首页> 外文期刊>Journal of Physics. Condensed Matter >Smoothening of the non-Euclidean surface of Nd2O3 doped CeO2 nanoceramic grains under sintering: an ultra-small angle x-ray scattering investigation and a computer simulation study
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Smoothening of the non-Euclidean surface of Nd2O3 doped CeO2 nanoceramic grains under sintering: an ultra-small angle x-ray scattering investigation and a computer simulation study

机译:烧结条件下Nd2O3掺杂的CeO2纳米陶瓷晶粒非欧氏表面的光滑化:超小角度X射线散射研究和计算机模拟研究

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摘要

Smoothing of the fractal rough surface of Nd2O3 doped CeO2 ceramic under sintering has been observed in an ultra-small angle x-ray scattering investigation. The surface fractal dimension of 2.6 for the non-sintered specimen reduces with sintering temperature and gradually attains a value of 2.0, which corresponds to a smooth surface, at a high enough sintering temperature. A Monte Carlo based computer simulation has been attempted to explain the smoothing of such a fractally rough surface due to the diffusion based surface transport of the materials from a region of positive curvature to one of negative curvature. The variation of the interface width and the evolution of the fractal dimension with sintering have been estimated from this model simulation.
机译:在超小角度X射线散射研究中已观察到Nd2O3掺杂的CeO2陶瓷在烧结下的分形粗糙表面的光滑度。未烧结样品的表面分形维数为2.6,随烧结温度的升高而减小,并在足够高的烧结温度下逐渐达到2.0的值,该值对应于光滑的表面。已经尝试了基于蒙特卡洛的计算机模拟来解释这种分形粗糙表面的平滑,这是由于材料从正曲率区域到负曲率之一的基于扩散的表面传输所致。通过此模型仿真,可以估算出界面宽度的变化和分形维数随烧结的变化。

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