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Characterisation and Properties of Lithium Disilicate Glass Ceramics in the SiO2-Li2O-K2O-Al2O3System for Dental Applications

机译:牙科用SiO2-Li2O-K2O-Al2O3体系中二硅酸锂玻璃陶瓷的表征和性能

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This work proposes four different glass formulas derived from the SiO2-Li2O-K2O-Al2O3system to investigate the effect of glass composition on their crystal formations and properties. Glass LD1 was SiO2-Li2O-K2O-Al2O3system with the addition of P2O5and CaF2as nucleating agents. In Glass LD2, a slight amount of MgO was mixed in order to increase the viscosity of the melting glass. Finally, the important factor of Si : Li ratio was increased in Glasses LD3 and LD4 with compositions otherwise the same as LD1 and LD2. The results found that P2O5and CaF2served as a nucleating site for lithium phosphate and fluorapatite to encourage heterogenous nucleation and produce a fine-grained interlocking microstructure of lithium disilicate glass ceramics. MgO content in this system seemed to increase the viscosity of the melting glass and thermal expansion coefficient including the chemical solubility. Increasing the Si : Li ratio in glass compositions resulted in the change of the microstructure of Li2Si2O5crystals.
机译:这项工作提出了从SiO2-Li2O-K2O-Al2O3系统衍生的四种不同的玻璃配方,以研究玻璃组成对其晶体形成和性能的影响。玻璃LD1是SiO2-Li2O-K2O-Al2O3体系,加入了P2O5和CaF2作为成核剂。在玻璃LD2中,为了提高熔融玻璃的粘度,混合了少量的M​​gO。最后,在组成与LD1和LD2相同的玻璃LD3和LD4中,Si:Li比的重要因素增加了。结果发现,P2O5和CaF2充当磷酸锂和氟磷灰石的成核位点,以促进异相成核并产生细粒度的互锁微结构的二硅酸锂玻璃陶瓷。该系统中的MgO含量似乎会增加熔融玻璃的粘度和包括化学溶解度在内的热膨胀系数。玻璃组成中Si:Li比的增加导致Li2Si2O5晶体的微观结构发生变化。

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