Journal of Inorganic Materials ›› 2017, Vol. 32 ›› Issue (7): 731-738.DOI: 10.15541/jim20160550
• Orginal Article • Previous Articles Next Articles
XIE Yu-Zhou1, PENG Chao-Qun1, WANG Xiao-Feng1, WANG Ri-Chu1, LUO Feng2
Received:
2016-10-08
Revised:
2016-12-23
Published:
2017-07-20
Online:
2017-06-23
About author:
XIE Yu-Zhou. E-mail: 447109919@qq.com
Supported by:
CLC Number:
XIE Yu-Zhou, PENG Chao-Qun, WANG Xiao-Feng, WANG Ri-Chu, LUO Feng. Porous Alumina Ceramic Prepared by HEMA-TBA Gelcasting System[J]. Journal of Inorganic Materials, 2017, 32(7): 731-738.
Name | Abbreviation | Purity | Manufacture |
---|---|---|---|
Tert-butanol | TBA | AR | Shanghai Chemical Reagent Co. |
2-hydroxyethyl methacrylate | HEMA | AR | Shanghai Chemical Reagent Co. |
Methylene-bis-acrylamide | MBAM | AR | Shanghai Chemical Reagent Co. |
Benzoyl peroxide | BPO | AR | Shanghai Chemical Reagent Co. |
N, N-dimethylaniline | DMA | AR | Shanghai Chemical Reagent Co. |
Citric acid | C6H6O7 | AR | Shanghai Chemical Reagent Co. |
Acetic acid | C2H4O2 | AR | Shanghai Chemical Reagent Co. |
Alumina | α-Al2O3 | 99.8% | Henan Jiyuan Brother Material Co. |
Table 1 Manufacture and purity of the raw materials
Name | Abbreviation | Purity | Manufacture |
---|---|---|---|
Tert-butanol | TBA | AR | Shanghai Chemical Reagent Co. |
2-hydroxyethyl methacrylate | HEMA | AR | Shanghai Chemical Reagent Co. |
Methylene-bis-acrylamide | MBAM | AR | Shanghai Chemical Reagent Co. |
Benzoyl peroxide | BPO | AR | Shanghai Chemical Reagent Co. |
N, N-dimethylaniline | DMA | AR | Shanghai Chemical Reagent Co. |
Citric acid | C6H6O7 | AR | Shanghai Chemical Reagent Co. |
Acetic acid | C2H4O2 | AR | Shanghai Chemical Reagent Co. |
Alumina | α-Al2O3 | 99.8% | Henan Jiyuan Brother Material Co. |
Solid loading | Shrinkage |
---|---|
5% | 9.2%-10.1% |
10% | 5.1%-6.3% |
15% | 0.9%-1.2% |
20% | 0.8%-1.0% |
Table 2 Shrinkage in green body with different solid loadings after drying
Solid loading | Shrinkage |
---|---|
5% | 9.2%-10.1% |
10% | 5.1%-6.3% |
15% | 0.9%-1.2% |
20% | 0.8%-1.0% |
Monomer amount | Flexural strength/MPa |
---|---|
15% | 3.2±0.2 |
25% | 6.1±0.2 |
35% | 4.2±0.2 |
Table 3 Flexural strength of green body after drying with different monomer amounts
Monomer amount | Flexural strength/MPa |
---|---|
15% | 3.2±0.2 |
25% | 6.1±0.2 |
35% | 4.2±0.2 |
Solid loading | Porosity | Flexural strength/MPa |
---|---|---|
5% | 61-65% | 5.7±0.2 |
10% | 55-58% | 8.3±0.2 |
15% | 47-49% | 27.6±1.5 |
20% | 43-46% | 48.5±2.1 |
Table 4 Porosity and flexural strength of porous alumina ceramic with different solid loadings sintered at 1500℃
Solid loading | Porosity | Flexural strength/MPa |
---|---|---|
5% | 61-65% | 5.7±0.2 |
10% | 55-58% | 8.3±0.2 |
15% | 47-49% | 27.6±1.5 |
20% | 43-46% | 48.5±2.1 |
Sintering temperature/℃ | Porosity | Flexural strength/MPa |
