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Mechanism of amorphous state formation, crystalline structure, and hyperfine interactions in alloys
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10.1063/1.3490246
/content/aip/journal/jap/108/7/10.1063/1.3490246
http://aip.metastore.ingenta.com/content/aip/journal/jap/108/7/10.1063/1.3490246

Figures

Image of FIG. 1.
FIG. 1.

XRD patterns of in as-quenched state. Indices identify the peaks of the -type structure, while black arrow marks the unidentified peak.

Image of FIG. 2.
FIG. 2.

The enthalpies of amorphous state formation of ternary , , , quaternary , and quinternary alloys calculated from the Miedema’s model.

Image of FIG. 3.
FIG. 3.

DSC curves for alloy measured with different heating rates .

Image of FIG. 4.
FIG. 4.

Kissinger plot for the both crystallization events for melt-spun amorphous alloy.

Image of FIG. 5.
FIG. 5.

Mössbauer spectra of as-quenched measured at 77 and 300 K.

Image of FIG. 6.
FIG. 6.

Distribution of (a) hyperfine field for at 300 K, (b) quadrupolar splitting for at 77 and 300 K, and (c) quadrupolar splitting for at 77 and 300 K.

Tables

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Table I.

Values of pair wise enthalpies of alloy constituents.

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Table II.

Values of crystallization temperatures and enthalpies of crystallization of alloy.

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Table III.

Hyperfine fields , paramagnetic fraction , isomer shift , quadrupolar shift , and quadrupolar splitting values estimated from Mössbauer spectra of as-quenched alloys at 77 and 300 K.

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/content/aip/journal/jap/108/7/10.1063/1.3490246
2010-10-07
2014-04-23
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752b84549af89a08dbdd7fdb8b9568b5 journal.articlezxybnytfddd
Scitation: Mechanism of amorphous state formation, crystalline structure, and hyperfine interactions in DyMn6−xGe6Fex(0≤x≤6) alloys
http://aip.metastore.ingenta.com/content/aip/journal/jap/108/7/10.1063/1.3490246
10.1063/1.3490246
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