Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
794768 | Journal of Materials Processing Technology | 2011 | 15 Pages |
Abstract
Thermal shock damage in the refractory lining of steelmaking installations is modelled using an experimentally validated constitutive damage framework which is coupled incrementally with a thermo-elastic FE package. Both non-local elasticity-based damage induced by temperature gradients and thermal damage induced by a uniform temperature increase contribute to the total damage. The non-locality is spatially discretized using a Galerkin approach within a finite element context. The thermal shock damage in a snorkel of a steel degassing installation as well as in the refractory lining of a steel ladle is modelled to demonstrate the applicability of the computational platform.
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Physical Sciences and Engineering
Engineering
Industrial and Manufacturing Engineering
Authors
F. Damhof, W.A.M. Brekelmans, M.G.D. Geers,