---|---|---|
1400 | 49%-50% | 23.7±1.3 |
1500 | 43%-46% | 48.5±2.1 |
1600 | 40%-42% | 91.2±4.5 |
Table 5 Porosity and flexural strength of porous alumina ceramic sintered at different temperatures
Sintering temperature/℃ | Porosity | Flexural strength/MPa |
---|---|---|
1400 | 49%-50% | 23.7±1.3 |
1500 | 43%-46% | 48.5±2.1 |
1600 | 40%-42% | 91.2±4.5 |
[1] | OHJI T, FUKUSHIMA M.Macro-porous ceramic: processing and properties.International Materials Reviews, 2012, 57(2): 115-131. |
[2] | SU C H, XU Y Q, ZHANG W, et al.Porous ceramic membrane with superhydrophobic and superoleophilic surface for reclaiming oil from oily water.Applied Surface Science, 2012, 258(7): 2319-2323. |
[3] | HAUGEN H J, MONJO M, RUBERT M, et al.Porous ceramic titanium dioxide scaffolds promote bone formation in rabbit peri-implant cortical defect model.Acta Biomaterialia, 2013, 9(2): 5390-5399. |
[4] | YOUNG A C, OMATETE O O, JANNEY M A, et al.Gelcasting of alumina.Journal of the American Ceramic Society, 1991, 74(3): 612-618. |
[5] | WANG X F, WANG R C, PENG C Q, et al.Research and development of gelcasting.The Chinese Journal of Nonferrous Metal, 2010, 20(3): 496-509. |
[6] | WU J M, ZHANG X Y, YANG J L.Novel porous Si3N4 ceramic prepared by aqueous gelcasting using Si3N4 poly-hollow microspheres as pore-forming agent.Journal of the European Ceramic Society, 2014, 34(5): 1089-1096. |
[7] | LIU Y F, LIU X Q, WEI H, et al.Porous mullite ceramic from national clay produced by gelcasting.Ceramic International, 2001, 27(1): 1-7. |
[8] | ZHANG F Z, KATO T, FUJI M, et al.Gelcasting fabrication of porous ceramics using a continuous process.Journal of the European Ceramic Society, 2006, 26(4): 667-671. |
[9] | CHEN R F, HUANG Y, WANG C A, et al.Ceramics with ultra- low density fabricated by gelcasting: An unconventional view.Journal of the American Ceramic Society, 2007, 90(11): 3424-3429. |
[10] | 彭俊. 醇水基浆料凝胶注模成型氧化铝多孔陶瓷. 长沙: 中南大学硕士学位论文, 2013. |
[11] | 刘伟渊. 高气孔率、高强度多孔氧化铝陶瓷的制备及表征. 北京: 清华大学硕士学位论文, 2009. |
[12] | 高濂, 孙静, 刘阳桥. 纳米粉体的分散及表面改性. 北京: 化学工业出版社, 2003. |
[13] | LEWIS J A.Colloidal processing of ceramic.Journal of the American Ceramic Society, 2000, 83(10): 2341-2359. |
[14] | HOU Z G, DU H Y, LIU J C, et al.Fabrication and properties of mullite fiber matrix porous ceramics by a TBA-based gelcasting process.Journal of the European Ceramic Society, 2013, 33(4): 717-725. |
[15] | WANG X F, WANG R C, PENG C Q, et al.Reology of aqueous BeO suspension with NH4PAA as a dispersant.Progress in Natural Science, 2012, 22(4): 347-353. |
[16] | YANG J L, XIE Z P, TANG Q, et al.Studies on rheological behavior and gelcasting of α-Al2O3 suspension.Journal of the Chinese Ceramic Society, 1998, 26(1): 41-46. |
[17] | MENON M, DECOURCELLE S, RAMOUSSE S, et al.Stabilization of ethanol-based alumina suspensions. Journal of the American Ceramic Society, 2006, 89(2): 457-464. |
