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A new strengthening theory for improving the fracture strength of lithium disilicate glass-ceramics by introducing Rb or Cs ions

机译:通过引入RB或CS离子来提高锂大胆玻璃陶瓷骨折强度的新强化理论

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摘要

The lithium disilicate (LD) glass-ceramics with the SiO2-Li2O-R2O-Al2O3-P2O5-CeO2 system were prepared by adding R2O (R = K, Rb, Cs) as modifier. The effects of R2O addition on the crystallization behavior, microstructure and fracture strength of the LD glass-ceramics were investigated by differential thermal analysis (DTA), X-ray diffraction (XRD) and scanning electron microscopy (SEM) etc. The results indicate that the fracture strength of LD glass-ceramics could be improved greatly by introducing Rb2O or Cs2O instead of K2O, therein, introducing Rb2O instead of K2O improved the fracture strength by 26% and Cs2O substituting K2O improved the fracture strength by 37%. The crystallization activation energy of different crystal phase was calculated. It was found that the lower the crystallization activation energy of lithium disilicate is, the higher the fracture strength of LD glass-ceramic achieves. Based on the results, a new chemical strengthening theory of LD glass-ceramic has been proposed, which is of great significance for developing ID dental restorative materials and other functional glasses.
机译:用SiO2-Li 2 O-R2O-Al 2 O 3-P2O5-CeO2系统的锂峰锂(LD)玻璃陶瓷通过添加R2O(R = K,RB,CS)作为改性剂来制备。通过差分热分析(DTA),X射线衍射(XRD)和扫描电子显微镜(SEM)研究R2O添加对LD玻璃 - 陶瓷的结晶行为,微观结构和断裂强度的影响,结果表明了通过引入RB2O或CS2O代替K2O,可以大大提高LD玻璃陶瓷的断裂强度,其中引入RB2O代替K2O,而不是K2O,将裂缝强度提高26%,CS2O取代K2O将断裂强度提高37%。计算不同晶相的结晶活化能。结果发现,锂末端的结晶活化能量越低,LD玻璃陶瓷达到的骨折强度越高。基于结果,提出了一种新的LD玻璃陶瓷化学强化理论,对开发ID牙科修复材料和其他功能眼镜具有重要意义。

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