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Amorphous-to-crystalline transformation induced by thermal annealing of a metastable Al90Fe10 composite

机译:亚稳态Al90Fe10复合材料的热退火引起的非晶-晶体转变

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Crystallization from the amorphous state to metastable crystalline Al6Fe was induced by thermal annealing of mechanically alloyed Al90Fe10 composite powders (where the composition is given in atomic per cent), which consisted of fcc Al nanocrystals in an amorphous matrix. The microstructural evolution and the transformation kinetics were characterized in detail. A thermodynamic analysis of the transformation was given, showing the nature of the polymorphous crystallization in the amorphous composite. The influence of the pre-existing crystals on crystallization was not morphologically distinctive. The observed linear kinetics law behaviour in combination with an Avrami exponent value of 2.7 +/- 0.1 suggest that the growth of a fixed nuclei population at a constant rate in three dimensions governs crystallization. The activation energy for crystallization was found to be close to the activation energy for the diffusion of Fe atoms in Al. [References: 28]
机译:通过对机械合金化的Al90Fe10复合粉末(其中组成以原子百分比给出)进行热退火,可以诱导从非晶态到亚稳态结晶Al6Fe的结晶,该粉末由非晶态基质中的fcc Al纳米晶体组成。详细描述了组织演变和转变动力学。给出了转变的热力学分析,显示了非晶复合物中多晶结晶的性质。预先存在的晶体对结晶的影响在形态上并不明显。观察到的线性动力学定律行为与Avrami指数值为2.7 +/- 0.1的组合表明,固定核种群在三个维度上以恒定速率的增长决定了结晶。发现用于结晶的活化能接近用于在铝中扩散Fe原子的活化能。 [参考:28]

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