Back to Search
Start Over
Advances in FE explicit formulation for simulation of metalforming processes
- Source :
- Scipedia Open Access, Scipedia SL
- Publication Year :
- 2019
-
Abstract
- This paper presents some advances of finite element explicit formulation for simulation of metal forming processes. Because of their computational efficiency, finite element programs based on the explicit dynamic formulation proved to be a very attractive tool for the simulation of metal forming processes. The use of explicit programs in the sheet forming simulation is quite common, the possibilities of these codes in bulk forming simulation in our opinion are still not exploited sufficiently. In our paper, we will consider aspects of bulk forming simulation. We will present new formulations and algorithms developed for bulk metal forming within the explicit formulation. An extension of a finite element code for the thermomechanical coupled analysis is discussed. A new thermomechanical constitutive model developed by the authors and implemented in the program is presented. A new formulation based on the so-called split algorithm allows us to use linear triangular and tetrahedral elements in the analysis of large plastic deformations characteristic to forming processes. Linear triangles and tetrahedra have many advantages over quadrilateral and hexahedral elements. Linear triangles and tetrahedra based on the standard formulations exhibit volumetric locking and are not suitable for large plastic strain simulation. The new formulation allows to overcome this difficulty. New formulations and algorithms have been implemented in the finite element code Stampack developed at the International Centre for Numerical Methods in Engineering in Barcelona. Numerical examples illustrate some of the possibilities of the finite element code developed and validate new algorithms.
- Subjects :
- Engineering, Civil
Materials science
Constitutive equation
Mechanical engineering
Engineering, Multidisciplinary
Industrial and Manufacturing Engineering
Computational science
Engineering, Ocean
Engineering, Aerospace
Engineering, Biomedical
Metal forming
Quadrilateral
Numerical analysis
Metals and Alloys
Forming processes
Computer Science, Software Engineering
Finite element method
Engineering, Marine
Computer Science Applications
Engineering, Manufacturing
Engineering, Mechanical
Modeling and Simulation
Engineering, Industrial
Ceramics and Composites
Tetrahedron
Hexahedron
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Scipedia Open Access, Scipedia SL
- Accession number :
- edsair.doi.dedup.....acad3d776f129986644a405c3e33bdc6