2014
DOI: 10.1080/01495739.2014.913418
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Thermal Stress Evolution of the Roll During Rolling and Idling in Hot Strip Rolling Process

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Cited by 15 publications
(26 citation statements)
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“…Strain-life of a work roll during hot rolling was calculated by Corral et al [24] by means of a hybrid, analytic-numerical model, and temperatures and thermal stress/strains in the roll under various cooling conditions was predicted by Saha et al [25] applying a mathematical model. In addition, thermal stress and temperature variations within work rolls in hot strip rolling have also been modelled by Fisher et al [26], Serajzadehet al [27,28], Benasciutti et al [29] and Na et al [30], respectively. In addition to modelling the temperature and thermal stress variations of work rolls as mentioned in the above literatures, analysis on the geometry of water spray and work roll thermal crown profile has also been done as reported in Refs.…”
Section: Accepted Manuscriptmentioning
confidence: 99%
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“…Strain-life of a work roll during hot rolling was calculated by Corral et al [24] by means of a hybrid, analytic-numerical model, and temperatures and thermal stress/strains in the roll under various cooling conditions was predicted by Saha et al [25] applying a mathematical model. In addition, thermal stress and temperature variations within work rolls in hot strip rolling have also been modelled by Fisher et al [26], Serajzadehet al [27,28], Benasciutti et al [29] and Na et al [30], respectively. In addition to modelling the temperature and thermal stress variations of work rolls as mentioned in the above literatures, analysis on the geometry of water spray and work roll thermal crown profile has also been done as reported in Refs.…”
Section: Accepted Manuscriptmentioning
confidence: 99%
“…However, it has been found that very limited reports on temperature analysis of HSS work rolls were available after a careful literatures review. Only two reports [4,30] have been conducted based on practical industrial steel hot rolling process.…”
Section: Accepted Manuscriptmentioning
confidence: 99%
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“…Therefore, the partition coefficient C p in equation (4) was set to be 0.5. Sun et al 19 and Na et al 27 also assumed that C p = 0.5. n t and n t in equation (4) are the tangential components of the velocity vectors of the material and work roll, respectively. t fr , s n , and m in equation (5) are the tangential (friction) stress, normal stress, and the Coulomb friction coefficient, respectively.…”
Section: Boundary Conditionsmentioning
confidence: 96%