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Effect of Annealing on the Structure and Phase Transformation in ZrO_2-MgO Ceramic Powders

机译:退火对ZrO_2-MgO陶瓷粉末结构和相变的影响

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The structure and phase composition of ZrO_2-MgO powders with the MgO content from 9 to 43 mol % obtained by the plasma chemical method after annealing at 700-1400℃ are studied. Differential scanning calorimetry and powder thermogravimetric analysis are carried out. It is found that, in the course of heating, the mass loss and the endothermic reactions energy increase with the increase in the MgO content. In the initial state, the powders containing more than 25 mol % of MgO are supersaturated solid solutions of cubic ZrO_2. Water desorption processes and decomposition of residual nitrates are observed in powders up to 420℃. The endothermic peak at high temperatures is due to the dehydration process and decomposition of the cubic ZrO_2 solid solution.
机译:研究了在700-1400℃退火后,通过等离子体化学方法得到的MgO含量为9〜43 mol%的ZrO_2-MgO粉末的结构和相组成。进行差示扫描量热法和粉末热重分析。发现在加热过程中,质量损失和吸热反应能量随MgO含量的增加而增加。在初始状态下,含有超过25 mol%MgO的粉末是立方ZrO_2的过饱和固溶体。在高达420℃的粉末中观察到水的解吸过程和残留硝酸盐的分解。高温下的吸热峰是由于脱水过程和立方ZrO_2固溶体的分解所致。

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