Intermixing of Fe and Cu on the atomic scale by high-pressure torsion as revealed by DC-and AC-SQUID susceptometry and atom probe tomography
Résumé
High-pressure torsion Spin glass Three dimensional atom probe (3DAP) Nanocrystalline materials a b s t r a c t The capability of high-pressure torsion on the preparation of supersaturated solid solutions, consisting of Cu-14Fe (wt.%), is studied. From microstructural investigations a steady state is obtained with nanocrys-talline grains. The as-deformed state is analyzed with atom probe tomography, revealing an enhanced solubility and the presence of Fe-rich particles. The DC-hysteresis loop shows suppressed long range interactions in the as-deformed state and evolves towards a typical bulk hysteresis loop when annealed at 500 • C. AC-susceptometry measurements of the as-deformed state reveal the presence of a superparam-agnetic blocking peak, as well as a magnetic frustrated phase, whereas the transition of the latter follows the Almeida-Thouless line, coinciding with the microstructural investigations by atom probe tomography. AC-susceptometry shows that the frustrated state vanishes for annealing at 250 • C.
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Stückler et al. - 2020 - Intermixing of Fe and Cu on the atomic scale by hi.pdf (3.47 Mo)
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