Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes

Research output: Chapter in book/report/conference proceedingConference contributionResearch

Authors

  • Dirk Schlesselmann
  • Alexandre Nikanorov
  • Bernard Nacke
  • Sergei Galunin
  • M. Schön
  • Z. Yu

External Research Organisations

  • St. Petersburg State Electrotechnical University
  • Mercedes-Benz Group AG
View graph of relations

Details

Original languageEnglish
Title of host publicationInduction, dielectric and microwaves, conduction & electromagnetic processing
Subtitle of host publicationHES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013
Place of PublicationPadova
Pages127-134
Publication statusPublished - 2013
EventInternational Conference on Heating by Electromagnetic Sources - Padua
Duration: 21 May 201324 May 2013

Cite this

Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes. / Schlesselmann, Dirk; Nikanorov, Alexandre; Nacke, Bernard et al.
Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova, 2013. p. 127-134.

Research output: Chapter in book/report/conference proceedingConference contributionResearch

Schlesselmann, D, Nikanorov, A, Nacke, B, Galunin, S, Schön, M & Yu, Z 2013, Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes. in Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova, pp. 127-134, International Conference on Heating by Electromagnetic Sources, Padua, 21 May 2013.
Schlesselmann, D., Nikanorov, A., Nacke, B., Galunin, S., Schön, M., & Yu, Z. (2013). Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes. In Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013 (pp. 127-134).
Schlesselmann D, Nikanorov A, Nacke B, Galunin S, Schön M, Yu Z. Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes. In Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova. 2013. p. 127-134
Schlesselmann, Dirk ; Nikanorov, Alexandre ; Nacke, Bernard et al. / Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes. Induction, dielectric and microwaves, conduction & electromagnetic processing: HES-13 : International Conference on Heating by Electromagnetic Sources : Padua, May 21-24, 2013. Padova, 2013. pp. 127-134
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title = "Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes",
author = "Dirk Schlesselmann and Alexandre Nikanorov and Bernard Nacke and Sergei Galunin and M. Sch{\"o}n and Z. Yu",
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pages = "127--134",
booktitle = "Induction, dielectric and microwaves, conduction & electromagnetic processing",
note = "International Conference on Heating by Electromagnetic Sources ; Conference date: 21-05-2013 Through 24-05-2013",

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Download

TY - GEN

T1 - Numerical calculation and comparison of temperature profiles and martensite microstructures in induction hardening processes

AU - Schlesselmann, Dirk

AU - Nikanorov, Alexandre

AU - Nacke, Bernard

AU - Galunin, Sergei

AU - Schön, M.

AU - Yu, Z.

PY - 2013

Y1 - 2013

M3 - Conference contribution

SN - 978-88-89884-25-6

SP - 127

EP - 134

BT - Induction, dielectric and microwaves, conduction & electromagnetic processing

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T2 - International Conference on Heating by Electromagnetic Sources

Y2 - 21 May 2013 through 24 May 2013

ER -

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