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The role of modifier cations in network cation coordination increases with pressure in aluminosilicate glasses and melts from 1 to 3 GPa

机译:改性剂阳离子在网络阳离子协调中的作用随着硅铝酸盐玻璃的压力而增加,熔化1至3GPa

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Previous studies have shown that both NBO content and modifier cation field strength play important roles in increasing the network cation coordination with increasing pressure. It has been observed in previous studies that the increase in average Al coordination with pressure in alkali aluminosilicates depends on NBO concentration, where large increases in Al coordination with pressure have been observed for compositions containing significant concentrations of NBO and little or no Al coordination increase observed in glasses containing negligible NBO at pressures ranging from 1 to 3 GPa. Similarly, in NBO rich aluminosilicates and aluminoborosilicates containing different modifier cations, it was reported that the increase in average Al coordination followed a steeper rise with increasing pressure in compositions containing higher field strength modifiers. In this study, we look at Ca- and Mg-aluminosilicate glasses across all three compositional regimes (peralkaline, metaluminous, and peraluminous) to study the effect of both oxygen speciation and modifier cation field strength on network cation coordination changes with pressure. Our study shows that in Mg-aluminosilicate glasses (both peralkaline and metaluminous), the increase in average Al coordination can be quite large and show no significant impact from differences in oxygen speciation (NBO content). In contrast, in Ca-aluminosilicate glasses, the oxygen speciation has a notable impact with the average Al coordination following a steeper rise with increasing pressure in a peralkaline composition and less steep for a metaluminous composition.
机译:以前的研究表明,NBO含量和改性剂阳离子领域强度在增加随着压力的增加时,在增加网络阳离子协调时起着重要作用。在先前的研究中观察到,与碱铝硅酸盐的压力的平均Al协调的增加取决于NBO浓度,其中对于含有显着浓度NBO的组合物的组合物而言,已经观察到具有压力的大增加,并且观察到少数或不增加Al协调的组合物在含有1至3GPa的压力范围内的玻璃含有可忽略的NBO。类似地,在NBO富含含有不同改性剂阳离子的NBO富含铝硅酸盐和铝硅酸盐中,据报道,平均Al协调的增加随着含有较高场强改性剂的组合物的增加而较陡峭的压力。在这项研究中,我们在所有三种成分制度(乳碱,金属糖和损失)上看看Ca-和Mg-硅铝酸盐玻璃,以研究氧气样品和改性剂阳离子领域强度对网络阳离子协调变化的影响。我们的研究表明,在Mg-铝硅酸盐眼镜(乳碱和熔融滤乱)中,平均Al协调的增加可能相当大,并且没有显着影响氧气形态(NBO含量)的差异。相反,在Ca-硅硅酸盐玻璃中,氧气形状在较常长的含量下较高的压力下,氧气形式具有显着的影响,并且在乳碱组合物中的压力越来越大,陡峭的金属化组合物的陡峭。

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