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On some thermodynamic aspects of diffusion-induced grain-boundary migration. / Марвин , Владимир Борисович; Марвин, Сергей Владимирович.
в: Металлофизика и новейшие технологии, Том 27, № 12, 2005, стр. 1551-1565.

Результаты исследований: Вклад в журналСтатьяРецензирование

Harvard

Марвин , ВБ & Марвин, СВ 2005, 'On some thermodynamic aspects of diffusion-induced grain-boundary migration', Металлофизика и новейшие технологии, Том. 27, № 12, стр. 1551-1565.

APA

Марвин , В. Б., & Марвин, С. В. (2005). On some thermodynamic aspects of diffusion-induced grain-boundary migration. Металлофизика и новейшие технологии, 27(12), 1551-1565.

Vancouver

Марвин ВБ, Марвин СВ. On some thermodynamic aspects of diffusion-induced grain-boundary migration. Металлофизика и новейшие технологии. 2005;27(12):1551-1565.

Author

Марвин , Владимир Борисович ; Марвин, Сергей Владимирович. / On some thermodynamic aspects of diffusion-induced grain-boundary migration. в: Металлофизика и новейшие технологии. 2005 ; Том 27, № 12. стр. 1551-1565.

BibTeX

@article{b89321cdd6fa4326a7b1519a3528eb19,
title = "On some thermodynamic aspects of diffusion-induced grain-boundary migration",
abstract = "By condition of atoms' concentration constancy similar to observing of the diffusion-induced grain-boundaries (GB) migration (DIGM) in single-phase metals and alloys, taking as an example the model system-gas of A sort atoms divided by a wall into volumes V-1 and V-2 there are thermodynamically analyzed the causes of pressure-difference occurrence at a wall (Delta P = = P-1 - P-2 where P-1, P-2-the pressures in bulks with volumes of V-1 and V-2, respectively)-the driving force of wall moving (G = Delta P not equal 0), which is induced by diffusion of B sort atoms along the wall and into the bulk (from a wall). The obtained conclusions for a model A-B-gas system are used in DIGM thermodynamic analysis. As noted, by decreasing of the free energy system, the DIGM driving force can arise due to the internal-energy increasing caused by arising (or amplification) of interaction of migrating GB sites with other GB sites and (or) with bulk defects (including generated during the DIGM process). As shown, the alloying in the GB migration region is not the cause of GB migration during the DIGM, and is a corollary of the second law of thermodynamics. The obtained conclusions concerning thermodynamic conditions of the DIGM observation do not contradict to the experimental results of DIGM investigation.",
author = "Марвин, {Владимир Борисович} and Марвин, {Сергей Владимирович}",
year = "2005",
language = "Русский",
volume = "27",
pages = "1551--1565",
journal = "Металлофизика и новейшие технологии",
issn = "1024-1809",
publisher = "G.V. Kurdyumov Institute for Metal Physics of N.A.S. of Ukraine",
number = "12",

}

RIS

TY - JOUR

T1 - On some thermodynamic aspects of diffusion-induced grain-boundary migration

AU - Марвин , Владимир Борисович

AU - Марвин, Сергей Владимирович

PY - 2005

Y1 - 2005

N2 - By condition of atoms' concentration constancy similar to observing of the diffusion-induced grain-boundaries (GB) migration (DIGM) in single-phase metals and alloys, taking as an example the model system-gas of A sort atoms divided by a wall into volumes V-1 and V-2 there are thermodynamically analyzed the causes of pressure-difference occurrence at a wall (Delta P = = P-1 - P-2 where P-1, P-2-the pressures in bulks with volumes of V-1 and V-2, respectively)-the driving force of wall moving (G = Delta P not equal 0), which is induced by diffusion of B sort atoms along the wall and into the bulk (from a wall). The obtained conclusions for a model A-B-gas system are used in DIGM thermodynamic analysis. As noted, by decreasing of the free energy system, the DIGM driving force can arise due to the internal-energy increasing caused by arising (or amplification) of interaction of migrating GB sites with other GB sites and (or) with bulk defects (including generated during the DIGM process). As shown, the alloying in the GB migration region is not the cause of GB migration during the DIGM, and is a corollary of the second law of thermodynamics. The obtained conclusions concerning thermodynamic conditions of the DIGM observation do not contradict to the experimental results of DIGM investigation.

AB - By condition of atoms' concentration constancy similar to observing of the diffusion-induced grain-boundaries (GB) migration (DIGM) in single-phase metals and alloys, taking as an example the model system-gas of A sort atoms divided by a wall into volumes V-1 and V-2 there are thermodynamically analyzed the causes of pressure-difference occurrence at a wall (Delta P = = P-1 - P-2 where P-1, P-2-the pressures in bulks with volumes of V-1 and V-2, respectively)-the driving force of wall moving (G = Delta P not equal 0), which is induced by diffusion of B sort atoms along the wall and into the bulk (from a wall). The obtained conclusions for a model A-B-gas system are used in DIGM thermodynamic analysis. As noted, by decreasing of the free energy system, the DIGM driving force can arise due to the internal-energy increasing caused by arising (or amplification) of interaction of migrating GB sites with other GB sites and (or) with bulk defects (including generated during the DIGM process). As shown, the alloying in the GB migration region is not the cause of GB migration during the DIGM, and is a corollary of the second law of thermodynamics. The obtained conclusions concerning thermodynamic conditions of the DIGM observation do not contradict to the experimental results of DIGM investigation.

UR - https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=tsmetrics&SrcApp=tsm_test&DestApp=WOS_CPL&DestLinkType=FullRecord&KeyUT=000235678200001

M3 - Статья

VL - 27

SP - 1551

EP - 1565

JO - Металлофизика и новейшие технологии

JF - Металлофизика и новейшие технологии

SN - 1024-1809

IS - 12

ER -

ID: 39618161