Volume and Surface Nucleation of Crystals in Glass Based on Blast-Furnace Slag

G. A. Sycheva
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引用次数: 3

Abstract

Using differential thermal analysis, X-ray phase analysis, electron microscopy, and optical microscopy, the nucleation of crystals in glass obtained by blending metallurgical slag with silicon dioxide has been studied. The type of crystallization (homogeneous or heterogeneous, volume or surface) is revealed for each of nine compositions of synthesized glass. It is shown that the first crystalline phase in a volume crystallizing glass is perovskite (CaO·TiO2); in this phase a nucleation of the main phase occurs: melilite (solid solution of gehlenite 2CaO·Al2O3·SiO2 in akermanite 2CaO·MgO·2SiO2). The fundamental characteristics of homogeneous (for a catalizing phase, perovskite) and heterogeneous (for a catalyzed phase, melilite) of crystallization are determined: the steady state nucleation rate Ist, time of unsteady state nucleation τ, crystal growth rate U, and activation energy of frictional flow. The temperature dependences of Ist, τ, and U are obtained. The kinetics of the crystallization of glass is studied and the rates of the surface crystal growth are determined in the glass of nine compositions. The influence of grinding the particles of the original glass on the sequence of deposition of the crystalline phases was studied. Practical recommendations are presented for the use of blast-furnace slag as a raw material for the synthesis of glass and their further utilization.
基于高炉渣的玻璃中晶体的体积和表面成核
利用差热分析、x射线物相分析、电子显微镜和光学显微镜,研究了冶金渣与二氧化硅混合后玻璃中晶体的成核现象。结晶类型(均相或非均相,体积或表面)揭示了合成玻璃的九种成分中的每一种。结果表明:体积结晶玻璃的第一晶相为钙钛矿(CaO·TiO2);在这一相中,发生了主相的成核:橄榄石(辉长石2CaO·Al2O3·SiO2在橄榄长石2CaO·MgO·2SiO2中的固溶体)。确定了均相结晶(催化相为钙钛矿)和非均相结晶(催化相为钙钛矿)的基本特征:稳态成核速率Ist、非稳态成核时间τ、晶体生长速率U和摩擦流活化能。得到了Ist、τ和U的温度依赖性。研究了玻璃的结晶动力学,测定了九种成分玻璃的表面晶体生长速率。研究了研磨原玻璃颗粒对晶相沉积顺序的影响。对高炉渣作为玻璃合成原料及其进一步利用提出了切实可行的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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