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Application of Master Sintering Curve Theory to Predict and Control the Sintering of Nanocrystalline TiO_2 Ceramic

机译:母烧结曲线理论在纳米晶体TiO_2陶瓷预测和控制烧结中的应用

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Master sintering curve (MSC), in which the sintered density is a unique function of the integral of a temperature function over time, is insensitive to the heating path. In this paper, the densification of rutile TiO_2 was continuously recorded at heating rates of 2 °C/min and 5 °C/min, respectively, by dilatometer. The MSC for rutile TiO_2 was constructed for pressureless sintering using constant heating rate date based on the combined-stage sintering model. The construction and application of the MSC were described in detail for different thermal histories. The MSC can be used to predict and control the densification, final density, and microstructure evolution during the whole sintering. The final density can be predicted for an arbitrary temperature-time path. A good consistence exists between the predicted and experimental densification curve, confirming that it is possible to accurately predict and control the sintering behavior of TiO_2 from the initial to final stage of sintering using MSC.
机译:主烧结曲线(MSC),其中烧结密度随着时间的推移而是温度功能的整体的独特功能,对加热路径不敏感。在本文中,通过膨胀计分别以2℃/ min和5℃/ min的加热速率连续记录金红石TiO_2的致密化。金属丝石TiO_2的MSC用于使用基于组合阶段烧结模型的恒定加热速率日期的无压烧结。对于不同的热历史,详细描述了MSC的构建和应用。 MSC可用于预测和控制整个烧结过程中的致密化,最终密度和微观结构演化。可以预测任意温度时间路径的最终密度。在预测和实验性致密化曲线之间存在良好的一致性,确认可以使用MSC准确地预测和控制TiO_2的烧结行为,以使用MSC烧结的最终阶段。

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