Laboratory Substantiation of Thermoelectric Method for Monitoring Contact Resistance; Russian Journal of Nondestructive Testing; Vol. 58, iss. 12

Podrobná bibliografie
Parent link:Russian Journal of Nondestructive Testing=Дефектоскопия
Vol. 58, iss. 12.— 2022.— P. 1153-1161
Další autoři: Abouellail A. A. S. A. R. Ahmed Ali Sabri Ahmed Refaat, Chang Jianglei, Soldatov A. I. Aleksey Ivanovich, Soldatov A. A. Andrey Alekseevich, Kostina M. A. Maria Alekseevna, Bortalevich S. I., Soldatov D. A. Dmitry Alekseevich
Shrnutí:Title screen
The results of modeling the heating of a contact resistance between two conductors during the current flow are presented. It is shown that its temperature can reach values comparable to insulation melting and ignition temperatures. At the same time, the control of contact resistance by modern methods is difficult. A thermoelectric method is proposed for monitoring the contact resistance. Its modeling and laboratory studies are carried out on a contact connection of two types of conductors—aluminum–copper, forming a thermocouple in a power network. Laboratory studies of the thermoelectric properties of a contact joint made of aluminum and copper at a temperature of 300°C have been carried out
Текстовый файл
AM_Agreement
Jazyk:angličtina
Vydáno: 2022
Témata:
On-line přístup:https://doi.org/10.1134/S1061830922700152
Статья на русском языке
Médium: MixedMaterials Elektronický zdroj Kapitola
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=669527

MARC

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330 |a The results of modeling the heating of a contact resistance between two conductors during the current flow are presented. It is shown that its temperature can reach values comparable to insulation melting and ignition temperatures. At the same time, the control of contact resistance by modern methods is difficult. A thermoelectric method is proposed for monitoring the contact resistance. Its modeling and laboratory studies are carried out on a contact connection of two types of conductors—aluminum–copper, forming a thermocouple in a power network. Laboratory studies of the thermoelectric properties of a contact joint made of aluminum and copper at a temperature of 300°C have been carried out 
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