Standard

Hydrogen permeability of amorphous and recrystallized iron alloys. / Evard, E. A.; Sidorov, N. I.; Gabis, I. E.

в: Technical Physics, Том 45, № 3, 03.2000, стр. 377-379.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Evard, EA, Sidorov, NI & Gabis, IE 2000, 'Hydrogen permeability of amorphous and recrystallized iron alloys', Technical Physics, Том. 45, № 3, стр. 377-379. https://doi.org/10.1134/1.1259639

APA

Vancouver

Evard EA, Sidorov NI, Gabis IE. Hydrogen permeability of amorphous and recrystallized iron alloys. Technical Physics. 2000 Март;45(3):377-379. https://doi.org/10.1134/1.1259639

Author

Evard, E. A. ; Sidorov, N. I. ; Gabis, I. E. / Hydrogen permeability of amorphous and recrystallized iron alloys. в: Technical Physics. 2000 ; Том 45, № 3. стр. 377-379.

BibTeX

@article{06084402407a406d933f7aa4ce10b2ff,
title = "Hydrogen permeability of amorphous and recrystallized iron alloys",
abstract = "The hydrogen permeability of amorphous and recrystallized Fe alloys is investigated. It is found that the surface layers of both samples are enriched with metalloids, which interfere with the penetration of hydrogen from the molecular and atomic phases. The kinetics of curves of flow transition to a steady state upon ion irradiation in an amorphous alloy points to processes of reversible capture. The penetrating flow demonstrates Arrhenius dependence on temperature in the case of recrystallized samples and nonmonotonic dependence on temperature in the case of amorphous samples. A model of hydrogen penetration is suggested, which includes the reemission and diffusion processes; and estimates are obtained of the energy of activation of thermodesorption and diffusion.",
author = "Evard, {E. A.} and Sidorov, {N. I.} and Gabis, {I. E.}",
year = "2000",
month = mar,
doi = "10.1134/1.1259639",
language = "English",
volume = "45",
pages = "377--379",
journal = "Technical Physics",
issn = "1063-7842",
publisher = "Pleiades Publishing",
number = "3",

}

RIS

TY - JOUR

T1 - Hydrogen permeability of amorphous and recrystallized iron alloys

AU - Evard, E. A.

AU - Sidorov, N. I.

AU - Gabis, I. E.

PY - 2000/3

Y1 - 2000/3

N2 - The hydrogen permeability of amorphous and recrystallized Fe alloys is investigated. It is found that the surface layers of both samples are enriched with metalloids, which interfere with the penetration of hydrogen from the molecular and atomic phases. The kinetics of curves of flow transition to a steady state upon ion irradiation in an amorphous alloy points to processes of reversible capture. The penetrating flow demonstrates Arrhenius dependence on temperature in the case of recrystallized samples and nonmonotonic dependence on temperature in the case of amorphous samples. A model of hydrogen penetration is suggested, which includes the reemission and diffusion processes; and estimates are obtained of the energy of activation of thermodesorption and diffusion.

AB - The hydrogen permeability of amorphous and recrystallized Fe alloys is investigated. It is found that the surface layers of both samples are enriched with metalloids, which interfere with the penetration of hydrogen from the molecular and atomic phases. The kinetics of curves of flow transition to a steady state upon ion irradiation in an amorphous alloy points to processes of reversible capture. The penetrating flow demonstrates Arrhenius dependence on temperature in the case of recrystallized samples and nonmonotonic dependence on temperature in the case of amorphous samples. A model of hydrogen penetration is suggested, which includes the reemission and diffusion processes; and estimates are obtained of the energy of activation of thermodesorption and diffusion.

UR - http://www.scopus.com/inward/record.url?scp=0034146491&partnerID=8YFLogxK

U2 - 10.1134/1.1259639

DO - 10.1134/1.1259639

M3 - Article

AN - SCOPUS:0034146491

VL - 45

SP - 377

EP - 379

JO - Technical Physics

JF - Technical Physics

SN - 1063-7842

IS - 3

ER -

ID: 49080725