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总结了直接加入碳纳米管法和催化酚醛树脂原位生成碳纳米管法应用在低碳耐火材料中的研究现状,提出了碳纳米管增强碳复合耐火材料目前存在的问题和今后潜在的发展方向。

Current research progress of directly adding carbon nanotubes (CNTs)method and catalytic phenolic resin in-situ forming CNTs method for low carbon containing refractories was summarized,and the present problems and potential development directions of CNTs reinforced carbon composite refractories were also proposed.

参考文献

[1] Emad Mohamed M.Ewais.Carbon Based Refractories[J].日本セラミックス协会学术论文志,20041310(1310):517-532.
[2] C.G. ANEZIRIS;J. HUBALKOVA;R. BARABAS.Microstructure evaluation of MgO-C refractories with TiO_2- and Al-additions[J].Journal of the European Ceramic Society,20071(1):73-78.
[3] M. Bavand-Vandchali;F. Golestani-Fard;H. Sarpoolaky.The influence of in situ spinel formation on microstructure and phase evolution of MgO-C refractories[J].Journal of the European Ceramic Society,20083(3):563-569.
[4] A.S. Gokce;C. Gurcan;S. Ozgen.The effect of antioxidants on the oxidation behaviour of magnesia-carbon refractory bricks[J].CERAMICS INTERNATIONAL,20082(2):323-330.
[5] L. Musante;L.F. Martorello;P.G. Galliano.Mechanical behaviour of MgO-C refractory bricks evaluated by stress-strain curves[J].CERAMICS INTERNATIONAL,20125(5):4035-4047.
[6] Tianbin Zhu;Yawei Li;Shengli Jin.Microstructure and mechanical properties of MgO-C refractories containing expanded graphite[J].CERAMICS INTERNATIONAL,20134(4):4529-4537.
[7] Tianbin Zhu;Yawei Li;Ming Luo.Microstructure and mechanical properties of MgO-C refractories containing graphite oxide nanosheets (GONs)[J].CERAMICS INTERNATIONAL,20133(3):3017-3025.
[8] Fan, H.;Li, Y.;Sang, S..Microstructures and mechanical properties of Al_2O_3-C refractories with silicon additive using different carbon sources[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,20117/8(7/8):3177-3185.
[9] E. Karamian;A. Monshi.Influence of additives on nano-SiC whisker formation in alumina silicate-SiC-C monolithic refractories[J].CERAMICS INTERNATIONAL,20102(2):811-816.
[10] Fan, H.;Huang, Y.;Sang, S.;Li, Y.;Zhao, L..Microstructures and mechanical properties of Al _2O _3-ZrO _2-C refractories using silicon, microsilica or their combination as additive[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2012:148-154.
[11] Boquan Zhu;Yuenan Zhu;Xiangcheng Li.Effect of ceramic bonding phases on the thermo-mechanical properties of Al_2O_3-C refractories[J].CERAMICS INTERNATIONAL,20136(6):6069-6076.
[12] Qinghu Wang;Yawei Li;Ming Luo.Strengthening mechanism of graphene oxide nanosheets for Al_2O_3-C refractories[J].CERAMICS INTERNATIONAL,20141 Pt.A(1 Pt.A):163-172.
[13] 彭小艳;李林;彭达岩;刘开琪;钱端芬.低碳镁炭砖及其研究进展[J].耐火材料,2003(6):355-357,363.
[14] 朱伯铨,张文杰,姚亚双.低碳镁碳耐火材料的研究现状与发展[C].耐火材料(《耐火材料》杂志社创刊四十周年暨耐火材料科技发展研讨会:论文专辑),2006:90-95.
[15] Mousom Bag;Sukumar Adak;Ritwik Sarkar.Study on low carbon containing MgO-C refractory: Use of nano carbon[J].CERAMICS INTERNATIONAL,20123(3):2339-2346.
