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以高钛高炉渣和废玻璃粉为主要原料,采用发泡和析晶同步进行的“一步法”制备泡沫微晶玻璃,研究热处理保温时间对泡沫微晶玻璃的组织与性能影响.结果表明:在1000℃下,随保温时间从30 min延长至60 min,泡沫微晶玻璃中主晶相由斜辉石Ca(Ti,Mg,Al)(Si,Al)2O6转变为钙铁辉石CaFe(Si2O6)和普通辉石Ca(Mg,Fe,Al)(Si,Al)2O6,其晶相含量增加且由粒状结构向棒状结构过渡,材料孔径增大,体积密度、导热系数与吸水率逐渐降低,抗压强度升高;保温时间在60 ~ 120 min时晶相不发生明显变化,其含量缓慢增加且逐渐融合呈球状结构,材料出现连通孔,体积密度、导热系数与吸水率逐渐升高,抗压强度下降.综合而言,当保温时间为60 min时,所制得的泡沫微晶玻璃具备最优综合性能.

参考文献

[1] 马明龙 .利用含钛高炉渣制备微晶泡沫玻璃的研究[D].东北大学,2008.
[2] Bo Chen;Zhiwei Luo;Anxian Lu.Preparation of sintered foam glass with high fly ash content[J].Materials Letters,201123/24(23/24):3555-3558.
[3] E. Bernardo;F. Albertini.Glass foams from dismantled cathode ray tubes[J].CERAMICS INTERNATIONAL,20066(6):603-608.
[4] Ding, Linfeng;Ning, Wei;Wang, Qingwei;Shi, Dongni;Luo, Lida.Preparation and characterization of glass-ceramic foams from blast furnace slag and waste glass[J].Materials Letters,2015Feb.15(Feb.15):327-329.
[5] 于岩;阮玉忠.根据X射线图谱确定硅微粉的析晶度的研究[J].陶瓷学报,2004(1):52-54.
[6] Lebullenger, R.;Chenu, S.;Rocherullé, J.;Merdrignac-Conanec, O.;Cheviré, F.;Tessier, F.;Bouzaza, A.;Brosillon, S..Glass foams for environmental applications[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,201044/49(44/49):2562-2568.
[7] 芦玉峰;堵永国;肖加余;张传禹;张为军;银锐明.XRD法测定微晶玻璃晶相含量[J].硅酸盐学报,2005(12):1488-1493.
[8] 牛新会;王艺慈;焦艳虎;李伯辰;罗果萍.高炉渣微晶玻璃的析晶热力学分析[J].材料热处理学报,2015(1):6-10.
[9] 姚树玉;霍文龙;裴中爱;韩野;张伟伟.BaO含量对粉煤灰制备硅灰石微晶玻璃的影响[J].材料热处理学报,2014(1):22-27.
[10] Yuan, K.;Wang, F.;Gao, J.;Sun, X.;Deng, Z.;Wang, H.;Chen, J..Effect of sintering time on the microstructure, flexural strength and translucency of lithium disilicate glass-ceramics[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2013:7-13.
[11] Guazzato M.;Albakry M.;Quach L.;Swain MV..Influence of grinding, sandblasting, polishing and heat treatment on the flexural strength of a glass-infiltrated alumina-reinforced dental ceramic[J].Biomaterials,200411(11):2153-2160.
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