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Calculation of the orientation relationships of directionally solidified eutectic ceramics by a modified Coincidence of Reciprocal Lattice Points model (CRLP)

机译:通过修正的互格点重合模型(CRLP)计算定向凝固共晶陶瓷的取向关系

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摘要

The Coincidence of Reciprocal Lattice Points (CRLP) method was used to predict, according to geometric considerations, the most favorable orientation relationships (ORs) between the component phases in a family of directionally solidified eutectic ceramics (DSEC) (NiO-YSZ, CoO-YSZ, NiO-CeO2, NiO-GDC, CoO-CeO2, and CoO-GDC) grown by the laser floating zone method. The ORs predicted by the CRLP model are consistent with those experimentally found in a previous work by means of Electron Backscatter Diffraction (EBSD). In this article, we also present a modification to the model with the aim of taking into account that the most stable ceramic-ceramic interfaces are usually formed between atomic planes with low Miller indices, due to their higher atomic density and bigger interplanar spacing. Thus, we introduce in the calculation of the overall coincidence volume a weighting factor which is a function of the interplanar spacing. This modified CRLP method has been applied to the aforementioned eutectic ceramics, and the results are presented and discussed in comparison with the traditional CRLP results and the experimental findings.
机译:相互格点重合(CRLP)方法用于根据几何因素预测定向凝固低共熔陶瓷(DSEC)系列(NiO-YSZ,CoO-通过激光浮区法生长的YSZ,NiO-CeO2,NiO-GDC,CoO-CeO2和CoO-GDC)。 CRLP模型预测的OR与先前通过电子背散射衍射(EBSD)进行的实验发现的OR一致。在本文中,我们还对模型进行了修改,目的是考虑到由于其较高的原子密度和较大的晶面间距,通常在具有低Miller指数的原子平面之间形成最稳定的陶瓷-陶瓷界面。因此,我们在总重合体积的计算中引入了加权因子,该因子是平面间距的函数。这种改进的CRLP方法已应用于上述共晶陶瓷,并与传统CRLP结果和实验结果进行了比较,介绍和讨论了结果。

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