ALPER A M, MCNALLY R N, RIBBE P H, et al. The system MgO– MgAl2O4 [J]. J Am Ceram Soc, 1962, 45(6): 263–268. [2] HENRIKSIN A F, KINGERY W D. MgO–Al2O3 System [M]// MC HALE A E ed. Phase Equilibria Diagrams. Annual’93, ACS, Ohio, 1993: 13–14. [3] DE AZA A H, PENA P, DE AZA S. Ternary system Al2O3–MgO–CaO:1, primary phase field of crystallization of spinel in the subsystem MgAl2O4–CaAl4O7–CaO–MgO [J]. J Am Ceram Soc, 1999, 82(8): 2193–2203. [4] DE BOER J H. Reactivity of Solids [M]// IAVAC J H ed. London: Elsevier Publishing Company, 1961: 131–137. [5] 程继健. 尖晶石合成的若干规律[J]. 硅酸盐学报, 1962, 1(4): 201– 210. CHENG Jijian. J Chin Ceram Soc (in Chinese), 1962, 1(4): 201–210. [6] SERRY M A, MANDOUR M A, WEISWEILER W. Phase equilibria, microstructure and properties of some MgO–Al2O3 refractories [J]. Br Ceram Trans, 1993, 92(6): 227–232. [7] 叶国田, OPREA G, TROCZYNSKI T. 机械活化氢氧化镁–勃姆石(或三水铝石)混合物合成镁铝尖晶石[J]. 耐火材料, 2008, 42(5): 321–325. YE Guotian. OPREA G, TROCZYNSKI T. Refractories (in Chinese), 2008, 42(5): 321–325. [8] BHADURI S, BHADUR S B. Phase and microstructural evolution of heat treated nanocrystalline powders in Al2O3–MgO binary system [J]. Nanostruct Mater, 1999, 11(4): 469–476. [9] ГАЛКИНА И П, ПОПИЛЬСКИЙ Р Я. Некоторые своиства высо- коогнеупорной керамики в системе MgO–MgAl2O4 [J]. Огнеупоры, 1964, 12: 556–565. [10] ГАЛКИНА И П, ПОПИЛЬСКИЙ Р Я. О Спекаемости фазовом составе и микроструктуре в системе MgO–MgAl2O4 [J]. Огнеупоры, 1965 (6): 33–39. [11] 何捷, 林理彬, 王鹏. γ射线辐照及其后退火MgAl2O4透明陶瓷中缺泊运动行为的研究[J]. 硅酸盐学报, 2002, 30(5): 574–578. HE Jie, LIN Libin, WANG Peng. J Chin Ceram Soc (in Chinese), 2002, 30(5): 574–578. [12] BETTMAN M, PETERS C R. The crystal structure of Na2O?MgO? 5Al2O3 with refrence to Na2O?5Al2O3 and other isotypal compounds [J]. J Phys Chem, 1969, 73(6): 1774–1780. [13] BETTMAN M, TERNER L L. On the structure of Na2O–4MgO– 15Al2O3, a variant of β-alumina [J]. Inorg Chem, 1971, 10(7): 1442– 1446. [14] ALDEN M, THOMAS J O, DAVIES P. The effect of quenching on the Na+ ion distribution in Na+Beta alumina [J]. Solid State Ionics, 1986, 18/19: 694–698. [15] ALDEN M. On the homogeneity range of β″-alumina in the Na2O– MgO–Al2O3 system [J]. Solid State Ionics, 1986, 20(1): 17–23. [16] DE VRIES R C, RATH W L. Critical evaluation of the literature data on beta-alumina and related phases, 1, Phase equilibria and characterization of beta-alumina phase [J]. J Am Ceram Soc, 1969, 52(7): 364– 369. [17] FELSCHE J. The alkali problem in the crystal structure of beta-alumina [J]. Zeitschrift für Kristallographie, 1968: 94–100. [18] THERY J, BRIANCON D. Structure et proprietes des aluminates sodium [J]. Rev Heutes Temper Et Refract, 1964, 1(1): 221–227. [19] WHITER J T, FIAY D J. The preparation and electrical properties of polycrystalline calium-β″-alumina [J]. Solid State Ionics, 1985, 17(1): 1–6. [20] SHI G, ZHANG W, PEI C. Influence of the composition on properties of MA spinel [C]// UNITECER’09, Salvador, 2009: 135–138. [21] FERREIRA E E, BRANDAO P R, GANCALVES G E. Synthetic spinel characterization and its refractory properties [C]// UNITECER’09, Salvador, 2009: 396–400.