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The structure of interlayers at the phase interface of the eutectic emulsion in binary metallic systems. / Zhukova, L. A.; Solntseva, O. P.
In: Rasplavy, No. 2, 2001, p. 8-14.

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@article{75635542dfdc48d8b3ffb8608ad712d9,
title = "The structure of interlayers at the phase interface of the eutectic emulsion in binary metallic systems",
abstract = "The model eutectic emulsions of Sn-Pb and Ag-Ge systems are investigated for the purpose of confirmation of availability of the atoms with raised density in packing. The results of diffraction research are interpreted in the context of a notion about their microemulsion structure. The structure factor and function of radial distribution of atoms in the transition shells at the dispersion phase and dispersion medium interface are computed. The contraction of interatomic distances in the boundary layer is revealed as compared with the values in the pure liquid components and their solutions.",
author = "Zhukova, {L. A.} and Solntseva, {O. P.}",
year = "2001",
language = "Русский",
pages = "8--14",
journal = "Rasplavy",
issn = "0235-0106",
publisher = "Издательство {"}Наука{"}",
number = "2",

}

RIS

TY - JOUR

T1 - The structure of interlayers at the phase interface of the eutectic emulsion in binary metallic systems

AU - Zhukova, L. A.

AU - Solntseva, O. P.

PY - 2001

Y1 - 2001

N2 - The model eutectic emulsions of Sn-Pb and Ag-Ge systems are investigated for the purpose of confirmation of availability of the atoms with raised density in packing. The results of diffraction research are interpreted in the context of a notion about their microemulsion structure. The structure factor and function of radial distribution of atoms in the transition shells at the dispersion phase and dispersion medium interface are computed. The contraction of interatomic distances in the boundary layer is revealed as compared with the values in the pure liquid components and their solutions.

AB - The model eutectic emulsions of Sn-Pb and Ag-Ge systems are investigated for the purpose of confirmation of availability of the atoms with raised density in packing. The results of diffraction research are interpreted in the context of a notion about their microemulsion structure. The structure factor and function of radial distribution of atoms in the transition shells at the dispersion phase and dispersion medium interface are computed. The contraction of interatomic distances in the boundary layer is revealed as compared with the values in the pure liquid components and their solutions.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=0035772590

M3 - Статья

SP - 8

EP - 14

JO - Rasplavy

JF - Rasplavy

SN - 0235-0106

IS - 2

ER -

ID: 44519999