Publication detail

Two numerical models for optimization of the foundry technology of the ceramics EUCOR

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

Czech title

Dva numerické modely pro optimalizaci technologie odlévání keramiky EUCOR.

English title

Two numerical models for optimization of the foundry technology of the ceramics EUCOR

Type

conference paper

Language

en

Original abstract

This article introduces a numerical model of solidification and cooling of corundo-baddeleyid material EUCOR in a non-metallic mould. The local solidification time is one of the input parameters for the cooperating model of chemical heterogenity. The verification of both models was conducted on real cast 350x200x400 mm block.

Czech abstract

Článek uvádí numerický model tuhnutí a chladnutí korundo-baddelleytického materiálu EUCOR v nekovové formě. Místní doba tuhnutí je jedním ze vstupních parametrů pro kooperující model chemické heterogenity. Ověření obou modelů bylo uskutečněno na odlitku bloku 350x200x400 mm.

English abstract

This article introduces a numerical model of solidification and cooling of corundo-baddeleyid material EUCOR in a non-metallic mould. The local solidification time is one of the input parameters for the cooperating model of chemical heterogenity. The verification of both models was conducted on real cast 350x200x400 mm block.

Keywords in English

Numerical model.Solidification and cooling. corundo-baddeleyid material. Local solidification time.

Released

01.07.2004

Publisher

ASME

Location

Charlotte

ISBN

0-7918-3740-8

Book

2004 ASME Heat Transfer/Fluid Engineering Summer Conference

Pages count

7

BIBTEX


@inproceedings{BUT14299,
  author="František {Kavička} and Jana {Dobrovská} and Karel {Stránský} and Věra {Dobrovská} and Josef {Štětina} and Jaromír {Heger},
  title="Two numerical models for optimization of the foundry technology of the ceramics EUCOR",
  booktitle="2004 ASME Heat Transfer/Fluid Engineering Summer Conference",
  year="2004",
  month="July",
  publisher="ASME",
  address="Charlotte",
  isbn="0-7918-3740-8"
}