the thermal residual stress and decreased by oxidation. In argon, because of the extra infiltrated SiC matrix, SiC treated 2D C/SiC specimens exhibited higher compressive strengths and lower strain rate sensitivity factors than SiC untreated 2D C/SiC specimens. The SiC coating effectively improved the oxidation resistance of the 2D C/SiC composites in air, regardless of the temperature, strain rate, and oxidative damage-which depends on SiC coating, strain rate, and temperature.
AB - The influences of the SiC infiltration and coating on the compressive mechanical behaviours of 2D C/SiC composites were determined up to 1600 °C at 0.001 and 1000/s strain rates in argon and air. In addition, the failure mechanisms responsible for the compressive mechanical behaviours were elucidated through in-situ observation and micro-analysis-based methods. The 2D C/SiC composite compressive strength was highly sensitive to temperature, loading rate, and oxidation, and was enhanced by the change in the thermal residual stress and decreased by oxidation. In argon, because of the extra infiltrated SiC matrix, SiC treated 2D C/SiC specimens exhibited higher compressive strengths and lower strain rate sensitivity factors than SiC untreated 2D C/SiC specimens. The SiC coating effectively improved the oxidation resistance of the 2D C/SiC composites in air, regardless of the temperature, strain rate, and oxidative damage-which depends on SiC coating, strain rate, and temperature.
KW - 2D C/SiC composite
KW - Compressive mechanical behaviour
KW - High strain rate
KW - Oxidation damage
KW - SiC coating
UR - http://www.scopus.com/inward/record.url?scp=85126383353&partnerID=8YFLogxK
U2 - 10.1016/j.jeurceramsoc.2022.02.042
DO - 10.1016/j.jeurceramsoc.2022.02.042
M3 - 文章
AN - SCOPUS:85126383353
SN - 0955-2219
VL - 42
SP - 3787
EP - 3801
JO - Journal of the European Ceramic Society
JF - Journal of the European Ceramic Society
IS - 9
ER -