Journal of the Chinese Ceramic Society, Volume. 50, Issue 5, 1316(2022)
Preparation and Properties of Silica Aerogels Reinforced Carbon Foam Composites
[1] [1] BRUNETON E, TALLARON C, GRAS N N, et al. Evolution of the structure and mechanical behavior of a carbon foam at very high temperatures[J]. Carbon, 2002, 40(11): 1919-1927.
[3] [3] ZHANG L Y, MA J. Processing and characterization of syntactic carbon foams containing hollow carbon microspheres[J]. Carbon, 2009, 47(6): 1451-1456.
[4] [4] ANDERSON D P, KEARNS K M, KLETT J W, et al. Microcellular graphitic carbon foams for next generation structures and thermal management[C]//Aerospace Conference Proceedings, 2000: 193-200.
[7] [7] LETELLIER M, DELGADO S C, KHELIFA M, et al. Mechanical properties of model vitreous carbon foams[J]. Carbon, 2017, 116: 562-571.
[8] [8] LEI S W, GUO Q G, SHI J L, et al. Preparation of phenolic-based carbon foam with controllable pore structure and high compressive strength[J]. Carbon, 2010, 48(9): 2644-2646.
[11] [11] LI W Q, ZHANG H B, XIONG X, et al. Influence of fiber content on the structure and properties of short carbon fiber reinforced carbon foam[J]. Mat Sci Eng A-Struct, 2010, 527(27): 7274-7278.
[12] [12] WANG X Y, ZHONG J M, WANG Y M, et al. A study of the properties of carbon foam reinforced by clay[J]. Carbon, 2006, 44(8): 1560-1564.
[14] [14] WANG Y M, XU Z, AN Q Q. High strength and high thermal conductivity carbon foam reinforced with graphite nanoparticles[J]. Cell Polym, 2007, 26(5): 305-312.
[15] [15] FARHAN S, WANG R M. Thermal, mechanical and self-destruction properties of aluminum reinforced carbon foam[J]. J Porous Mat, 2015, 22(4): 897-906.
[19] [19] LIU H G, LI T H, SHI Y C, et al. Thermal insulation composite prepared from carbon foam and silica aerogel under ambient pressure[J]. J Mater Eng Perform, 2015, 24(10): 4054-4059.
[21] [21] SALIMIAN S, ZADHOUSH A, TALEBI Z, et al. Silica aerogel-epoxy nanocomposites: understanding epoxy reinforcement in terms of aerogel surface chemistry and epoxy-silica interface compatibility[J]. ACS Appl Nano Mater, 2018, 1(8): 4179-4189.
[22] [22] SIBEKO M, SALADINO M, LUYT A, et al. Morphology and properties of poly (methyl methacrylate) (PMMA) filled with mesoporous silica (MCM-41) prepared by melt compounding[J]. J Mater Sci, 2016, 51(8): 3957-3970.
[23] [23] SAVE M, GRANVORKA G, Bernard J, et al. Atom Transfer radical polymerization of styrene and methyl methacrylate from mesoporous ordered silica particles[J]. Macromol Rapid Commun, 2006, 27(6): 393-398.
[27] [27] LIU C Q, LI K Z, LI H J, et al. The effect of zirconium incorporation on the thermal stability and carbonized product of phenol-formaldehyde resin[J]. Polym Degrad Stabil, 2014, 102(4): 180-185.
[28] [28] YANG S D, CHEN L, LIU S, et al. Robust bifunctional compressed carbon foam for highly effective oil/water emulsion separation[J]. ACS Appl Mater Interfaces, 2020, 12(40): 44952-44960.
[30] [30] GOGOI R, MANIK G, ARUN B. High specific strength hybrid polypropylene composites using carbon fibre and hollow glass microspheres: Development, characterization and comparison with empirical models[J]. Compos Part B-Eng, 2019, 173(15): 106875.
[31] [31] YUAN J, AN Z G, JING J. Effects of hollow microsphere surface property on the mechanical performance of high strength syntactic foams[J]. Compos Sci Technol, 2020, 199: 108309.
[32] [32] AMARAL L, ALDERLIESTEN R, BENEDICTUS R. Towards a physics-based relation- ship for crack growth under different loading modes[J]. Eng Fract Mech, 2018, 195: 222-241.
[33] [33] LIU H G, XU Y D, TANG C L, et al. SiO2 aerogel-embedded carbon foam composite with co-enhanced thermal insulation and mechanical properties[J]. Ceram Int, 2019, 45(17): 23393-23398.
[34] [34] ALIFANOV Ol M, BUDNIK S A, Nenarokomov A V. Design of thermal protection based on open cell carbon foam structure optimization[J]. Appl Therm Eng, 2020, 173: 115252.
[36] [36] REGLERO R J, SAIZ A C, DUMON M, et al. Production cellular structure and thermal conductivity of microcellular (methyl methacrylate)- (butyl acrylate)-(methyl methacrylate) triblock copolymers[J]. Polym Int, 2011, 60: 146-152.
[37] [37] LUO R Y, NI Y F, LI J S, et al. The mechanical and thermal insulating properties of resin-derived carbon foams reinforced by K2Ti6O13 whiskers[J]. Mat Sci Eng A-Struct, 2011, 528(4/5): 2023-2027.
[38] [38] HE X, LI X L, SU D, et al. Ultra-low thermal conductivity and high strength of aerogels/fibrous ceramic composites[J]. J Eur Ceram Soc, 2016, 36(6): 1487-1493.
[39] [39] LI H M, CHEN Y F, WANG P D, et al. Porous carbon-bonded carbon fiber composites impregnated with SiO2-Al2O3 aerogel with enhanced thermal insulation and mechanical properties[J]. Ceram Int, 2018, 44(3): 3484-3487.
Get Citation
Copy Citation Text
WANG Bin, LUO Xiaoyu, ZHAO Yijun, ZHOU Xiaorui, ZHU Chenjing. Preparation and Properties of Silica Aerogels Reinforced Carbon Foam Composites[J]. Journal of the Chinese Ceramic Society, 2022, 50(5): 1316
Category:
Received: May. 12, 2021
Accepted: --
Published Online: Nov. 23, 2022
The Author Email:
CSTR:32186.14.