论文标题

3y-ZRO 2的直接微波烧结与混合微波烧结的完全耦合的电磁热模拟

Fully coupled electromagnetic-thermal-mechanical comparative simulation of direct vs hybrid microwave sintering of 3Y-ZrO 2

论文作者

Manière, Charles, Zahrah, Tony, Olevsky, Eugene A.

论文摘要

3y-ZRO 2的直接和杂化微波烧结以2.45 GHz的频率进行了相对研究。使用烧结的连续理论,进行了完全耦合的电磁 - 热力学(EMTM)有限元模拟,以预测其微波处理过程中粉末样品的变形。直接和混合加热配置是使用高级传热模拟工具在计算中测试的,包括表面至表面热辐射边界条件和数字比例综合衍生物(PID)调节。开发的建模框架显示了计算结果的良好一致性,并在致密动力学方面与3Y-ZRO 2微波烧结的已知实验数据。结果表明,直接加热构型呈现高度热点效应,导致非遗传致密化,从而导致加工样品的最终形状畸变。与直接加热相比,杂化加热构型可降低热不均匀性以及致密化均质化。由于杂化加热,标本的总致密化是没有样本扭曲的。还表明,样本量的还原对温度和相对密度的空间分布具有稳定作用。

Direct and hybrid microwave sintering of 3Y-ZrO 2 are comparatively studied at frequency of 2.45 GHz. Using the continuum theory of sintering, a fully coupled electromagnetic-thermalmechanical (EMTM) finite element simulation is carried out to predict powder samples deformation during their microwave processing. Direct and hybrid heating configurations are computationally tested using advanced heat transfer simulation tools including the surface to surface thermal radiation boundary conditions and a numeric proportional-integral-derivative (PID) regulation. The developed modeling framework shows a good agreement of the calculation results with the known experimental data on the microwave sintering of 3Y-ZrO 2 in terms of the densification kinetics. It is shown that the direct heating configuration renders highly hot spot effects resulting in non-homogenous densification causing processed specimen's final shape distortions. Compared to the direct heating, the hybrid heating configuration provides a reduction of the thermal inhomogeneity along with a densification homogenization. As a result of the hybrid heating, the total densification of the specimen is attained without specimen distortions. It is also shown that the reduction of the sample size has a stabilization effect on the temperature and relative density spatial distributions.

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