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首页> 外文期刊>CERAMICS INTERNATIONAL >Controllable preparation of CaF2 transparent glass ceramics: Dependence of the light transmittance mechanism on the glass crystallization behaviour
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Controllable preparation of CaF2 transparent glass ceramics: Dependence of the light transmittance mechanism on the glass crystallization behaviour

机译:CAF2透明玻璃陶瓷的可控制剂:透光机制对玻璃结晶行为的依赖性

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摘要

Transparent glass ceramics containing CaF2 nanocrystals were synthesized using a conventional melting and heat treatment process. The mechanism associated with the maintenance of the high transparency of the asprepared glass ceramics was further clarified. The maximum light transmittance of the as-obtained transparent glass ceramics was approximately 85%, with microhardness value that reaches 761.62 +/- 7.93 HV. To obtain transparent glass ceramics, in addition to controlling the CaF2 nanocrystal size to be smaller than the wavelength of visible light, the average grain spacing (or concentration) of the CaF2 is also a key factor. CaF2 transparent glass ceramics were prepared following heat-treatment at a temperature between 630 degrees C and 700 degrees C for a period of 1-4 h; herein, the CaF2 grain size was approximately 10-25 nm. The transmission electron microscopy (TEM) results showed that the CaF2 grains were evenly distributed within the glass phase and that the average grain spacing was greater than 5.64 nm. The Raman analysis results indicate that at 730 degrees C, there was a significant increase in the degree of polymerization and an obvious increase in the concentration of CaF2 grains. The average grain spacing was much lower than 5 nm, and therefore, light energy was constantly reflected between the grains and eventually consumed, resulting in the observed opacity.
机译:使用常规的熔融和热处理方法合成含有CaF2纳米晶体的透明玻璃陶瓷。进一步阐明了与维持涂料玻璃陶瓷的高透明度相关的机制。获得的透明玻璃陶瓷的最大透光率约为85%,微硬度值达到761.62 +/- 7.93HV。为了获得透明玻璃陶瓷,除了控制CAF2纳米晶体尺寸小于可见光的波长之外,CAF2的平均晶粒间隔(或浓度)也是一个关键因素。在630℃和700℃的温度下在630℃和700℃的温度下进行1-4小时,制备CAF2透明玻璃陶瓷;这里,CAF2粒度约为10-25nm。透射电子显微镜(TEM)结果表明,CAF2晶粒均匀地分布在玻璃相中,并且平均晶粒间距大于5.64nm。拉曼分析结果表明,在730摄氏度下,聚合程度显着增加,并且CAF2颗粒的浓度显而易见。平均谷物间距远低于5nm,因此,在晶粒之间不断地反映光能并最终消耗,导致观察到的不透明度。

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