[18] | HIIDBER P C, GRAULE T J, GAUCKLER L J.Citric acid-a dispersant for aqueous alumina suspensions.Journal of the American Ceramic Society, 1996, 79(7): 1857-1867. |
[19] | LIU B, PENG C Q, WANG R C, et al.Influence factors for stability behavior of Al2O3 suspension.The Chinese Journal of Nonferrous Metals, 2012, 22(10): 2833-2838. |
[20] | YANG J L, YU J L, HUANG Y.Recent developments in gelcasting of ceramics.Journal of the European Ceramic Society, 2011, 31(14): 2569-2591. |
[21] | WANG X F, PENG C Q, WANG R C, et al.Liquid drying of BeO gelcast green bodies using ethanol as liquid desiccant.Transactions of Nonferrous Metals Society of China, 2015, 25(7): 2466-2472. |
[22] | WANG X F, WANG R C, PENG C Q, et al.Rheological property and drying mechanism of thermoresponsive gelcasting of ZnO.Transactions of Nonferrous Metals Society of China, 2015, 25(8): 2789-2796. |
[23] | WANG X F, WANG R C, PENG C Q, et al.Thermoresponsive gelcasting: improved drying of gelcast bodies.Journal of the American Ceramic Society, 2011, 94(6): 1679-1682. |
[24] | XU K H, SUN Y, HUANG Y, et al.Preparation of porous alumina ceramics by TBA gelcasting process.Refractories, 2011, 45(2): 93-95. |
[25] | LI Y G, WANG Z Y.Influences of different drying methods on the dehydration process of alumina green body fabricated by gelcasting.Shandong Ceramics, 2011, 34(6): 26-28. |
[26] | 潘祖仁. 高分子化学(增强版). 北京: 化学工业出版社, 2007. |
[27] | WANG X F, WANG R C, PENG C Q, et al.Gelation kinetics uniformity of gelcasting.Journal of Central South University (Science and Technology), 2012, 43(4): 1281-1289. |
[28] | WANG X F, WANG R C, PENG C Q, et al.Effect of process conditions on strength of BeO green body prepared by gelcasting.Journal of Functional Materials, 2011, 42(7): 1197-1202. |
[29] | JIN X, CAI K, LIU W, et al.Effects of monomer content on internal stresses during solidification process and properties of green bodies by gelcasting.Journal of the Chinese Ceramic Society, 2011, 39(5): 794-798. |
[30] | ZHOU L Z, WANG C A, LIU W Y, et al.Fabrication of low density high strength porous mullite ceramics by tert-buty alcohol- based gelcasting process.Journal of Inorganic Materials, 2009, 24(6): 1173-1177. |
[1] | WU Xiangquan, TENG Jiachen, JI Xiangxu, HAO Yubo, ZHANG Zhongming, XU Chunjie. Textured Porous Al2O3-SiO2 Composite Ceramic Platelet-sphere Slurry: Characteristics and Simulation of Light Intensity Distribution [J]. Journal of Inorganic Materials, 2024, 39(7): 769-778. |
[2] | JIANG Lingyi, PANG Shengyang, YANG Chao, ZHANG Yue, HU Chenglong, TANG Sufang. Preparation and Oxidation Behaviors of C/SiC-BN Composites [J]. Journal of Inorganic Materials, 2024, 39(7): 779-786. |
[3] | SU Yi, SHI Yangfan, JIA Chenglan, CHI Pengtao, GAO Yang, MA Qingsong, CHEN Sian. Microstructure and Properties of C/HfC-SiC Composites Prepared by Slurry Impregnation Assisted Precursor Infiltration Pyrolysis [J]. Journal of Inorganic Materials, 2024, 39(6): 726-732. |
