TY - JOUR
T1 - Carbon-fiber felt reinforced carbon/alumina aerogel composite fabricated with high strength and low thermal conductivity
AU - Zhong, Ya
AU - Zhang, Junjun
AU - Wu, Xiaodong
AU - Shen, Xiaodong
AU - Cui, Sheng
AU - Lu, Chunhua
N1 - Publisher Copyright:
© 2017, Springer Science+Business Media, LLC.
PY - 2017/10/1
Y1 - 2017/10/1
N2 - Abstract: The objective of this research was to develop a high-strength carbon-fiber felt reinforced carbon/alumina aerogel (CF-C/Al2O3) with low thermal conductivity. The carbon-fiber felt reinforced resorcinol formaldehyde/alumina aerogel (CF-RF/Al2O3) was initially prepared using solgel technique followed by ambient pressure drying technique. The CF-C/Al2O3 was obtained after the thermal treatment at 1600 °C under flowing argon atmosphere. Both CF-RF/Al2O3 and CF-C/Al2O3 displayed extremely little linear shrinkages due to the high structural strength of carbon fiber felt. The compression strength of CF-C/Al2O3 were 0.50, 0.78, 1.30 and 2.35 MPa, the corresponding compressive stress at the strains of Ɛ20%, Ɛ30%, Ɛ40% and Ɛ50%, respectively. The thermal conductivity of CF-C/Al2O3 is as low as 0.284 W/(m·K) at a ultrahigh temperature 1600 °C under argon, which is only about one half of the value of carbon fiber felt (0.538 W/(m·K)). The as-synthesized CF-C/Al2O3 possessed greatly controllable and stable structure, which would be fabricated and machined to a large-scale composites and be used as high temperature thermal insulators.
AB - Abstract: The objective of this research was to develop a high-strength carbon-fiber felt reinforced carbon/alumina aerogel (CF-C/Al2O3) with low thermal conductivity. The carbon-fiber felt reinforced resorcinol formaldehyde/alumina aerogel (CF-RF/Al2O3) was initially prepared using solgel technique followed by ambient pressure drying technique. The CF-C/Al2O3 was obtained after the thermal treatment at 1600 °C under flowing argon atmosphere. Both CF-RF/Al2O3 and CF-C/Al2O3 displayed extremely little linear shrinkages due to the high structural strength of carbon fiber felt. The compression strength of CF-C/Al2O3 were 0.50, 0.78, 1.30 and 2.35 MPa, the corresponding compressive stress at the strains of Ɛ20%, Ɛ30%, Ɛ40% and Ɛ50%, respectively. The thermal conductivity of CF-C/Al2O3 is as low as 0.284 W/(m·K) at a ultrahigh temperature 1600 °C under argon, which is only about one half of the value of carbon fiber felt (0.538 W/(m·K)). The as-synthesized CF-C/Al2O3 possessed greatly controllable and stable structure, which would be fabricated and machined to a large-scale composites and be used as high temperature thermal insulators.
KW - Carbon-fiber felt
KW - Carbon/alumina aerogel
KW - Microstructure
KW - Strength
KW - Thermal conductivity
UR - http://www.scopus.com/inward/record.url?scp=85027885792&partnerID=8YFLogxK
U2 - 10.1007/s10971-017-4485-x
DO - 10.1007/s10971-017-4485-x
M3 - 文章
AN - SCOPUS:85027885792
SN - 0928-0707
VL - 84
SP - 129
EP - 134
JO - Journal of Sol-Gel Science and Technology
JF - Journal of Sol-Gel Science and Technology
IS - 1
ER -