L. Moro, J. Srnec Novak
In this work the durability assessment and the permanent deformation of a copper mold for continuous casting of steel have been investigated using mathematical models based on the Finite Element method. The cyclic plasticity behavior of the material is represented by a combined kinematic-isotropic model experimentally validated. Results from thermo-mechanical analysis are in good agreement with measurements. In particular, creep effects included into the model permit the evolution of bulging near the meniscus area to be correctly predicted. A life estimation is performed considering strain-life and stress-rupture time curves according to a cumulative damage law.
@article{ec0c3f91-91d3-4ece-9e48-5f9305942e44,
title={Copper Mold for Continuous Casting of Steel: Modelling Strategies to Assess Thermal Distortion and Durability},
author={L. Moro and J. Srnec Novak},
year={2016},
language={it}
}TY - JOUR TI - Copper Mold for Continuous Casting of Steel: Modelling Strategies to Assess Thermal Distortion and Durability AU - L. Moro AU - J. Srnec Novak PY - 2016 LA - it ER -
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