Title of article :
Mesh motion techniques for the ALE formulation in 3D large deformation problems
Author/Authors :
JosE Lu s Farinatti Aymone، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Abstract :
Efficient mesh motion techniques are a key issue to achieve satisfactory results in the arbitrary
Lagrangian–Eulerian (ALE) finite element formulation when simulating large deformation problems
such as metal-forming. In the updated Lagrangian (UL) formulation, mesh and material movement
are attached and an excessive mesh distortion usually appears. By uncoupling mesh movement from
material movement, the ALE formulation can relocate the mesh to avoid distortion. To facilitate
the calculation process, the ALE operator is split into two steps at each analysis time step: UL
step (where deformation due to loading is calculated without convective terms) and Eulerian step
(where mesh motion is applied). In this work, mesh motion is performed by new nodal relocation
methods, developed for eight-node hexahedral elements, which can move internal and boundary nodes,
improving and concentrating the mesh in critical zones. After mesh motion, data is transferred from
the UL mesh to the relocated mesh using an expansion of stresses in a Taylor’s series. Two numerical
applications are presented, comparing results of UL and ALE formulation with results found in the
literature.
Keywords :
mesh motion , Three dimensional , large deformation , finiteelement , metal-forming , arbitrary Lagrangian–Eulerian
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering