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鈣硅氧化物的質量比對10%Al2O3高爐渣—尾礦—粉煤灰微晶玻璃性能的影響

Effect of CaO/SiO_2 mass ratio on the properties of glass ceramics containing 10% Al2O3 from blast furnace slag,tailing and coal fly ash

  • 摘要: 利用高爐渣、尾礦和粉煤灰各自成分特點,在未添加任何晶核劑和其他化學試劑條件下,使用燒結法制得了不同CaO/SiO2質量比的10%Al2O3(質量分數)礦渣微晶玻璃.通過差熱分析、X射線衍射、掃描電子顯微鏡等分析手段,分析了CaO/SiO2質量比和析晶溫度對高爐渣-尾礦-粉煤灰微晶玻璃樣品的晶相變化規律、析晶行為和主要力學性能的影響.隨著CaO/SiO2質量比增大,析晶活化能不斷減小,Si-O四面體連接強度下降,質點移動加強,各組開始析晶溫度和晶化溫度逐漸減小.當玻璃樣品中鈣硅氧化物的質量比為0.4時,分別在886℃和982℃形核、析晶保溫1 h后,可以得到抗折強度103.59 MPa、顯微硬度5.3 GPa、耐酸性0.25%(質量損失率)、耐堿性小于0.1%,主晶相為透輝石的最佳力學性能的微晶玻璃樣品.

     

    Abstract: Blast furnace slag, tailing and coal fly ash were used as starting materials for preparing glass-ceramics by the sintering method based on their characteristics and without adding any other nucleating and chemical agents. The effects of CaO/SiO2 mass ratio and crystallization temperature on the crystaltransition, crystallization behavior and main mechanical properties of slag glass-ceramics with 10% Al2O3were systematically investigated by differential thermal analysis, X-ray diffraction and scanning electron microscopy. When the CaO/SiO2 mass ratio increases, the crystallization activation energy decreases, the Si-O tetrahedral bonding strength decreases, the particle movement strengthens, and the crystallization onset temperature and the crystallization temperature decrease. The glass samples with a CaO/SiO2 mass ratio of 0.4, sintered at 886℃ for 1 h as a nucleation process and at 982℃ for 1 h as a crystalli-zation process, possess the best performance with the bending strength of 103.59 MPa, the microhardness of 5.3 GPa and the acid and alkali resistances of 0.25% and 〈 0.1% (mass loss rate) respectively. Moreover, the major phase of the glass ceramics is diopside.

     

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