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主要介绍了Al-Si复合Al2 O3-C滑板、Al-Si复合Al2 O3-ZrO2-C滑板和Al-Si复合MgO-MgAl2 O4-C滑板的研究与应用情况。Al、Si等的引入,使滑板制备工艺简化,烧成温度降低,生产流程缩短,并可提高滑板的高温强度、抗热震性和抗氧化性等关键性能。

Progress in research and application of Al-Si composite Al2 O3-C slide plate,Al-Si composite Al2 O3-ZrO2-C slide plate and Al-Si composite MgO-MgAl2 O4-C slide plate was introduced.The prepara-tion process of slide plate was simplified,firing temperature was lowered and production flow was short-ened when Al-Si was incorporated,as well as hot strength,thermal shock resistance and oxidation resist-ance were improved.

参考文献

[1] 石凯,卫忠贤,钟香崇.Al2O3-Al-C材料加热过程的变化[J].耐火材料,2007(01):22-25.
[2] 杨晓春,姚春战,高阳,艾丽,王作霞.金属-氮化物结合滑板的研制与应用[J].耐火材料,2003(05):271-273,281.
[3] 卜景龙,于之东,杨晓春,王志发,王瑞生,王榕林.Al-AlN-Al2O3复相滑板的开发与应用性能[J].钢铁钒钛,2004(04):24-28.
[4] 卜景龙,杨晓春,王瑞生,王志发,王榕林,孙加林.金属-氮化物结合刚玉质滑板抗渣性研究[J].硅酸盐学报,2005(02):253-257.
[5] 李勇,张军杰,李进宝,薛文东,陈俊红,孙加林.用塑性金属工艺制备Al-Al2O3复合无碳滑板[J].硅酸盐学报,2013(03):416-421.
[6] 岳卫东,聂洪波,钟香崇,石凯.金属Al-Si复合不烧铝碳滑板材料的热机械性能及显微结构[J].耐火材料,2006(03):177-180.
[7] 李有奇,柯昌明,汪尧进,韩兵强,李楠.金属Zn粉对烧成Al2O3-C材料性能和显微结构的影响[J].硅酸盐通报,2006(05):158-161.
[8] 李有奇,柯昌明,李友胜,李楠.金属Zn粉对Al2O3 -C耐火材料抗氧化性能的影响[J].耐火材料,2006(03):200-203.
[9] 任桢 .金属复合低碳镁铝碳材料高温性能的研究[D].郑州大学,2009.
[10] 田晓利,薛群虎,薛崇勃,肖国庆.Zn对Al2O3-Al-C滑板中温性能和显微结构的影响[J].硅酸盐学报,2010(11):2199-2204.
[11] Mark R Snyder;Priyadarshi G Desai;Xianxun (Joe)Yi.Science and practical use of metal additives for protection against low tem-perature oxidation of carbon bonded sliding gate refractories[A].Kyoto,Japan,2011:No2-A-7.
[12] 谢娟娟,刘新红,钟香崇.Al-Zn复合Al2O3-C材料抗氧化性研究[J].耐火材料,2011(01):6-10.
[13] 李勇,张军杰,李进宝,薛文东,陈俊红,孙加林.用塑性金属工艺制备Al-Al2O3复合无碳滑板[J].硅酸盐学报,2013(03):416-421.
[14] 李勇,张军杰,李进宝,陈俊红,薛文东,孙加林.过渡相Cr2O3对Al-Al2O3复合滑板微观结构及性能的影响[J].硅酸盐学报,2013(06):871-876.
[15] 李亚伟,王廷力,金胜利.碳源对不烧Al2O3-Al-C质滑板强度的影响[J].武汉科技大学学报(自然科学版),2008(06):561-564,594.
[16] Liu Xinhong;Zhong Xiangchong.Thermo-mechanical properties of Al/Si incorporated low carbon Al2 O3-C refractory materials[A].Zhengzhou,China,2012:520-523.
[17] 岳卫东,聂洪波,钟香崇,石凯.金属Al-Si复合不烧铝碳滑板材料的热机械性能及显微结构[J].耐火材料,2006(03):177-180.
[18] 石凯,罗焰,钟香崇.Al和Al-Si加入量对Al2O3-C材料高温性能的影响[J].耐火材料,2007(02):97-100,107.
[19] Khezrabadi MN;Javadpour J;Rezaie HR;Naghizadeh R .The effect of additives on the properties and microstructures of Al2O3-C refractories[J].Journal of Materials Science,2006(10):3027-3032.
[20] 刘新;孙庚辰;石干 .铝炭滑板的高温强度、断裂行为和氧化过程与添加物Al、Si的关系[J].耐火材料,1995,29(02):79-82,87.
[21] 谭利 .不烧滑板若干工艺影响因素研究[D].武汉:武汉科技大学,2010.
[22] 刘新红,叶方保,钟香崇.Al2O3-Si材料埋炭加热过程中性能和显微结构的变化[J].耐火材料,2010(03):175-179.
