Publication detail

OPTIMIZATION OF WORKING ROLL COOLING IN HOT ROLLING

KOTRBÁČEK, P. HORSKÝ, J. KVAPIL, J. SCHOERKHUBER, K.

Original Title

OPTIMIZATION OF WORKING ROLL COOLING IN HOT ROLLING

Type

conference paper

Language

English

Original Abstract

The optimal cooling of rolls should be designed with respect to two aspects. The first is the wearing of a roll where high temperature decreases the durability of the surface layer. The second aspect is thermal deformation of a roll. There are many factors which can influence the efficiency of the nozzle cooling system: type of nozzle, geometrical configuration (nozzle pitch, distance from the roll, orientation, number of manifolds), coolant pressure and temperature. Cooling intensity is mostly specified through the heat transfer coefficient or heat flux distribution. Coolant flow on the rotating roll surface makes the problem complex. Surface temperature of the cylinder plays an important role in the heat transfer mechanism, especially for higher temperatures where boiling must be considered. No analytical or numerical solution of heat transfer and fluid flow for this case is known. The task can be successfully solved experimentally. An experimental bench and methodology of realistic boundary conditions determination was developed in the Heat Transfer and Fluid Flow Laboratory. The optimized cooling system was applied on a hot flat rolling mill in voestalpine Stahl GmbH.

Keywords

roll cooling, rolling mill, heat transfer, hot rolling, nozzle, roll crown

Authors

KOTRBÁČEK, P.; HORSKÝ, J.; KVAPIL, J.; SCHOERKHUBER, K.

RIV year

2013

Released

10. 6. 2013

Publisher

Associazione Italiana di metallurgia

Location

Milano, Italy

ISBN

9788885298958

Book

Rolling 2013

Pages from

1

Pages to

11

Pages count

11

BibTex

@inproceedings{BUT100663,
  author="Petr {Kotrbáček} and Jaroslav {Horský} and Jiří {Kvapil} and Karl {Schoerkhuber}",
  title="OPTIMIZATION OF WORKING ROLL COOLING IN HOT ROLLING",
  booktitle="Rolling 2013",
  year="2013",
  pages="1--11",
  publisher="Associazione Italiana di metallurgia",
  address="Milano, Italy",
  isbn="9788885298958"
}