Institute of Earth Sciences, Academia Sinica, Taipei, Taiwan, ROC.
J Mater Sci Mater Med. 2012 Feb;23(2):245-58. doi: 10.1007/s10856-011-4504-3. Epub 2011 Nov 23.
The evolution of elastic properties and structure upon the change of CaO/P(2)O(5) ratio in SiO(2)-CaO-Na(2)O-P(2)O(5) glasses (45S5-derived and 55S4-derived) at ambient conditions has been studied by using both Brillouin and Raman spectroscopy coupled with X-ray diffraction. Under the same SiO(2)/Na(2)O ratio, it is found that a decrease in CaO/P(2)O(5) molar ratio has caused a more-polymerized silicate network via a net consumption of Q(0), Q(1), and Q(2) species yet enriching in Q(3) and Q(4) species. Brillouin experiments revealed that all the bulk, shear and Young's moduli of the glasses studied increases with the increase of CaO/P(2)O(5) molar ratio. The unexpected variation trend in shear modulus can be correlated to the contribution from cohesion, the less-polymerized phosphate Q species, and density. Compared to the 45S5-derived, the more-polymerized 55S4-deived glass has a lower bulk but slightly higher shear modulus at the given CaO/P(2)O(5) ratio.
在环境条件下,通过使用布里渊和拉曼光谱与 X 射线衍射相结合的方法,研究了 SiO2-CaO-Na2O-P2O5 玻璃(45S5 衍生和 55S4 衍生)中 CaO/P2O5 比变化时弹性性能和结构的演变。在相同的 SiO2/Na2O 比下,发现 CaO/P2O5 摩尔比的降低通过净消耗 Q(0)、Q(1)和 Q(2)物种导致更聚合的硅酸盐网络,同时丰富了 Q(3)和 Q(4)物种。布里渊实验表明,研究的玻璃的所有体、剪切和杨氏模量都随 CaO/P2O5 摩尔比的增加而增加。剪切模量的意外变化趋势可以与内聚、较少聚合的磷酸盐 Q 物种和密度的贡献相关联。与 45S5 衍生相比,给定 CaO/P2O5 比时,更聚合的 55S4 衍生玻璃的体模量较低,但剪切模量略高。