[1] 王一德,唐荻,党宁.国外特殊钢产业的特点及发展趋势[J].钢铁,2013,48(6):1-6. [2] 刘小团.不同造渣条件下钢包渣线砖侵蚀机理[D].西安:西安建筑科技大学,2008. [3] 祁欣.LF钢包渣线用MgO(-Mg2SiO4)-SiC-C耐火材料的应用基础研究[D].鞍山:辽宁科技大学,2023. [4] 杨少锋.大型钢包渣线砖的侵蚀机理[D].武汉:武汉科技大学,2007. [5] 于河,高源,刘吉辉,等.不同碳含量镁碳砖与熔渣间的润湿和侵蚀行为研究[J].冶金能源,2023,42(1):9-13. [6] LIU B,SUN J L,TANG G S,et al.Effects of nanometer carbon black on performance of low-carbon MgO-C composites[J].Journal of Iron and Steel Research,International,2010,17(10):75-78. [7] 张雪松,程瑛,水恒福.镁碳砖用中间相沥青-酚醛树脂结合剂的研制[J].耐火材料,2007,41(4):271-273. [8] LI Y G,WANG J K,DUAN H J,et al.Catalytic preparation of carbon nanotube/SiC whisker bonded low carbon MgO-C refractories and their high-temperature mechanical properties[J].Ceramics International,2022,48(4):5546-5556. [9] 朱天彬.镁碳耐火材料组成、结构与力学性能研究[D].武汉:武汉科技大学,2015. [10] CHEN M,GAO S,XU L,et al.High temperature mechanical and corrosion resistance of Fe-containing MgO-C refractory in oxidizing atmosphere[J].Ceramics International,2019,45(16):21023-21028. [11] LUZ A P,SALOMÃO R,BITENCOURT C S,et al.Thermosetting resins for carbon-containing refractories:Theoretical basis and novel insights[J].Open Ceramics,2020,3:100025. [12] CHENG Y,ZHU T B,LI Y W,et al.Microstructure and properties of MgO-C refractory with different carbon contents[J].Ceramics International,2021,47(2):2538-2546. [13] 陈启龙.含钙镁铝酸盐镁碳耐火材料力学性能与抗热震性研究[D].武汉:武汉科技大学,2022. [14] 杨阳.VOD精炼炉用低碳镁碳砖的制备及其损毁机制研究[D].武汉:武汉科技大学,2021. [15] 吴国文.精炼钢包镁碳砖损毁机理分析和防范措施[J].特钢技术,2024,30(1):46-49. [16] 陈树江,田凤仁,李国华,等.相图分析及应用[M].北京:冶金工业出版社,2007. [17] 朱天彬,李亚伟,桑绍柏.低碳化镁碳耐火材料的研究进展[J].中国材料进展,2020,39(S1):609-617. [18] 徐小峰.转炉出钢口用镁碳质耐火材料断裂行为研究[D].武汉:武汉科技大学,2022. [19] 尹明强,马铮,方斌祥,等.镁砂种类及临界粒度对低碳镁碳砖性能的影响[C]//2015耐火材料综合学术年会(第十三届全国不定形耐火材料学术会议和2015耐火原料学术交流会)论文集(2),青岛,2015:151-154. [20] ZHU T B,LI Y W,SANG S B,et al.Effect of nanocarbon sources on microstructure and mechanical properties of MgO-C refractories[J].Ceramics International,2014,40(3):4333-4340. [21] 方伟,赵雷,于晓燕,等.酚醛树脂在耐火材料中的应用及其研究现状[J].耐火材料,2013,47(4):303-306. [22] MALDHURE A V,WANKHADE A V.In-situ development of carbon nanotubes network and graphitic carbon by catalytic modification of phenolic resin binder in Al2O3-MgO-C refractories[J].Journal of Asian Ceramic Societies,2017,5(3):247-254. [23] 丁建强.铜改性酚醛树脂合成、热解及在镁碳砖中应用研究[D].武汉:武汉科技大学,2017. [24] 周静.酚基精馏釜残轻质混合物热化学转化制镁碳砖用树脂研究[D].天津:天津大学,2021. [25] ZHU T B,LI Y W,SANG S B.Heightening mechanical properties and thermal shock resistance of low-carbon magnesia-graphite refractories through the catalytic formation of nanocarbons and ceramic bonding phases[J].Journal of Alloys and Compounds,2019,783:990-1000. [26] 廖庆玲,李轩科,雷中兴,等.镁碳砖用纳米SiO2改性酚醛树脂的研究[J].