首页> 外文学位 >NUCLEATION AND RELATED PHENOMENA IN LITHIUM DISILICATE GLASS (CRYSTALLIZATION, RAMAN SPECTROSCOPY, NCA, VISCOSITY, PHASE DIAGRAM).
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NUCLEATION AND RELATED PHENOMENA IN LITHIUM DISILICATE GLASS (CRYSTALLIZATION, RAMAN SPECTROSCOPY, NCA, VISCOSITY, PHASE DIAGRAM).

机译:二硅酸锂玻璃的成核作用及相关现象(结晶,拉曼光谱,NCA,粘度,相图)。

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A systematic study was conducted concerning the nucleation process in lithium disilicate glass. Changes in the structure of the glass with nucleation heat treatment were studied by Raman spectroscopy. The Raman spectra of the glass were analysed based on the assignment of bands in the Raman spectrum of lithium disilicate crystal. The band assignments were determined by Normal Coordinate Analysis of the vibrational spectra of Li(,2)Si(,2)O(,5) crystal with isotopic substitution of ('7)Li and ('6)Li. The analysis of the Raman spectra of the nucleated glasses show an increase in the number of SiO(,4) units with 2 nonbridging oxygens during the initial stages of nucleation. The accuracy of the reported free energy differences between lithium disilicate crystal and glass were checked and found to be consistent with the rest of the thermodynamic and phase data for the Li(,2)O-SiO(,2) system. Rate of nucleation which was calculated with the assumptions that Li(,2)O.SiO(,2) is the mobile unit and that interfacial free energy is temperature dependent, gave the closest fit to the observed rate of nucleation. A mechanism for nucleation in lithium disilicate glass was proposed with the assumption that lithium-rich regions in the glass act as sites for nucleation. Nucleation was found to be homogeneous, and the rate of nucleation reported earlier in the literature was consistent with the results of this study. The viscosity and electrical conductivity of glasses in the Li(,2)O-SiO(,2) system were measured.
机译:对二硅酸锂玻璃的成核过程进行了系统的研究。通过拉曼光谱研究了通过成核热处理的玻璃结构的变化。基于二硅酸锂晶体的拉曼光谱中的能带分配,分析了玻璃的拉曼光谱。通过对('7)Li和('6)Li进行同位素取代的Li(,2)Si(,2)O(,5)晶体的振动光谱进行正坐标分析来确定能带分配。对有核玻璃的拉曼光谱的分析表明,在成核的初始阶段,带有2个非桥联氧的SiO(,4)单元数量增加。检查了所报告的二硅酸锂晶体和玻璃之间的自由能差的准确性,发现该准确性与Li(,2)O-SiO(,2)系统的其余热力学和相数据一致。以Li(,2)O.SiO(,2)为移动单元且界面自由能与温度有关的假设计算出的成核速率与观察到的成核速率最接近。提出了在二硅酸锂玻璃中成核的机理,其假设是玻璃中的富锂区域起成核作用。发现成核是均匀的,并且文献中较早报道的成核速率与该研究的结果一致。测量了Li(,2)O-SiO(,2)系统中玻璃的粘度和电导率。

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