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EN
The authors deal with the numerical problem of volumetric locking occurring in finite element simulation of metal forming processes and other problems characterized with incompressible deformation. Volumetric locking is present in all finite elements based on the standard displacement formulation as well as in mixed elements using equal order interpolation for displacements and pressure. Special stabilizing techniques are necessary in order to avoid volumetric locking in such useful elements as triangles and tetrahedra with linear interpolation of displacements and pressure. An original method to eliminate volumetric locking has been developed and applied to analysis of metal forming problems. The stabilization method, called CBS (Characteristics based Split), is based on the splitting of the Stokes equations describing elasto ? plastic deformation of the material. The split algorithm has been implemented within an explicit dynamic finite element code. Numerical examples of metal forming simulation demonstrate effectiveness and correctness of the theoretical formulation and numerical algorithm.
2
Content available remote The characteristic-based-split (CBS) algorithm, stability and boundary conditions
EN
Recently several papers were published on the subject of the CBS algorithm. This paper presents a brief summary of the theory of the algorithm and some recent findings on stabilization procedures and appropriate boundary conditions. Several solutions are also presented in this paper.
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