Modelling of the thermal field of hot electrode and the controlled sample at thermoelectric testing of metals

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

The article presents the results of simulation of the temperatures of hot electrode and controlled sample during measuring the thermoelectric performance of metals and alloys. The temperature dynamics in the contact zone with the planar and point contacts between the hot electrode and the controlled sample is presented in the paper. The influence of the temperature dynamics on thermo electromotive force is shown. Simulation was carried out for two hot electrodes made of copper and aluminum. Controlled sample was made of steel ST3 (analogue of A57036).

Original languageEnglish
Title of host publicationProceedings of 2015 International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9781467381147
DOIs
Publication statusPublished - 19 Feb 2016
EventInternational Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015 - Tomsk, Russian Federation
Duration: 1 Dec 20154 Dec 2015

Conference

ConferenceInternational Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015
CountryRussian Federation
CityTomsk
Period1.12.154.12.15

Fingerprint

Electrode
Metals
Testing
Electrodes
Modeling
Contact
Electromotive force
Point contacts
Copper
Temperature
Aluminum
Steel
Simulation
Analogue
Hot Temperature
Influence

Keywords

  • cold electrode
  • controlled sample
  • distribution of temperature field
  • hot electrode
  • thermo electromotive force

ASJC Scopus subject areas

  • Mechanical Engineering
  • Modelling and Simulation
  • Control and Systems Engineering

Cite this

Soldatov, A. I., Soldatov, A. A., Kostina, M. A., Kozhemyak, OA., & Kroening, H. M. (2016). Modelling of the thermal field of hot electrode and the controlled sample at thermoelectric testing of metals. In Proceedings of 2015 International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015 [7414922] Institute of Electrical and Electronics Engineers Inc.. https://doi.org/10.1109/MEACS.2015.7414922

Modelling of the thermal field of hot electrode and the controlled sample at thermoelectric testing of metals. / Soldatov, Aleksey Ivanovich; Soldatov, A. A.; Kostina, M. A.; Kozhemyak, Olesya Anatolievna; Kroening, Hans Michael.

Proceedings of 2015 International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015. Institute of Electrical and Electronics Engineers Inc., 2016. 7414922.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Soldatov, AI, Soldatov, AA, Kostina, MA, Kozhemyak, OA & Kroening, HM 2016, Modelling of the thermal field of hot electrode and the controlled sample at thermoelectric testing of metals. in Proceedings of 2015 International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015., 7414922, Institute of Electrical and Electronics Engineers Inc., International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015, Tomsk, Russian Federation, 1.12.15. https://doi.org/10.1109/MEACS.2015.7414922
Soldatov AI, Soldatov AA, Kostina MA, Kozhemyak OA, Kroening HM. Modelling of the thermal field of hot electrode and the controlled sample at thermoelectric testing of metals. In Proceedings of 2015 International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015. Institute of Electrical and Electronics Engineers Inc. 2016. 7414922 https://doi.org/10.1109/MEACS.2015.7414922
Soldatov, Aleksey Ivanovich ; Soldatov, A. A. ; Kostina, M. A. ; Kozhemyak, Olesya Anatolievna ; Kroening, Hans Michael. / Modelling of the thermal field of hot electrode and the controlled sample at thermoelectric testing of metals. Proceedings of 2015 International Conference on Mechanical Engineering, Automation and Control Systems, MEACS 2015. Institute of Electrical and Electronics Engineers Inc., 2016.
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