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- W3200964462 abstract "A method to simulate processes of forging and subsequent heat treatment of an axial symmetric rod is formulated in Eulerian description and the feasibility is investigated. This method uses finite volume meshes for tracking material deformation and an automatically refined facet surface to accurately trace the free surface of the deforming material. In the method, the deforming work piece flows through fixed finite volume meshes using Eulerian formulation to describe the conservation laws. Fixed finite volume meshing is particularly suitable for large three-dimensional deformation such as forging because remeshing techniques are not required, which are commonly considered to be the main bottleneck in the simulations of large deformation by using the finite element method. By means of this finite volume method, an approach has been developed in the framework of “metallo-thermo-mechanics” to simulate metallic structure, temperature and stress/strain coupled in the heat treatment process. In a first step of simulation, the heat treatment solver is limited in small deformation hypothesis, and uncoupled with forging. The material is considered as elastic-plastic and takes into account of strain, strain rate and temperature effects on the yield stress. Heat generation due to deformation, heat conduction and thermal stress are considered. Temperature-dependent phase transformation, stress-induced phase transformation, latent heat, transformation stress and strain are included. These approaches are implemented into the commercial computer program MSC/SuperForge and a verification example with experimental data is given as comparison." @default.
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- W3200964462 date "2000-01-01" @default.
- W3200964462 modified "2023-09-23" @default.
- W3200964462 title "NUMERICAL SIMULATION OF FORGING AND SUBSEQUENT HEAT TREATMENT OF A ROD BY A FINITE VOLUME METHOD" @default.
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