Adaptive refinement of all-hexahedral elements for three-dimensional metal forming analysis
نویسندگان
چکیده
In many 3-D forging simulations, the master-grid method or uniform-grid method is adopted as an effect tool for hexahedral element mesh generation, because the method is robust and reliable to construct the intermediate mesh during forging simulation. However, almost equalsized element mesh is employed regardless of the local characteristics of the deforming region. In order to overcome this drawback, a new refinement technique for hexahedral element mesh is proposed by selecting the element regions to be refined and iteratively inserting the zerothickness element layers into the necessary interfaces of elements. To generate refined mesh adaptive to the gradient of physical property or to the complexity of geometry, the desired mesh density is obtained from the Z–Z posteriori error analysis. In the course of expanding and smoothing the refined mesh to ensure the desired mesh density, the weighting factor based on mesh density of neighbor entities is introduced to the conventional Laplacian smoothing method. Comparative simulations of the selected forging processes have shown that the proposed refinement technique is effective from the viewpoint of computational economy of computations and accuracy. 2006 Elsevier B.V. All rights reserved.
منابع مشابه
A Density Control Based Adaptive Hexahedral Mesh Generation Algorithm
A density control based adaptive hexahedral mesh generation algorithm for three dimensional models is presented in this paper. The first step of this algorithm is to identify the characteristic boundary of the solid model which needs to be meshed. Secondly, the refinement fields are constructed and modified according to the conformal refinement templates, and used as a metric to generate an ini...
متن کاملConformal Refinement of All-Quadrilateral and All-Hexahedral Meshes According to an Anisotropic Metric
Conformal refinement using a shrink and connect strategy known as pillowing or buffer insertion contracts contiguous elements of an all-quadrilateral or an all-hexahedral mesh and reconnects them to locally increase vertex density. Using layers as shrink sets, the present method anisotropically refines an initial mesh to match a prescribed size map expressed as a metric field. An anisotropic sm...
متن کاملFinite element algorithm with adaptive quadtree-octree mesh refinement
Certain difficulties with the use of quadrilateral or hexahedral finite elements are related to mesh refinement and to element compatibility and quality after refinement. In this paper, special refinement elements are presented that make possible connecting two special elements to one edge of an 8-node quadrilateral element (2D). The main idea in refinement elements is to place some midside nod...
متن کاملFinite element mesh generation and adaptive meshing
This review paper gives a detailed account of the development of mesh generation techniques on planar regions, over curved surfaces and within volumes for the past years. Emphasis will be on the generation of the unstructured meshes for purpose of complex industrial applications and adaptive refinement finite element analysis. Over planar domains and on curved surfaces, triangular and quadrilat...
متن کاملHexahedral Mesh Refinement Using an Error Sizing Function
Hexahedral Mesh Refinement Using an Error Sizing Function Gaurab Paudel Department of Civil and Environmental Engineering Master of Science The ability to effectively adapt a mesh is a very important feature of high fidelity finite element modeling. In a finite element analysis, a relatively high node density is desired in areas of the model where there are high error estimates from an initial ...
متن کامل