论文标题

超高温度陶瓷的热弹性特性的高通量筛选

High-throughput screening of the thermoelastic properties of ultra-high temperature ceramics

论文作者

Nath, Pinku, Plata, Jose J., Santana, Julia, Blancas, Ernesto J., Márquez, Antonio M., Sanz, Javier Fdez.

论文摘要

超高温度陶瓷,UHTC是一组具有高技术兴趣的材料,因为它们在极端环境中使用。但是,它们在高温下的特征是其快速发展的主要障碍。从实验的角度发现了障碍,世界各地只有少数实验室在极端条件下以及从理论的角度来测试这些材料的资源,而实际方法非常昂贵。在这里,引入了一个新的理论高通量框架,用于预测材料的热弹性特性。该方法可以系统地应用于任何类型的晶体材料,从而大大降低了先前方法的计算成本。已经在广泛的温度下计算了UHTC的弹性常数,并且与实验报告的值非常吻合。此外,还探索了其他机械性能,例如散装模量,剪切模量或泊松评分。其他具有相似计算成本的框架仅用于预测各向同性或平均属性,但是这种新方法以非常低的计算成本为计算各向异性属性打开了大门。

Ultra-high temperature ceramics, UHTCs, are a group of materials with high technological interest because their use in extreme environments. However, their characterization at high temperatures represents the main obstacle for their fast development. Obstacles are found from a experimental point of view, where only few laboratories around the world have the resources to test these materials under extreme conditions, and also from a theoretical point of view, where actual methods are extremely expensive. Here, a new theoretical high-throughput framework for the prediction of the thermoelastic properties of materials is introduced. This approach can be systematically applied to any kind of crystalline material, drastically reducing the computational cost of previous methodologies. Elastic constants for UHTCs have been calculated at a wide range of temperatures with excellent agreement with experimentally reported values. Moreover, other mechanical properties such a bulk modulus, shear modulus or Poisson ration have been also explored. Other frameworks with similar computational cost have been used only for predicting isotropic or averaged properties, however this new approach opens the door to the calculation of anisotropic properties at a very low computational cost.

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