Publication detail

Numerical models of the temperature field and chemical heterogeneity of a concast steel slab

DOBROVSKÁ, J. KAVIČKA, F. ŠTĚTINA, J. STRÁNSKÝ, K.

Czech title

Numerický model teplotního pole a chemické heterogenity kontinuálně odlévané ocelové bramy

English title

Numerical models of the temperature field and chemical heterogeneity of a concast steel slab

Type

conference paper

Language

en

Original abstract

Two numerical model had been used in the investigation of a temperature field and chemical heterogeneitz of a continuouslz cast carbon-steel slab. The combination of both models enables the prediction of cracks and fissures in critical points of the slab.

Czech abstract

Jsou použity dva modely pro výzkum teplotního pole a chemické heterogenity kontinuálně odlévané ocelové bramy. Kombinace obou modelů umožňuje predikci tvorby trhlin v kritických místech bramy.

English abstract

Two numerical model had been used in the investigation of a temperature field and chemical heterogeneitz of a continuouslz cast carbon-steel slab. The combination of both models enables the prediction of cracks and fissures in critical points of the slab.

Keywords in Czech

kontinuální lití bram, teplotní pole, chemická heterogenita, numerické modely

Keywords in English

continuously casting of slabs, temperature field, chemical heterogeneity, numerical models

RIV year

2007

Released

03.06.2007

Publisher

CANCAM

Location

Toronto

ISBN

978-1-4276-1788-0

Book

Proceedings of the 21st Canadian Congress of Aplied Mechanics CANCAM 2007

Pages from–to

384–385

Pages count

2

BIBTEX


@inproceedings{BUT28788,
  author="Jana {Dobrovská} and František {Kavička} and Josef {Štětina} and Karel {Stránský},
  title="Numerical models of the temperature field and chemical heterogeneity of a concast steel slab",
  booktitle="Proceedings of the 21st Canadian Congress of Aplied Mechanics CANCAM 2007",
  year="2007",
  month="June",
  pages="384--385",
  publisher="CANCAM",
  address="Toronto",
  isbn="978-1-4276-1788-0"
}