[1] 吴晟,侯庆冬,罗旭东,等.菱镁矿除钙提纯技术及镁钙基耐火材料开发应用的研究进展[J].钢铁研究学报,2024,36(10):1290-1297. [2] 祁欣,罗旭东,李振,等.高硅菱镁矿的选矿提纯与应用研究进展[J].硅酸盐通报,2021,40(2):485-492. [3] 蓝海洋.辽南地区菱镁矿资源潜力评价及开发利用现状[J].矿产保护与利用,2016,36(1):24-29. [4] 韦锦涛,罗益欣,杨博林,等.La2O3对MgO-Mg2SiO4质耐火材料力学性能及抗渣侵蚀性的影响[J].耐火材料,2025,59(2):111-117. [5] 邢一丹,刘星立,黄亮,等.不同碱性耐火材料的抗渣性研究进展[J].耐火材料,2024,58(6):527-535. [6] 赵嘉亮,彭子钧,罗旭东.Al2TiO5添加量对MgO-Al2TiO5复合陶瓷烧结及抗热震性的影响[J].耐火材料,2020,54(2):121-125. [7] 杨忠德,林鑫,王少阳,等.镁质耐火材料用结合剂的应用进展[J].耐火材料,2023,57(2):180-184. [8] 戴晨晨,聂波华,张万普,等.天然菱镁矿对转炉环保型水基镁质修补料性能的影响[J].耐火材料,2022,56(6):530-534. [9] ZHAO J L,HAO X,WANG S Y,et al.Sintering behavior and thermal shock resistance of aluminum titanate (Al2TiO5)-toughened MgO-based ceramics[J].Ceramics International,2021,47(19):26643-26650. [10] CUI Y,QU D L,LUO X D,et al.Effect of La2O3 addition on the microstructural evolution and thermomechanical property of sintered low-grade magnesite[J].Ceramics International,2021,47(3):3136-3141. [11] PAGONA Ε,KALAITZIDOU K,ZOUBOULIS A,et al.Effects of additives on the physical properties of magnesite ore mining by-products for the production of refractories[J].Minerals Engineering,2021,174:107247. [12] 任隆宇,崔妍,曲殿利,等.添加Y2O3对CaO-MgO-SiO2体系中CMS的影响[J].耐火材料,2023,57(1):41-44. [13] WU S,HOU Q D,YU J Y,et al.Sintering behavior and thermal shock resistance of MgO-Mg2SiO4 refractories by Co-doped silica fume and quicklime[J].Ceramics International,2024,50(24):56060-56069. [14] KARHU M,LAGERBOM J,HONKANEN M,et al.Mining tailings as a raw material for glass-bonded thermally sprayed ceramic coatings:Microstructure and properties[J].Journal of the European Ceramic Society,2020,40(12):4111-4121. [15] DING X F,ZHAO H Z,XIANG Z D,et al.Effect of hercynite content on the properties of magnesia-spinel composite refractories sintered in different atmospheres[J].Ceramics International,2016,42(16):19058-19062. [16] 孙义海,张玉峰,郭景坤.添加剂对3Y-TZP材料烧结行为及力学性能的影响[J].硅酸盐学报,2002,30(5):569-573. [17] LAMPROPOULOU P G,KATAGAS C G,PAPAMANTELLOS D C.Composition of periclase and calcium-silicate phases in magnesia refractories derived from natural microcrystalline magnesite[J].Journal of the American Ceramic Society,2005,88(6):1568-1574. [18] 董浩然,聂建华,梁永和,等.烧成温度对菱镁矿尾矿合成镁橄榄石性能的影响[J].硅酸盐通报,2023,42(6):2054-2061. [19] ZHAO J L,FENG D,FAN B B,et al.High-temperature mechanical behavior and thermal shock resistance of eco-friendly periclase-Mg1.08Al1.84Ti0.08O4 spinel refractories used in RH degassing process[J].Journal of the European Ceramic Society,2024,44(4):2638-2650. [20] 冯雨,高永军,罗旭东,等.不同品位菱镁矿合成镁锆复相材料性能的研究[J].矿产保护与利用,2023,43(2):154-161. [21] 林育炼,刘盛秋.耐火材料与能源[M].北京:冶金工业出版社,1993:152-163. [22] 王维邦.耐火材料工艺学[M].北京:冶金工业出版社,2006:78-84. [23] PAPITHA R,SURESH M B,DAS D,et al.Mineral-oxide-doped aluminum titanate ceramics with improved thermomechanical properties[J].Journal of Ceramics,2013,2013(1):214974. [24] TANG H M,PENG Z W,GU F Q,et al.Chromium-promoted preparation of forsterite refractory materials from ferronickel slag by microwave sintering[J].Ceramics International,2021,47(8):10809-10818. |