TY - JOUR
T1 - Improved interfacial strength and ablation resistance of carbon fabric reinforced phenolic composites modified with functionalized ZrSiO4 sol
AU - Xu, Feng
AU - Zhu, Shizhen
AU - Ma, Zhuang
AU - Liu, Yanbo
AU - Li, Hezhang
AU - Hu, Jingdan
N1 - Publisher Copyright:
© 2020
PY - 2020/6
Y1 - 2020/6
N2 - The using performance of carbon fabric reinforced phenolic composites in the aerospace industry is determined by the fibre/matrix interfaces performance and ablation resistance. To enhance these properties, a functionalized ZrSiO4 sol was prepared and sprayed onto carbon fabric, and then the coated fabric was impregnated with resin to fabricate the composite. The ablation resistance and interlaminar shear strength of the composite were investigated. Results showed that the functionalized ZrSiO4 sol had positive effect on composite modification. Due to the improved interfacial adhesion between the carbon fabric and resin, the shear strength of the functionalized ZrSiO4 sol modified composite increased by 11% compared to the unmodified composite. Furthermore, the mass ablation ratio of the functionalized ZrSiO4 sol modified composite was 30% lower than that of the unmodified composite. The surface ceramic layer with a main phase composition of ZrO2 provided an oxygen insulating effect and protected the inner material from serious oxidative ablation. These results confirm that the interlaminar shear strength and ablation resistance of the composite were both significantly enhanced, making this composite be suitable for more severe ablation environments.
AB - The using performance of carbon fabric reinforced phenolic composites in the aerospace industry is determined by the fibre/matrix interfaces performance and ablation resistance. To enhance these properties, a functionalized ZrSiO4 sol was prepared and sprayed onto carbon fabric, and then the coated fabric was impregnated with resin to fabricate the composite. The ablation resistance and interlaminar shear strength of the composite were investigated. Results showed that the functionalized ZrSiO4 sol had positive effect on composite modification. Due to the improved interfacial adhesion between the carbon fabric and resin, the shear strength of the functionalized ZrSiO4 sol modified composite increased by 11% compared to the unmodified composite. Furthermore, the mass ablation ratio of the functionalized ZrSiO4 sol modified composite was 30% lower than that of the unmodified composite. The surface ceramic layer with a main phase composition of ZrO2 provided an oxygen insulating effect and protected the inner material from serious oxidative ablation. These results confirm that the interlaminar shear strength and ablation resistance of the composite were both significantly enhanced, making this composite be suitable for more severe ablation environments.
KW - Ablation resistance
KW - Carbon fabric reinforced phenolic composite
KW - Functionalized ZrSiO sol
KW - Interfacial strength
UR - http://www.scopus.com/inward/record.url?scp=85081040925&partnerID=8YFLogxK
U2 - 10.1016/j.matdes.2020.108623
DO - 10.1016/j.matdes.2020.108623
M3 - Article
AN - SCOPUS:85081040925
SN - 0264-1275
VL - 191
JO - Materials and Design
JF - Materials and Design
M1 - 108623
ER -