1 |
Heidenreich S . Hot gas filtration—a review[J]. Fuel, 2013, 104: 83-94.
|
2 |
Ding S Q , Zhu S M , Zeng Y P , et al . Fabrication of mullite-bonded porous silicon carbide ceramics by in situ reaction bonding[J]. J. Eur. Ceram. Soc., 2007, 27: 2095-2102.
|
3 |
Bai J G , Yang X H , Shi Y G , et al . Fabrication of directional SiC porous ceramics using Fe2O3 as pore-forming agent[J]. Mater. Lett., 2012, 78: 192-194.
|
4 |
Han F. , Zhong Z X , Yang Y , et al . High gas permeability of SiC porous ceramics reinforced by mullite fibers[J]. J. Eur. Ceram. Soc., 2016, 36: 3909-3917.
|
5 |
Zhao L , Li X L , Sun W Q , et al . Experimental study on bag filtration enhanced by magnetic aggregation of fine particles from hot metal casting process[J]. Powder Technol., 2018, 327: 255-267.
|
6 |
Wang Q N , Bai Y Y , Xie J F , et al . Multi-scale polyimide/carbon fibers hybrid filters for hot gas filtration[J]. Mater. Sci. Forum., 2015, 814: 464-469.
|
7 |
Lupion M , Navarrete B , Alonso F B , et al . Hot gas filters for coal-based power generation systems: operating experiences[J]. Fuel, 2013, 108: 24-30.
|
8 |
Sleboda T , Kane J , Wright R N , et al . The effect of thermomechanical processing on the properties of Fe-40 at.%Al alloy[J]. Mater. Sci. Eng. A, 2004, 368: 332–336.
|
9 |
Fan X B , He Z B , Lin P , et al . Microstructure, texture and hardness of Al-Cu-Li alloy sheet during hot gas forming with integrated heat treatment[J]. Mater. Des., 2016, 94: 449-456.
|
10 |
Li J F , Lin H , Li J B . Factors that influence the flexural strength of SiC-based porous ceramics used for hot gas filter support[J]. J. Eur. Ceram. Soc., 2011, 31: 825-831.
|
11 |
Liu S F , Zeng Y P , Jiang D L . Fabrication and characterization of cordierite-bonded porous SiC ceramics[J]. Ceram. Int., 2009, 35: 597-602.
|
12 |
Ding S , Zeng Y P , Jiang D . In-situ reaction bonding of porous SiC ceramics[J]. Mater. Charact., 2008, 59: 140-143.
|
13 |
Li J F , Lin H , Li J B . Factors that influence the flexural strength of SiC-based porous ceramics used for hot gas filter support[J]. J. Eur. Ceram. Soc., 2011, 31: 825-831.
|
14 |
Wang M C , Dong X , Tao X , et al . Joining of various engineering ceramics and composites by a modified preceramic polymer for high-temperature application[J]. J. Eur. Ceram. Soc., 2015, 35: 4083-4398.
|
15 |
Ciora R J , Fayyaz B , Liu P K T , et al . Preparation and reactive applications of nanoporous silicon carbide membranes[J]. Chem. Eng. Sci., 2004, 59: 4957-4965.
|
16 |
Wach R A , Sugimoto M , Yoshikawa M . Formation of silicone carbide membrane by radiation curing of polycarbosilane and polyvinylsilane and its gas separation up to 250℃[J]. J. Am. Ceram. Soc., 2007, 90: 275-278.
|
17 |
Kim Y H , Kim S R , Song B G , et al . Nanoporous SiC membrane derived from preceramic polymer[J]. Solid State Pheno., 2007, 12: 1733-1736.
|
18 |
Ding S Q , Zhu S M , Zeng Y P . Effect of Y2O3 addition on the properties of reaction-bonded porous SiC ceramics[J]. Ceram. Int., 2006, 32: 461-466.
|
19 |
She J H , Ohji T , Kanzaki S . Oxidation bonding of porous silicon carbide ceramics with synergistic performance[J]. J. Eur. Ceram. Soc., 2004, 24: 331-334.
|
20 |
She J H , Yang J F , Kondo N , et al . High-strength porous silicon carbide ceramics by an oxidation-bonding technique[J]. J. Am. Ceram. Soc., 2002, 85: 2852-2854.
|
21 |
朱玉梅, 靳正国 . 预氧化在SiC基陶瓷材料烧结中的作用[J]. 天津大学学报, 2006, 36: 769-772.
|
|
Zhu Y M , Jin Z G . Effect of preoxidation on sintering of SiC - based ceramic materials[J]. J. Tianjin Univ., 2006, 36: 769-772.
|
22 |
Yang Y , Han F , Xu W Q , et al . Low-temperature sintering of porous silicon carbide ceramic support with SDBS as sintering aid[J]. Ceram. Int., 2017, 43: 3377-3384.
|
23 |
She J H , Ohji T , Deng Z Y , et al . Thermal shock behavior of porous silicon carbide ceramics[J]. J. Am. Ceram. Soc., 2002, 85: 2125-2127.
|
24 |
She J H , Deng Z Y , Daniel D J , et al . Oxidation bonding of porous silicon carbide ceramics[J]. J. Mater. Sci., 2002, 37: 3615–3622.
|
25 |
Han F , Zhong Z X , Yang Y , et al . High gas permeability of SiC porous ceramics reinforced by mullite fibers[J]. J.Eur. Ceram. Soc., 2016, 36: 3909-3918.
|
26 |
Ebadzadeh T , Majidian H , Salahi E . Effect of SiC additions on microstructure, mechanical properties and thermal shock behaviour of alumina–mullite–zirconia composites[J]. Mater. Sci. Eng. A, 2011, 368: 585-592.
|
27 |
Lin Y J , Tsang, Chia P . Fabrication of mullite/SiC and mullite/zirconia/SiC composites by ‘dual’ in-situ reaction syntheses[J]. Mater. Sci. Eng. A, 2003, 344: 168-174.
|
28 |
Dong S , Zhang X H , Zhang D Y , et al . Strong effect of atmosphere on the microstructure and microwave absorption properties of porous SiC ceramics[J]. J. Eur. Ceram. Soc., 2018, 38: 29-39.
|
29 |
Chen J W , Zhao H Z , Yu J , et al . Synthesis and characterization of reaction-bonded calcium alumino-titanate-bauxite-SiC composite refractories in a reducing atmosphere[J]. Ceram. Int., 2018, 44: 15338-15345.
|
30 |
Zhao X N , Yang J J , Xin H , et al . Improved dispersion of SiC whisker in nano hydroxyapatite and effect of atmospheres on sintering of the SiC whisker reinforced nano hydroxyapatite composites[J]. Mater. Sci. Eng. C, 2018, 91: 135-146.
|
31 |
Yang H , Zhou P , Zhao H , et al . Corrosion of SiC layers on coated zirconia particles in wet atmosphere[J]. Ceram. Int., 2018, 44: 12797-12804.
|