硅酸锂体系玻璃中的晶体生长和成核

G. A. Sycheva
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引用次数: 12

摘要

研究了硅酸锂体系中玻璃的晶体生长和成核过程。研究了xLi2O·(100 - x)SiO2(其中x = 23.4, 26.0, 29.1和33.5 mol% Li2O)的硅酸锂体系最终均质玻璃中的相分离。这些组合物的玻璃已经使用先前建立的特殊温度-时间条件进行均质化,这使得可以提供最大程度的脱水和从玻璃熔体中去除气泡。测定了均质分离相和均质晶形核的成核和长大参数。比较了23.4Li2O·76.6SiO2、26Li2O·74SiO2和29.11 li2o·70.9SiO2三种亚稳相分离玻璃中二硅酸锂晶体的固定成核速率Ist的绝对值与33.51Li2O·66.5SiO2三硅酸锂化学组成玻璃的相应速率Ist的绝对值。发现晶体生长速率随温度的升高有单调增加的趋势,而晶体生长速率对低温热处理时间的依赖表现出振荡行为,振荡绝对值单调减小。比较了在li20 - sio2体系中与在化学计量二硅酸锂体系中组成的玻璃的结晶特性。结果表明,相分离对二硅酸锂的成核参数影响较小,而对晶体生长的影响较大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crystal Growth and Nucleation in Glasses in the Lithium Silicate System
The crystal growth and nucleation in glasses in the lithium silicate system have been investigated. Phase separation in ultimately homogenized glasses of the lithium silicate system xLi2O·(100 ﹣ x)SiO2 (where x = 23.4, 26.0, 29.1, and 33.5 mol% Li2O) has been studied. The glasses of these compositions have been homogenized using the previously established special temperature-time conditions, which make it possible to provide a maximum dehydration and removal of bubbles from the glass melt. The parameters of nucleation and growth of phase separated in homogeneities and homogeneous crystal nucleation have been determined. The absolute values of the stationary nucleation rates Ist of lithium disilicate crystals in the 23.4Li2O·76.6SiO2, 26Li2O·74SiO2 and 29.1Li2O·70.9SiO2 glasses with the compositions lying in the metastable phase separation region have been compared with the corresponding rates Ist for the glass of the stoichiometric lithium disilicate composition 33.51Li2O·66.5SiO2. It has been found that the crystal growth rate has a tendency toward a monotonic increase with an increase in the temperature, whereas the dependences of the crystal growth rate on the time of low temperature heat treatment exhibit an oscillatory behavior with a monotonic decrease in the absolute value of oscillations. The character of crystallization in glasses with the compositions lying in the phase separation region of the Li2O-SiO2 system is compared with that in the glass of the stoichiometric lithium disilicate composition. The conclusion has been made that the phase separation weakly affects the nucleation parameters of the lithium disilicate and has a strong effect on the crystal growth.
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