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Flash sintering of alumina: Effect of different operating conditions on densification

机译:闪光烧结氧化铝:不同操作条件对致密化的影响

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摘要

Nearly pure alpha-alumina samples produced by uniaxial pressing were flash sintered under electrical fields ranging from 500 V/cm to 1500 V/cm in experiments at constant heating rate. Sintering temperature significantly decreased with the applied E-field even down to approximate to 900 degrees C at 1500 V/cm. The onset temperature for flash sintering can be successfully modelled as a function of the applied voltage. The sintering temperature is also shown to be strongly affected by the electrode materials used during the treatment: using silver or carbon electrodes the sintering temperature is about 300 degrees C lower than when using platinum electrodes. In addition, the bulk density and porosity of the sintered alumina ceramic correlate strongly with the imposed current limit. Power dissipation was analysed before and during flash sintering; the activation energy for conduction was calculated in both cases, indicating that the process is based on ionic diffusion phenomena. Finally, we showed that during flash sintering the activation energy for conduction decreases, suggesting the occurrence of physical or structural modifications induced by current localization at the grain boundaries. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过单轴压制产生的几乎纯的α-氧化铝样品在恒定加热速率下在实验中的电场下烧结在500V / cm至1500V / cm。涂层温度随着施加的电子场显着降低,甚至在1500V / cm处近似到900℃。闪光烧结的起始温度可以成功建模为施加电压的函数。还显示烧结温度受处理期间使用的电极材料的强烈影响:使用银或碳电极的烧结温度约为300℃,比使用铂电极。另外,烧结氧化铝陶瓷的堆积密度和孔隙率与施加的电流极限强烈地相关。在闪光烧结之前和期间分析功率耗散;两种情况下计算用于传导的激活能量,表明该方法基于离子扩散现象。最后,我们表明,在闪蒸烧结期间,用于导通的激活能量减小,表明晶界限下的电流定位诱导的物理或结构修改的发生。 (c)2016 Elsevier Ltd.保留所有权利。

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