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Low scan rate DSC study of the monoclinic-tetragonal transition in zirconia

机译:低扫描速率DSC研究氧化锆的单斜向四方转变

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摘要

The effect of heating and cooling rates on the DSC (differential scanning calorimetry) heat flux peak of the monoclinic-tetragonal transition of zirconia was investigated in the 0.4-20 °C/min scan rate range. While the peak position, shape and area at high to moderate scan rates are consistent with existing literature data, a 'step change' (i.e., a peak-less baseline shift) was observed for the extremely slow heating rate of 0.4 °C/min. As expected, peak profiles in the heating and cooling transitions are markedly different, the peak shape being strongly asymmetrical for the t → m transition, but very closely symmetrical for the m → t transition. As the cooling rate is lowered, the t → m peak is increasingly splitted into multiple components, whose individual properties have been fitted using Gamma distribution functions.
机译:在0.4-20°C / min的扫描速率范围内研究了加热和冷却速率对氧化锆单斜向四方相变的DSC(差示扫描量热法)热通量峰的影响。虽然在高至中等扫描速率下的峰位置,形状和面积与现有文献数据一致,但对于0.4°C / min的极慢加热速率,观察到“阶跃变化”(即无峰的基线漂移) 。如所期望的,加热和冷却转变中的峰轮廓显着不同,峰形状对于t→m转变是非常不对称的,但是对于m→t转变却非常紧密地对称。随着冷却速度的降低,t→m峰逐渐分裂为多个分量,这些分量的单个属性已使用Gamma分布函数进行拟合。

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