[23] Liu Xinhong;Ye Fangbao;Zhong Xiangchong.Effects of Si-Al pow-der addition on thermo-mechanical properties of corundum brick[A].北京,2007:187-190.
[24] 岳卫东,石凯,钟香崇.β-Sialon对金属复合不烧铝碳材料高温力学性能的影响[J].钢铁研究,2007(03):4-7.
[25] 岳卫东,钟香崇.不烧Al-Si复合低碳Al2O3-β-SiAlON材料的抗氧化性能[J].耐火材料,2007(02):93-96.
[26] 李喜宝 .铝碳滑板的非氧化物晶须增强[D].武汉科技大学,2007.
[27] Yamaguchi A;Tanaka H .Behaviour and effects of ZrB2 added to C-containing refractories[J].Taikabutsu Overseas,1995,15(04):3.
[28] Ye Fangbao;Rigaud M;Zhong Xiangchong .Effects of boron bearing additives on hot strength of magnesia-carbon refractories[J].J Tech Assoc Refract,2005,25(03):78-88.
[29] 王艳娜,刘新红,钟香崇.ZrB2对Al-Si复合Al2O3-C材料高温力学性能的影响[J].耐火材料,2011(04):257-260.
[30] Karma S. Campos;Guilherme KB. Lenz e Silva;Eduardo H.M. Nunes .The influence of B_4C and MgB_2 additions on the behavior of MgO-C bricks[J].CERAMICS INTERNATIONAL,2012(7):5661-5667.
[31] Liu Xinhong;Wang Yanna;Zhong Xiangchong.Effects of B4C addi-tion on high temperature properties of Al/Si incorporated low carbon Al2 O3-C slide plate materials[A].Victoria,Canada,2013:130.
[32] 左小华,屈媛,谭清平,许波,廖庆玲,高飞.用作耐火材料结合剂改性酚醛树脂的研究[J].化学工程与装备,2010(04):40-42,16.
[33] Wang Jigang;Jiang Nan;Jiang Haiyun .Micro-structural evolution of phenol-formaldehyde resin modified by boron carbide at elevated temperatures[J].Materials Chemistry and Physics,2010,120(01):187-192.
[34] 厉瑞康.耐火材料用酚醛树脂的改性研究[J].纤维复合材料,2006(03):62-65.
[35] 牛智旺,李晖,刘新红,吕培中,尚俊利,王长春,方岩震,王大军.改性树脂对金属复合不烧Al2O3-C滑板性能的影响[J].耐火材料,2013(03):204-206.
[36] 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(05):1011-1015.
[37] 方磊,李亚伟,金胜利,葛山,杨开保,郁书中,马松林,许承凤.硅粉粒度和含量对烧成Al2O3-ZrO2-C材料强度与结构的影响[J].耐火材料,2007(03):183-187.
[38] 方磊 .镁碳和铝锆碳滑板材料研究[D].武汉科技大学,2007.
[39] 易献勋,李亚伟,桑绍柏,童贝,金胜利,樊海兵.铝粉、硅粉加入比例对Al2O3-ZrO2-C材料力学性能的影响[J].耐火材料,2011(03):180-183,190.
[40] 易献勋 .铝锆碳质滑板材料组成、结构与性能研究[D].武汉科技大学,2011.
[41] 候谨,杜艳华,赵文广,宋希文,赵亮,安胜利,孙加林.Mn对含炭耐火材料抗渣侵蚀性的影响[J].耐火材料,2004(01):37-39.
[42] 杜艳华,赵文广,侯谨,安胜利.Mn对铝锆碳耐火材料性能的影响[J].包头钢铁学院学报,2004(01):12-16.
[43] 卫忠贤,栗晶晶,刘新红.氮化烧成铝锆碳滑板的研制和使用[J].耐火材料,2011(01):33-36.
[44] 卫忠贤,韩相明,黄天杰,罗焰,罗德平.金属铝结合镁-尖晶石-碳滑板的研制[J].耐火材料,2007(06):457-459,464.
[45] Guha J P;Smith J D.Reaction chemistry and microstructure devel-opment of MgO-C refractories containing metal antioxidants[A].Pennsylvania,America,2005:201-205.
[46] Uchida S.;Niihara K.;Ichikawa K. .High-temperature properties of unburned MgO-C bricks containing Al and Si powders[J].Journal of the American Ceramic Society,1998(11):2910-2916.
[47] 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,2007(1):73-78.
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