TY - JOUR
T1 - Oxidation Resistance of Double-Layer MoSi2–Borosilicate Glass Coating on Fiber-Reinforced C/SiO2 Aerogel Composite
AU - Dai, Tao
AU - Song, Zihao
AU - Du, Yuxuan
AU - Zhao, Yifan
AU - Cui, Sheng
N1 - Publisher Copyright:
© Copyright © 2021 Dai, Song, Du, Zhao and Cui.
PY - 2021/10/13
Y1 - 2021/10/13
N2 - An MoSi2–borosilicate glass coating with high emissivity and oxidation resistance was prepared on the surface of the fiber-reinforced C/SiO2 aerogel composite by the slurry method combined with the embedding sintering method under the micro-oxygen atmosphere. The microstructure and phase composition of the coatings with different MoSi2 contents before and after static oxidation were investigated. This composite material has both excellent radiating properties and outstanding oxidation resistance. The total emissivity values of the as-prepared coatings are all above 0.8450 in the wavelength of 300∼2,500 nm. Meanwhile, the as-prepared M40 coating also has superior thermal endurance after the isothermal oxidation of 1,200°C for 180 min with only 0.27% weight loss, which contributes to the appropriate viscosity of the binder to relieve thermal stress defects. This material has broad application prospects in thermal protection.
AB - An MoSi2–borosilicate glass coating with high emissivity and oxidation resistance was prepared on the surface of the fiber-reinforced C/SiO2 aerogel composite by the slurry method combined with the embedding sintering method under the micro-oxygen atmosphere. The microstructure and phase composition of the coatings with different MoSi2 contents before and after static oxidation were investigated. This composite material has both excellent radiating properties and outstanding oxidation resistance. The total emissivity values of the as-prepared coatings are all above 0.8450 in the wavelength of 300∼2,500 nm. Meanwhile, the as-prepared M40 coating also has superior thermal endurance after the isothermal oxidation of 1,200°C for 180 min with only 0.27% weight loss, which contributes to the appropriate viscosity of the binder to relieve thermal stress defects. This material has broad application prospects in thermal protection.
KW - MoSi–borosilicate glass coating
KW - fiber-reinforced aerogel
KW - oxidation mechanism
KW - oxidation resistance
KW - thermal protection material
UR - http://www.scopus.com/inward/record.url?scp=85117946217&partnerID=8YFLogxK
U2 - 10.3389/fmats.2021.719833
DO - 10.3389/fmats.2021.719833
M3 - 文章
AN - SCOPUS:85117946217
SN - 2296-8016
VL - 8
JO - Frontiers in Materials
JF - Frontiers in Materials
M1 - 719833
ER -