Optimum Shape Design Techniques on Direct Roller of Molten Metal Considering Thickness Control of Width Direction

폭방향 두께제어를 고려한 용탕직접 압연로울의 최적형상 설계기법

  • Kang, C.G. ;
  • Kim, Y.D. ;
  • Jung, Y.J.
  • 강충길 (부산대 기계공학부) ;
  • 김영도 (부산대 기계기술연구소) ;
  • 정영진 (부산대 기계기술연구소)
  • Published : 1997.12.01

Abstract

The rolling force and roll deformation behavior in the twin roll type strip continuous casting process has been computed to estimate the thermal charcteristics of a caster roll. To calculation of rolling force, the relationship between flow stress and strain for a roll material and casting alloy are assumed as a function of strain-rate and temperature because mechanical properties of a casting materials depends on tempera- ture. The three dimensional thermal dlastic-plastic analysis of a cooling roll has also been carried out to obtain a roll stress and plastic strain distributions with the commercial finite element analysis package of ANSYS. Temperature fields data of caster roll which are provided by authors were used to estimated of roll deformation. Roll life considering thermal cycle is calculated by using thermal elastic-plastic analysis results. Roll life is proposed as a terms of a roll revolution in the caster roll with and without fine failure model on the roll surface. To obtain of plastic strain distributions of caster roll, thermomechan- ical properties of roll sleeve with a copper alloy is obtained by uniaxial tensile test for variation of temperature.

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