TY - JOUR
T1 - Microstructure and mechanical properties of Cf/SiC composites with dispersed C-SiC interphase prepared by chemical vapor infiltration
AU - Niu, Changhui
AU - Zhang, Qing
AU - Cheng, Laifei
AU - Ye, Fang
AU - Zhang, Litong
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2023/2
Y1 - 2023/2
N2 - A simple and cost-effective method for preparing Cf/SiC composites with dispersed C-SiC interphase using fiber surface sizing agents is proposed and verified. The formation mechanism of the dispersed C-SiC interphase is investigated, and the effects of the dispersed C-SiC interphase on the interfacial bonding, strengthening, and toughening mechanisms of the composites are also evaluated. The results reveal that the dispersed C-SiC interphase is formed by the diffusion of SiC precursor molecules into the porous carbon coating derived from the decomposition of the sizing agent. The dispersed C-SiC interphase plays a similar role as the pyrolytic carbon interphase prepared by chemical vapor infiltration. The tensile strength and Weibull modulus of Cf/SiC composites with dispersed C-SiC interphase are 223 MPa and 5.19, respectively. This study has a positive application value for the manufacture of composites in terms of significantly reducing the preparation cost and cycle duration.
AB - A simple and cost-effective method for preparing Cf/SiC composites with dispersed C-SiC interphase using fiber surface sizing agents is proposed and verified. The formation mechanism of the dispersed C-SiC interphase is investigated, and the effects of the dispersed C-SiC interphase on the interfacial bonding, strengthening, and toughening mechanisms of the composites are also evaluated. The results reveal that the dispersed C-SiC interphase is formed by the diffusion of SiC precursor molecules into the porous carbon coating derived from the decomposition of the sizing agent. The dispersed C-SiC interphase plays a similar role as the pyrolytic carbon interphase prepared by chemical vapor infiltration. The tensile strength and Weibull modulus of Cf/SiC composites with dispersed C-SiC interphase are 223 MPa and 5.19, respectively. This study has a positive application value for the manufacture of composites in terms of significantly reducing the preparation cost and cycle duration.
KW - Ceramic-matrix composites
KW - Interphase
KW - Mechanical properties
KW - Microstructural analysis
UR - http://www.scopus.com/inward/record.url?scp=85143676696&partnerID=8YFLogxK
U2 - 10.1016/j.compositesa.2022.107339
DO - 10.1016/j.compositesa.2022.107339
M3 - 文章
AN - SCOPUS:85143676696
SN - 1359-835X
VL - 165
JO - Composites Part A: Applied Science and Manufacturing
JF - Composites Part A: Applied Science and Manufacturing
M1 - 107339
ER -