[4] | WU Songze, ZHOU Yang, LI Runfeng, LIU Xiaoqian, LI Cuiwei, HUANG Zhenying. Reaction Sintered Porous Ceramics Using Iron Tailings: Preparation and Properties [J]. Journal of Inorganic Materials, 2023, 38(10): 1193-1199. |
[5] | WANG Shiwei. Progress of Spontaneous Coagulation Casting of Ceramic Slurries Based on Hydrophobic Interaction [J]. Journal of Inorganic Materials, 2022, 37(8): 809-820. |
[6] | ZHU Quan, HU Jianbao, YANG Jinshan, ZHOU Haijun, DONG Shaoming. Strong SiC Porous Ceramic Obtained by Sintering of Reticulated Aligned SiC Nanowires [J]. Journal of Inorganic Materials, 2021, 36(5): 547-551. |
[7] | ZHANG Li, YANG Xianfeng, XU Xiewen, GUO Jinyu, ZHOU Zhe, LIU Peng, XIE Zhipeng. 3D Printed Zirconia Ceramics via Fused Deposit Modeling and Its Mechanical Properties [J]. Journal of Inorganic Materials, 2021, 36(4): 436-442. |
[8] | DONG Longhao,ZHANG Haijun,ZHANG Jun,WU Wenhao,JIA Quanli. Carbon Nanotube Modified Sepiolite Porous Ceramics for High-efficient Oil/Water Separation [J]. Journal of Inorganic Materials, 2020, 35(6): 689-696. |
[9] | LI Xing-Bang,ZHONG He,ZHANG Jing-Xian,DUAN Yu-Sen,JIANG Dong-Liang. Powder Characteristics on the Rheological Performance of Resin-based Zirconia Suspension for Stereolithography [J]. Journal of Inorganic Materials, 2020, 35(2): 231-235. |
[10] | FU Yun-Fei, ZHU Bo-Quan, LI Xiang-Cheng, CHEN Ping-An. Synthesis and Rheological Property of Calcium Aluminate Cement Containing MgAl2O4 Spinel [J]. Journal of Inorganic Materials, 2017, 32(8): 884-890. |
[11] | SONG Sheng-Xing, YIN Jie, ZHU Yun-Zhou, HUANG Yi-Hua, LIU Xue-Jian, HUANG Zheng-Ren. Optical Coating on Cf/SiC Composites via Aqueous Slurry Painting and Reaction Bonding [J]. Journal of Inorganic Materials, 2017, 32(2): 210-214. |
[12] | WANG Wei-Lei, LIU Wei-Li, BAI Lin-Sen, SONG Zhi-Tang, HUO Jun-Chao. Surface Modified Alumina Particles and Their Chemical Mechanical Polishing (CMP) Behavior on C-plane (0001) Sapphire Substrate [J]. Journal of Inorganic Materials, 2017, 32(10): 1109-1114. |
[13] | GONG Wei, LI Hua, ZHOU Li-Ming, BAI Cao-Zhong, WANG En-Ze. Microstructure and Properties of 3Y-TZP/LZAS Glass-ceramic Functionally Gradient Coatings [J]. Journal of Inorganic Materials, 2017, 32(1): 63-68. |
[14] | SUN Jin-Xing, CHEN Bin, LIU Pei-Sheng. Preparation of Light Weight Porous Ceramics and Sound Absorption Performance Research [J]. Journal of Inorganic Materials, 2016, 31(8): 860-864. |
[15] | WANG Feng, GAO Zhao-Fen, XU Jia-Qiang, ZENG Yu-Ping. Porous SiC Ceramics with Multiple Pore Structure Fabricated via Gelcasting and Solid State Sintering [J]. Journal of Inorganic Materials, 2016, 31(3): 305-310. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||