首页> 外文期刊>Journal of Materials Science >MICROSTRUCTURAL EVOLUTION OF POTASSIUM TITANATE WHISKERS DURING THE SYNTHESIS BY THE CALCINATION AND SLOW-COOLING METHOD
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MICROSTRUCTURAL EVOLUTION OF POTASSIUM TITANATE WHISKERS DURING THE SYNTHESIS BY THE CALCINATION AND SLOW-COOLING METHOD

机译:煅烧-慢冷法合成钛酸钾晶须的微观结构演变

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K2Ti6O13 whisker was synthesized by the calcination and slow-cooling method, and the microstructural evolution of whiskers, and the relations between the phase and the layer structure, were investigated. The amount of K2O in the starting powder mixture played a key role in forming a layer structure, which can be obtained by addition of excess K2O. During calcination, rod-like K2Ti6O13 particles with a layer structure were formed by reactions between K2O and TiO2. During slow-cooling, the K2O-rich liquid phase reacted with K2Ti6O13 layers near the boundary and K2Ti4O9 whiskers were produced by the splitting of layers within rod-like K2Ti6O13 particles. K2Ti4O9 whiskers were reformed into K2Ti6O13 whiskers by treatment in boiling water and reheating. The synthesized K2Ti6O13 whiskers had a clean surface and a length exceeding 100 mu m. [References: 26]
机译:通过煅烧和慢冷法合成了K2Ti6O13晶须,研究了晶须的组织演变以及相与层结构之间的关系。起始粉末混合物中K2O的量在形成层结构中起关键作用,这可以通过添加过量的K2O获得。在煅烧期间,通过K 2 O和TiO 2之间的反应形成具有层状结构的棒状K 2 Ti 6 O 13颗粒。在缓慢冷却过程中,富K2O液相与边界附近的K2Ti6O13层反应,并且通过在棒状K2Ti6O13颗粒内分层而产生K2Ti4O9晶须。通过在沸水中处理并再加热,将K2Ti4O9晶须重整为K2Ti6O13晶须。合成的K2Ti6O13晶须表面清洁,长度超过100微米。 [参考:26]

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