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The structure of model glasses of the amorphous phase of glass-ceramic glazes from the SiO2-Al2O3-CaO-MgO-Na2O-K2O-ZnO system

机译:SiO2-Al2O3-CaO-Na-Na-Na-ZnO系统的玻璃 - 陶瓷玻璃无定形相的模型眼镜的结构

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In this work, particular attention was paid to the structural characteristics of the amorphous phase in glass-ceramic glazes from the SiO2-Al2O3-CaO-MgO-Na2O-K2O-ZnO system. The study was carried out on model glasses whose chemical composition corresponds to the chemical composition of the vitreous phase of the glazes determined on the basis of electron probe micro-analyzer (EMPA). Structural investigations of the obtained model glasses were carried out using the mid-infrared (MIR) and solid-state magic-angle spinning nuclear magnetic resonance (MAS-NMR) spectroscopy. The solid-state MAS-NMR study carried out on Al-27 and Si-29 nuclei showed that all aluminum and silicon ions have tetrahedral coordination and thus form the glass network. The results of the Si-29 solid-state MAS-NMR measurements also showed that with the increase of ZnO content in the glass chemical composition, the number of Q(3) and Q(2) silicon-oxygen units increases at the expense of Q(4) (where n is the number of bridging oxygens), thus indicating an increase in the degree of depolymerization of the alumino-silico-oxygen network of studied of glasses. Analysis of the MIR spectra of the obtained glasses confirmed the conclusions from the solid-state MAS-NMR research, i.e. that Zn2+ ions cause depolymerization of the glass network of glazes. The weakening of the network of glasses resulted in lowering of the transformation and dilatometric softenings temperature. The tests carried out on model glasses allow drawing conclusions about the structure and properties of the vitreous phase of real glazes.
机译:在这项工作中,来自SiO2-Al2O3-CaO-Na 2 O-K 2 O-ZnO系统的玻璃 - 陶瓷釉料中无定形相的结构特征特别注意。该研究在模型眼镜上进行,其化学成分对应于基于电子探针微分析仪(EMPA)确定的玻璃体的玻璃体的化学成分。使用中红外线(MIR)和固态魔术角纺核磁共振(MAS-NMR)光谱进行所获得的模型眼镜的结构研究。在Al-27和Si-29核上进行的固态MAS-NMR研究表明,所有铝和硅离子都具有四面体配位,从而形成玻璃网络。 Si-29固态MAS-NMR测量结果也表明,随着玻璃化学成分中的ZnO含量的增加,Q(3)和Q(2)型硅 - 氧单元的数量以牺牲为代价而增加Q(4)(其中N是桥接氧的数量),从而表明研究了玻璃的铝硅氧网络的解聚度的增加。所获得的眼镜的MIR谱的分析证实从固态MAS-NMR研究,即结论,即Zn2 +的离子原因釉料玻璃网络的解聚。玻璃网络的弱化导致转化和膨胀测量温度降低。在模型眼镜上进行的测试允许得出关于真实玻璃玻璃阶段的结构和性质的结论。

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