[16] Van Lier G.;Van Doren V.;Geerlings P.;Van Alsenoy C..Ab initio study of the elastic properties of single-walled carbon nanotubes and graphene[J].Chemical Physics Letters,20001/2(1/2):181-185.
[17] M. J. Biercuk;M. C. Llaguno;M. Radosavljevic;J. K. Hyun;A. T. Johnson;J. E. Fischer.Carbon nanotube composites for thermal management[J].Applied physics letters,200215(15):2767-2769.
[18] Tianbin Zhu;Yawei Li;Shaobai Sang.Effect of nanocarbon sources on microstructure and mechanical properties of MgO-C refractories[J].CERAMICS INTERNATIONAL,20143(3):4333-4340.
[19] Luo, M.;Jin, S.;Sang, S.;Zhao, L.;Li, Y..Microstructures and mechanical properties of Al _2O _3-C refractories with addition of multi-walled carbon nanotubes[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2012:134-141.
[20] Ming Luo;Yawei Li;Shengli Jin.Microstructure and mechanical properties of multi-walled carbon nanotubes containing Al_2O_3-C refractories with addition of polycarbosilane[J].CERAMICS INTERNATIONAL,20135(5):4831-4838.
[21] Skowronski JM;Knofczynski K;Inagaki M.Changes in electrochemical insertion of lithium into glass-like carbon affected by catalytic graphitization at 1000 degrees C[J].Solid state ionics,20071/2(1/2):137-144.
[22] Haiyun Jiang;Jigang Wang;Shenqing Wu.Pyrolysis kinetics of phenol-formaldehyde resin by non-isothermal thermogravimetry[J].Carbon: An International Journal Sponsored by the American Carbon Society,20102(2):352-358.
[23] 方伟;赵雷;于晓燕;李亚伟;李远兵;李淑静.酚醛树脂在耐火材料中的应用及其研究现状[J].耐火材料,2013(4):303-306.
[24] 赵雷;于晓燕;王国飞;李亚伟;李淑静;李远兵.氧化钴溶胶复合酚醛树脂的热解碳结构变化[J].功能高分子学报,2012(1):58-61,108.
[25] 汪贤;朱伯铨;李享成;马铮;魏莹.金属共掺杂对树脂炭结构及抗氧化性能的影响[J].硅酸盐学报,2015(3):316-321.
[26] Wei, Guoping;Zhu, Boquan;Li, Xiangcheng;Ma, Zheng.Microstructure and mechanical properties of low-carbon MgO-C refractories bonded by an Fe nanosheet-modified phenol resin[J].CERAMICS INTERNATIONAL,20151 Pt.B(1 Pt.B):1553-1566.
[27] 雷晓谋 .酚醛树脂原位催化裂解碳纳米管的生成及其应用研究[D].武汉科技大学,2008.
[28] 郭巍;安胜利.二茂铁的加入对铝碳耐火材料性能的影响[J].硅酸盐通报,2007(5):1011-1015.
[29] Stamatin I;Morozan A;Dumitru A;Ciupina V;Prodan G;Niewolski J;Figiel H.The synthesis of multi-walled carbon nanotubes (MWNTs) by catalytic pyrolysis of the phenol-formaldehyde resins[J].Physica, E. Low-dimensional systems & nanostructures,20071/2(1/2):44-48.
[30] Synthesis of carbon nanotubes and porous carbons from printed circuit board waste pyrolysis oil[J].Journal of hazardous materials,20101/3(1/3):911.
[31] 胡庆华;王玺堂;王周福;陈浩.掺Fe酚醛树脂合成及其催化石墨化研究[J].材料工程,2010(z2):359-361,373.
[32] 于晓燕 .复合酚醛树脂及其在碳复合耐火材料中的应用[D].武汉科技大学,2012.
[33] 夏忠锋 .低碳镁碳材料基质组成的优化研究[D].武汉科技大学,2012.
[34] 魏国平;朱伯铨;李享成;马铮.不同炭化条件下 Ni 掺杂酚醛树脂的炭化研究[J].耐火材料,2015(4):246-250.
[35] 朱伯铨;魏国平;李享成;马铮;魏莹.炭化温度对掺杂改性树脂炭结构及其抗氧化性能的影响[J].硅酸盐学报,2014(6):773-778.
[36] Luo, M.;Sang, S.;Zhao, L.;Jin, S.;Li, Y..In situ formation of carbon nanotubes and ceramic whiskers in Al _2O _3-C refractories with addition of Ni-catalyzed phenolic resin[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2012:533-542.
[37] 胡庆华;王玺堂;王周福;陈浩.酚醛树脂原位催化裂解制备低维碳纳米结构[J].材料研究学报,2012(03):302-308.
[38] 方伟 .木质素改性酚醛树脂的合成及其对镁碳材料结构与性能的影响[D].武汉科技大学,2014.
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