Publication | Open Access
An Eulerian approach for die compaction processes
35
Citations
6
References
1991
Year
EngineeringMultiscale MechanicsMechanical EngineeringComputational MechanicsDie CompactionMechanics ModelingMechanicsIntegrable ProbabilityNumerical SimulationEulerian ApproachDeformation ModelingMaterial NonlinearitiesDirichlet FormMechanical ModelingSolid MechanicsMaterial MechanicsMechanical DeformationFinite Element MeshFinite Element MethodMultiscale MechanicMechanics Of Materials
Abstract For the analysis of deformation processes the Eulerian approach is usually formulated in material velocities. To describe the die compaction of compressible media, this paper presents an Eulerian simulation method, basically expressed in displacements. The material behaviour is modelled by the theory of elastoplasticity. Frictional interaction with the surroundings is included. As a spatially fixed finite element mesh is applied, rezoning is governed by the process specification and not, as in the Lagrangian approach, by the mesh distortion. The solution scheme, using a Newton‐Raphson algorithm, is considered in detail. A consistent iteration procedure is derived. Examples demonstrate the merits of the method developed.
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