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Cr2O3 对含铁辉石微晶玻璃显微结构及强度的影响
作者:陈华1 3 李保卫1 2 赵鸣2 张雪峰3 杜永胜3 
单位:1. 内蒙古工业大学材料科学与工程学院 呼和浩特 010051  2. 内蒙古科技大学内蒙古自治区白云鄂博矿多金属资源综合利用重点实验室 内蒙古 包头 014010  3. 内蒙古科技大学数理与生物工程学院 内蒙古 包头 014010 
关键词:微晶玻璃 三氧化二铬 尖晶石 辉石 显微结构 
分类号:TQ171
出版年,卷(期):页码:2015,43(9):1240-1246
DOI:10.14062/j.issn.0454-5648.2015.09.11
摘要:

 以富铁白云鄂博西尾矿和粉煤灰为主要原料,采用熔融法制备含铁辉石系矿渣微晶玻璃。利用差热分析、X 射线衍射仪、扫描电子显微镜和能谱仪等研究Cr2O3 对含铁辉石系微晶玻璃显微结构和强度的影响。结果表明:MgFe0.9Cr1.1O4 尖晶石作为辉石相生长的异质成核核心,促使辉石晶体优先从尖晶石表面法线方向以枝晶方式生长。随着Cr2O3 含量增加,尖晶石核心数量增多,辉石相生长方式由树枝状演化为颗粒状。添加0.25%Cr2O3 可使微晶玻璃辉石主晶相形成交错咬合的树枝晶,有效提高了微晶玻璃抗折强度,并达到218.84 MPa

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The pyroxene-based slag glass ceramics were fabricated with the iron-rich tailing from Bayan Obo west mine and fly ashby a conventional melting method. The effect of Cr2O3 on the microstructure and strength of this pyroxene-based glass ceramics wasinvestigated by differential thermal analysis, X-ray diffraction, scanning electron microscopy and energy dispersive spectrometry,respectively. The results show that MgFe0.9Cr1.1O4 spinel is the heterogeneous nucleus of augite main crystal phase. Augite dendritegrows preferentially along the normal direction of the spinel surface. The MgFe0.9Cr1.1O4 spinel nuclei increase with the increase ofCr2O3, leading to the formation of augite particles. The sample with interlocked augite dendrite formed at 0.25% Cr2O3 shows theoptimum mechanic property, and the bending strength of the glass ceramic can reach 218.84 MPa.

 

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基金项目:
国家重点基础研究发展计划(2012CB722802);内蒙古自然基金面上项目(2014MS0106)资助。
作者简介:
第一作者:陈 华(1979—),女,博士研究生。E-mail: kidsea@163.com 通信作者:李保卫(1960—),男,博士,教授。E-mail: libaowei_imust@163.com
参考文献:

[1] GOEL A, TULYAGANOV D U, KHARTON V V, et al. Optimizationof La2O3–containing diopside based glass–ceramic sealants for fuelcell applications[J]. J Power Sources, 2009, 189(2): 1032–1043.

[2] ALIZADEH P, MARGHUSSIAN V K. The effect of compositionalchanges on the crystallization behaviour and mechanical properties ofdiopside-wollastonite glass–ceramics in the SiO2–CaO–MgO (Na2O)system[J]. J Eur Ceram Soc, 2000, 20(6): 765–773.

[3] GUO X Z, CAI X B, SONG J, et al. Crystallization and microstructureof CaO–MgO–Al2O3–SiO2 glass–ceramics containing complexnucleation agents[J]. J Non-Cryst Solids, 2014, 405(1): 63–67.

[4] CHOI B K, JANG S W, KIM E S, Dependence of microwave dielectricproperties on crystallization behaviour of CaMgSi2O6glass–ceramics[J]. Mater Res Bull, 2015, 67: 234–238.

[5] RISHNA G M, GANDHI Y, VENKATRAMAIAH N, et al. Features ofthe local structural disorder in Li2O–CaF2–P2O5 glass–ceramics withCr2O3 as nucleating agent[J]. Physica B, 2008, 403(4): 702–710.

[6] KHATER G A, Influence of Cr2O3, LiF, CaF2 and TiO2 nucleants onthe crystallization behavior and microstructure of glass–ceramics basedon blast-furnace slag[J]. Ceram Int, 2011, 37(7): 2193–2199.

[7] BARBIERI L, LEONELLI C, MANFREDINI T, et al. Solubility,reactivity and nucleation effect of Cr2O3 in the CaO–MgO–Al2O3–SiO2glassy system[J]. J Mater Sci, 1994, 29(23): 6273–6280.

[8] REZVANI M, YEKTA B E, HASHJIN M S, et al. Effect of Cr2O3,Fe2O3 and TiO2 nucleants on the crystallization behaviour ofSiO2–Al2O3–CaO–MgO(R2O) glass-ceramics[J]. Ceram Int, 2005,31(1): 75–80.

[9] REZVANI M, YEKTA B E, MARGHUSSIAN V K. Utilization ofDTA in determination of crystallization mechanism inSiO2–Al2O3–CaO–MgO (R2O) glasses in presence of various nuclei[J].J Eur Ceram Soc, 2005, 25(9): 1525–1530.

[10] KARAMANOV A, PISCIELLA P, PELINO M. The effect of Cr2O3 asa nucleating agent in iron–rich glass–ceramics[J]. J Eur Ceram Soc,1999, 19(15): 2641–2645.

[11] MARGHUSSIAN V K, ARJOMANDNIA S. Effect of Cr2O3 onnucleation of SiO2–Al2O3–CaO–MgO–(R2O, Fe2O3, TiO2) glassceramics[J]. Phys Chem Glasses, 1998. 39(4): 246–251.

[12] 李保卫, 王芳, 陈华, . Cr2O3 对白云鄂博西尾矿微晶玻璃显微结构及性能的影响[J]. 人工晶体学报, 2014,43 (03): 642–647.LI Baowei, WANG Fang, CHEN Hua, et al. J Synth Cryst(in Chinese),2014, 43(3): 642–647.

[13] OMAR A A, HAMZAWY E M A, Nanosized cordierite–sapphirine–spinel glass–ceramics from natural raw materials[J]. Ceram Int, 2014,40(4): 5283–5288.

[14] NIYOMPAN A, PHUMAS S, TIPAKONTITIKUL R, et al. Phaseformation, microstructure and electrical properties of micaglass-ceramics containing Cr2O3 produced by heat treatment[J]. CeramInt, 2013, 39(1): S427–S431.

[15] MA M S, NI W, WANG Y, et al. Crystallization behavior and kineticsof TiO2 and Cr2O3 doped glass ceramics produced from nickelresidue[J]. J Chin Chem Soc, 2009, 37(4): 609–615.

[16] MOLLA A R, KESAVULU C R, CHAKRADHAR R P S, et al.Microstructure, mechanical, thermal, EPR, and optical properties ofMgAl2O4:Cr3+ spinel glass–ceramic nanocomposites[J]. J Alloy Compd,2014, 583(15): 498–509.

[17] V´AN P, PAPENFUSS C, MUSCHIK W. Griffith cracks in themesoscopic microcrack theory[J]. J Phys A: 2004, 37(20): 5315–5328.

[18] KARAMANOV A, PELINO M, SALVO M, et al. Sinteredglass–ceramics from incinerator fly ashes. Part II. The influence of theparticle size and heat–treatment on the properties[J]. J Eur Ceram Soc,2003, 23(10): 1609–1615.

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