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Trace phase formation crystallization kinetics and crystallographic evolution of a lithium disilicate glass probed by synchrotron XRD technique

机译:同步加速器XRD技术探测二硅酸锂玻璃的痕量相形成结晶动力学和晶体学演变

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摘要

X-ray diffraction technique using a laboratory radiation has generally shown limitation in detectability. In this work, we investigated the in situ high-temperature crystallization of a lithium disilicate glass-ceramic in the SiO2–Li2O–CaO–P2O5–ZrO2 system with the aid of synchrotron radiation. The formation of lithium metasilicate and other intermediate phases in trace amount was successfully observed by synchrotron X-ray diffraction (SXRD). The crystallization mechanism in this glass was thus intrinsically revised to be the co-nucleation of lithium metasilicate and disilicate, instead of the nucleation of lithium disilicate only. The phase content, crystallite size and crystallographic evolutions of Li2Si2O5 in the glass-ceramic as a function of annealing temperature were studied by performing Rietveld refinements. It is found that the growth of Li2Si2O5 is constrained by Li2SiO3 phase at 580–700°C. The relationship between the crystallographic evolution and phase transition was discussed, suggesting a common phenomenon of structural response of Li2Si2O5 along its c axis to other silicon-related phases during glass crystallization.
机译:使用实验室辐射的X射线衍射技术通常显示出可检测性的局限性。在这项工作中,我们借助同步加速器辐射研究了SiO2–Li2O–CaO–P2O5–ZrO2系统中二硅酸锂玻璃陶瓷的原位高温结晶。通过同步加速器X射线衍射(SXRD)成功观察到痕量的偏硅酸锂和其他中间相的形成。因此,该玻璃的结晶机理本质上被修改为偏硅酸锂和二硅酸锂的共成核,而不是仅使二硅酸锂成核。通过进行Rietveld精炼研究了玻璃陶瓷中Li2Si2O5的相含量,微晶尺寸和晶体演化与退火温度的关系。发现在580-700°C时,Li2SiO3相限制了Li2Si2O5的生长。讨论了晶体学演变与相变之间的关系,表明在玻璃结晶过程中,Li2Si2O5沿其c轴对其他硅相关相的结构响应的常见现象。

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