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Evolution of a fractal system with conserved order parameter under thermal annealing

机译:热退火条件下具有守序参数的分形系统的演化

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Mesoscopic structural evolution under thermal annealing of yttrium aluminium garnet fractal aggregates has been investigated by small-angle neutron scattering. Fractal dimension remains invariant with sintering temperature but the extent of the fractal realm is narrowed down significantly. A Monte Carlo simulation, based on Ostwald-ripening type of relaxation of fractal aggregates for a mass conserved system, has been attempted in order to understand the aforementioned novel observation. A local group merge sintering model was adopted for the relaxation of the fractal aggregates. Diffusion driven mass transport over local branches of fractal clusters causes smoothening of branches but keeps the overall shape unaltered at lower resolution. Predictions of the model were found to be consistent, in terms of microstructural evolution, with experimental data. The present simulation was also successful in explaining the evolution of the particle size distribution of the aggregate. To the best of our knowledge this is the first reported experimental and theoretical investigation on the effect of annealing temperature on nano-ceramic fractal aggregates.
机译:通过小角度中子散射研究了钇铝石榴石分形聚集体在热退火下的介观结构演化。分形尺寸随烧结温度而不变,但分形域的范围明显缩小。为了理解前述新颖的观察,已经尝试了基于Ostwald-熟化类型的分形聚集体的弛豫的蒙特卡罗模拟,用于质量守恒系统。分形团聚体的松弛采用局部群合并烧结模型。分形簇局部分支上的扩散驱动质量传递导致分支变平滑,但在较低分辨率下保持整体形状不变。在微观结构演变方面,该模型的预测与实验数据一致。本模拟还成功地解释了聚集体的粒度分布的演变。据我们所知,这是首次报道的关于退火温度对纳米陶瓷分形聚集体影响的实验和理论研究。

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