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Infiuence of La doping on the apparent activation energy of α-AI_2O_3 during the densification process at constant heating-rate

机译:La掺杂在恒定加热率下致密化过程中α-AI_2O_3表观活化能的影响

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The apparent activation energy for densification is a characteristic quantity that elucidates the fundamental diffusion mechanisms during the sintering process. Based on the Arrhenius theory, the activation energy for densification of the pure and La doped α-AI_2O_3 at constant heating-rates sintering has been estimated. Sintering of α-AI_2O_3 and La doped powder has been executed by the way of a push rod type dilatometer. It was shown that the shrinkage and the relative density of the samples decreased with increasing heating rates. At the same sintering condition, the shrinkage of the pure α-AI_2O_3 was higher than that of the La doped. According to the calculation, it was found that the apparent activation energy had a single value and did not depend on the relative density for both samples. The apparent activation energy of the pure α-AI_2O_3 was 374.3kJ/mol, which was lower than that of La doped (966.5kJ/mol). So the densification process for α-AI_2O_3 was retarded due to La doping, which was consistent with experimental results of the shrinkage.
机译:用于致密化的表观激活能量是在烧结过程中阐明基本扩散机制的特征量。基于Arrhenius理论,估计了恒温速率烧结处的纯和LA掺杂α-AI_2O_3的致密化的激活能。 α-AI_2O_3和LA掺杂粉末的烧结已经通过推杆型膨胀仪执行。结果表明,随着加热速率的增加,样品的收缩和相对密度降低。在相同的烧结条件下,纯α-AI_2O_3的收缩高于LA掺杂的收缩。根据计算,发现表观激活能量具有单个值,并且不依赖于两个样品的相对密度。纯α-Ai_2O_3的表观活化能量为374.3KJ / mol,低于La掺杂(966.5kJ / mol)的溶液。因此,由于La掺杂,α-Ai_2O_3的致密化方法延迟,这与收缩的实验结果一致。

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