化工技术与开发,2009,38(9):15-18. [27] YANG Y,YU J,ZHAO H Z,et al.Cr7C3:A potential antioxidant for low carbon MgO-C refractories[J].Ceramics International,2020,46(12):19743-19751. [28] ZHU T B,LI Y W,SANG S B.Heightening mechanical properties and thermal shock resistance of low-carbon magnesia-graphite refractories through the catalytic formation of nanocarbons and ceramic bonding phases[J].Journal of Alloys and Compounds,2019,783:990-1000. [29] CHEN J F,LI N,HUBÁLKOVÁ J,et al.Elucidating the role of Ti3AlC2 in low carbon MgO-C refractories:Antioxidant or alternative carbon source?[J].Journal of the European Ceramic Society,2018,38(9):3387-3394. [30] 李红霞.双碳背景下耐火材料科技创新的思考[J].耐火材料,2021,55(5):381-384. [31] 姚华柏,姚苏哲,骆昶,等.镁碳砖的研究现状与发展趋势[J].工程科学学报,2018,40(3):253-268. [32] 高陟,马北越.低碳MgO-C耐火材料性能优化研究进展[J].钢铁研究学报,2021,33(5):353-362. [33] 刘波,刘永锋,刘开琪,等.低碳MgO-C材料的抗热震性研究[J].耐火材料,2010,44(2):123-125. [34] 王建栋,祝洪喜,邓承继,等.颗粒级配对低碳镁碳砖性能的影响[J].耐火材料,2018,52(4):273-275+279. [35] WEI G P,ZHU B Q,LI X C,et al.Microstructure and mechanical properties of low-carbon MgO-C refractories bonded by an Fe nanosheet-modified phenol resin[J].Ceramics International,2015,41(1):1553-1566. [36] 罗巍,朱伯铨,李享成,等.MgO-C耐火材料中陶瓷相的原位生成机理及其对材料力学性能的影响[J].稀有金属材料与工程,2015,44(S1):438-441. [37] 华旭军,朱伯铨,李雪冬,等.TiC-C复合粉体的制备及其对低碳镁碳砖抗氧化性能的影响[J].武汉科技大学学报(自然科学版),2007,30(2):145-148. [38] 王晓婷,游杰刚,郑丽君,等.钢包渣线用低碳MgO-C砖的研制[J].冶金能源,2018,37(5):47-49. [39] MA B Y,REN X M,GAO Z,et al.Influence of pre-synthesized Al2O3-SiC composite powder from clay on properties of low-carbon MgO-C refractories[J].Journal of Iron and Steel Research International,2022,29(7):1080-1088. [40] 张丽.洁净钢生产用钢包内衬的改进[J].耐火与石灰,2008,33(2):31-34. [41] 高华,罗明.引入碳纤维对低碳镁碳砖性能的影响[J].耐火材料,2018,52(4):296-299. [42] BAG M,ADAK S,SARKAR R.Study on low carbon containing MgO-C refractory:Use of nano carbon[J].Ceramics International,2012,38(3):2339-2346. [43] 王志强.B4C和Si组合抗氧化剂对低碳镁碳质耐火材料抗氧化性能的影响[J].耐火材料,2008,42(3):161-164. [44] 谢朝晖,陈留刚,翟鹏涛,等.加入ZnO对含Al低碳MgO-C耐火材料抗氧化性的影响[J].耐火材料,2013,47(4):241-244. [45] 王志强,朱伯铨,方斌祥.纳米TiC对低碳MgO-C砖抗氧化性及热导率的影响[J].耐火材料,2008,42(6):409-412. [46] DING D H,CHONG X C,XIAO G Q,et al.Combustion synthesis of B4C/Al2O3/C composite powders and their effects on properties of low carbon MgO-C refractories[J].Ceramics International,2019,45(13):16433-16441. [47] YU C,DONG B,CHEN Y F,et al.Enhanced oxidation resistance of low-carbon MgO-C refractories with ternary carbides:A review[J].Journal of Iron and Steel Research International,2022,29(7):1052-1062. [48] 丁宇东,种小川,丁冬海,等.含碳耐火材料低碳化及性能强化研究进展[J].耐火材料,2024,58(6):543-547+552. [49] 王恩会,陈俊红,侯新梅.钢包工作衬用耐火材料的研究现状及最新进展[J].工程科学学报,2019,41(6):695-708. [50] CHEN Q L,ZHU T B,LI Y W,et al.Enhanced performance of low-carbon MgO-C refractories with nano-sized ZrO2-Al2O3 composite powder[J].Ceramics International,2021,47(14):20178-20186. [51] 朱强,孙勇,于景坤,等.SiC-Al2O3复合粉体的合成以及在低碳镁碳砖中的应用[J].材料与冶金学报,2008,7(2):118-121. [52] DAS R R,NAYAK B B,ADAK S,et al.Influence of nanocrystalline MgAl2O4 spinel addition on the properties of MgO-C refractories[J].Materials and Manufacturing Processes,2012,27(3):242-246. |