Standard

Interdiffusion coefficients of components in Ni81B19, Co80B20, Ni64Cr16B20 melts. / Rogachev, V. V.; Sotnikov, Anatolyi I.; Suchkova, Yu. P.
In: Rasplavy, No. 4, 1993, p. 84-87.

Research output: Contribution to journalArticlepeer-review

Harvard

Rogachev, VV, Sotnikov, AI & Suchkova, YP 1993, 'Interdiffusion coefficients of components in Ni81B19, Co80B20, Ni64Cr16B20 melts', Rasplavy, no. 4, pp. 84-87.

APA

Rogachev, V. V., Sotnikov, A. I., & Suchkova, Y. P. (1993). Interdiffusion coefficients of components in Ni81B19, Co80B20, Ni64Cr16B20 melts. Rasplavy, (4), 84-87.

Vancouver

Author

Rogachev, V. V. ; Sotnikov, Anatolyi I. ; Suchkova, Yu. P. / Interdiffusion coefficients of components in Ni81B19, Co80B20, Ni64Cr16B20 melts. In: Rasplavy. 1993 ; No. 4. pp. 84-87.

BibTeX

@article{2a4b3f7edfd843adb693971fdd2649ae,
title = "Interdiffusion coefficients of components in Ni81B19, Co80B20, Ni64Cr16B20 melts",
abstract = "Diffusion coefficients have been measured within the 1473-1623 K temperature range. Apparent diffusion activation energies have been measured for studied melts using these data, which are equal to 52, 86 and 108 kJ/mole, respectively. Chromium addition noticeably decreases components diffusion rate due to the formation of stronger chromium-boron bonds. This effect is even more appreciable in supercooled melts. The considerable diffusion retardations in ternary systems promote an amorphous structure generation. This conclusion is confirmed by practical results on the preparation of amorphous solders on a nickel base.",
author = "Rogachev, {V. V.} and Sotnikov, {Anatolyi I.} and Suchkova, {Yu. P.}",
year = "1993",
language = "Русский",
pages = "84--87",
journal = "Rasplavy",
issn = "0235-0106",
publisher = "Издательство {"}Наука{"}",
number = "4",

}

RIS

TY - JOUR

T1 - Interdiffusion coefficients of components in Ni81B19, Co80B20, Ni64Cr16B20 melts

AU - Rogachev, V. V.

AU - Sotnikov, Anatolyi I.

AU - Suchkova, Yu. P.

PY - 1993

Y1 - 1993

N2 - Diffusion coefficients have been measured within the 1473-1623 K temperature range. Apparent diffusion activation energies have been measured for studied melts using these data, which are equal to 52, 86 and 108 kJ/mole, respectively. Chromium addition noticeably decreases components diffusion rate due to the formation of stronger chromium-boron bonds. This effect is even more appreciable in supercooled melts. The considerable diffusion retardations in ternary systems promote an amorphous structure generation. This conclusion is confirmed by practical results on the preparation of amorphous solders on a nickel base.

AB - Diffusion coefficients have been measured within the 1473-1623 K temperature range. Apparent diffusion activation energies have been measured for studied melts using these data, which are equal to 52, 86 and 108 kJ/mole, respectively. Chromium addition noticeably decreases components diffusion rate due to the formation of stronger chromium-boron bonds. This effect is even more appreciable in supercooled melts. The considerable diffusion retardations in ternary systems promote an amorphous structure generation. This conclusion is confirmed by practical results on the preparation of amorphous solders on a nickel base.

UR - http://www.scopus.com/inward/record.url?partnerID=8YFLogxK&scp=0027632718

M3 - Статья

SP - 84

EP - 87

JO - Rasplavy

JF - Rasplavy

SN - 0235-0106

IS - 4

ER -

ID: 54960168