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Автор J M Borrego
Автор C F Conde
Автор A Conde
Автор V A Peña-Rodríguez
Автор J M Greneche
Дата выпуска 2000-09-18
dc.description Mössbauer experiments were performed at room temperature using different experimental configurations on several series of nanocrystalline FeSiBCuNbX alloys (X = Zr, Nb, Mo and V) obtained after annealing treatments of melt-spun ribbons. The refinement of Mössbauer spectra allows the kinetics and the local structural rearrangement mechanisms associated with the nanocrystallization process to be compared. The hyperfine field distributions of the intergranular phase show the emergence of a bimodal behaviour that becomes significantly more pronounced from volumetric crystalline fractions estimated at ~20-25%, regardless of the nature of the substituting element. The hyperfine field distribution can be described by means of two Gaussian components, consistent with of a two-cluster-like model. Such a behaviour can be attributed to the presence of iron-rich and iron-poor zones within the intergranular phase, resulting from the diffusion process. These mechanisms are found to be independent of the nature of X. In addition, strong in-plane magnetic structures are evidenced for Nb-, Mo-, and V-based systems while the magnetic domains tend to be randomly distributed in Zr-based nanocrystalline alloys.
Формат application.pdf
Издатель Institute of Physics Publishing
Название Devitrification process of FeSiBCuBbX nanocrystalline alloys: Mössbauer study of the intergranular phase
Тип paper
DOI 10.1088/0953-8984/12/37/308
Electronic ISSN 1361-648X
Print ISSN 0953-8984
Журнал Journal of Physics: Condensed Matter
Том 12
Первая страница 8089
Последняя страница 8100
Выпуск 37

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