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首页> 外文期刊>Journal of the European Ceramic Society >Crystallization kinetics of Al2O3-26molY2O3 glass and full crystallized transparent Y3Al5O12-based nanoceramic
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Crystallization kinetics of Al2O3-26molY2O3 glass and full crystallized transparent Y3Al5O12-based nanoceramic

机译:Al2O3-26molY2O3玻璃和全结晶透明Y3Al5O12基纳米陶瓷的结晶动力学

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摘要

Transparent Y3Al5O12-based polycrystalline ceramics with excessive Al2O3 composition (Al2O3-26 molY2O3, AY26) have been demonstrated as potential host materials for phosphor applications. However, the crystallization mechanism of AY26 glass has not been thoroughly investigated so far. In this work, the non-isothermal crystallization kinetics of AY26 glass was experimentally analyzed. The AY26 glass depicts high activation energy and crystallization mechanism of volume nucleation followed by three-dimensional crystal growth mode. Based on the analysis, a novel highly transparent YAG-Al2O3 nanoceramic material was elaborated at lower temperature of 963 degrees C by using pressureless glass crystallization. The biphase nanoceramic is characterized by the structure of YAG nanocrystals surrounded with homogeneous thin Al2O3 layers. It is extremely transparent from visible to mid-infrared region, particularly the transmittance can reach the theoretical limit of YAG transparent ceramic in NIR and MIR regions. Besides, it has almost same hardness of 21 GPa with YAG single crystal and YAG transparent ceramic.
机译:Al2O3成分过量(Al2O3-26 mol%Y2O3,AY26)的透明Y3Al5O12基多晶陶瓷已被证明是荧光粉应用的潜在主体材料。然而,AY26玻璃的结晶机理至今尚未得到彻底的研究。本文通过实验分析了AY26玻璃的非等温结晶动力学。AY26玻璃描绘了高活化能和体积成核的结晶机理,然后是三维晶体生长模式。在此基础上,采用无压玻璃结晶技术,在963°C的较低温度下制备了一种新型高透明YAG-Al2O3纳米陶瓷材料。双相纳米陶瓷的特征是YAG纳米晶体的结构被均匀的薄Al2O3层包围。从可见光到中红外区域都非常透明,特别是在近红外和MIR区域的透射率可以达到YAG透明陶瓷的理论极限。此外,它的硬度几乎与YAG单晶和YAG透明陶瓷相同,为21 GPa。

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