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Preparation of Ferroelectric KNbO3 Based Borate Glass System

机译:铁电KNbO3基硼酸盐玻璃体系的制备

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The incorporation method was employed to produce ferroelectric glass ceramics from the K2O-Nb2O5-B2O3 glass system. The nanocrystalline potassium niobate (KNbO3) was first prepared using a simple mixed oxide method, where the B2O3 was initially mixed and then melted to form glass. The successfully produced optically transparent glass was then subjected to a heat treatment schedule for further crystallization at temperatures ranging from 500 to 650 degrees C, which resulted in the precipitation of the KNbO3 phase, together with the K3B2Nb3O12 phase. Scanning electron microscopy (SEM) showed the presence of randomly oriented KNbO3 crystals dispersed in a continuous glass matrix. It was found that the glass ceramics subjected to the heat treatment at temperatures higher than 545 degrees C were opaque, while the lower gave a highly transparent glass ceramics. The crystal size and crystallinity were found to increase with increasing heat treatment temperature, which in turn plays an important role in controlling the properties of the glass ceramics, including physical, optical, and dielectric properties.
机译:掺入方法用于由K2O-Nb2O5-B2O3玻璃体系生产铁电玻璃陶瓷。首先使用简单的混合氧化物方法制备纳米晶铌酸钾(KNbO3),首先将B2O3混合,然后熔融以形成玻璃。然后,将成功生产的光学透明玻璃在500至650摄氏度的温度范围内进行热处理,以进一步结晶,这导致KNbO3相与K3B2Nb3O12相一起析出。扫描电子显微镜(SEM)显示存在分散在连续玻璃基质中的随机取向的KNbO3晶体。发现在高于545℃的温度下进行热处理的玻璃陶瓷是不透明的,而较低的玻璃陶瓷给出了高度透明的玻璃陶瓷。发现晶体尺寸和结晶度随着热处理温度的升高而增加,这继而在控制玻璃陶瓷的性能(包括物理,光学和介电性能)中起重要作用。

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