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The Numerical Model Of Original Shell In Grooved-Mold

Posted on:2009-12-04Degree:MasterType:Thesis
Country:ChinaCandidate:Z S ZhangFull Text:PDF
GTID:2121360242475002Subject:Iron and steel metallurgy
Abstract/Summary:PDF Full Text Request
In this paper, a two-dimensional fully thermo-mechanical coupled finite element model is established to analyze the solidification process of continuous casting slabs in mold and stress distributions in the solidified shells and deformation of shells. In the model, Temperature-dependent functions are employed for important properties of steel and rate-dependent elastic-visco-plastic model is used. The model is implemented with Marc software on the computer. The distributions of temperature, stresses, thickness and deformation of the solidified shells are obtained .The simulation results indicate that the heat flux is remarkably reduced when air. gap is formed at the slab corner, and a hot spot region is formed at the off-corner of slab, in the region, the shell thickness is the thinnest and the surface temperature is the highest. The off-corner hot spot region is sensitive to crack, which is likely to form cracks .The calculated shell thickness accords with that of breakout shell measurement.On the bases of the first model, groove-mold models are established .Parallel grooves of different space is scored on the inner surface of the mold along the longitudinal direction .All parameters in the first model is used except the mesh. All models are implemented on the computer. The results show that the influence of gap on the heat transfer of mold is reduced remarkably by grooves. The shape of the shells at a initial time is compared, when the space is smaller, the degree of equality of the shell is higher ,the space is smaller, the front of solidifying go to flat at a earlier time. When the shell is formed in the casting mold, the isoclines of stress in the shell's near-surface region are much denser than others. Equivalent stress in the region is higher than others .When grooves is scored on the mold inner surface, equivalent stress in the shell near-surface region is much smaller at a same initial time. The difference of stress distributions between regions is much smaller than flat mold model. Considering both the feasibility of practice and the development of heat transfer condition, the optimistic distance between the grooves is 1mm.
Keywords/Search Tags:grooved-mold, numerical simulation
PDF Full Text Request
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