A meshfree method based on adaptive refinement method and its application for deformation analysis

변형해석을 위한 적응적 세분화방법에 기초한 무요소법

  • Han, Kyu-Taek (Department of Mechanical Engineering, Pukyong National University)
  • 한규택 (부경대학교 기계공학과)
  • Received : 2012.11.22
  • Accepted : 2013.02.15
  • Published : 2013.03.29

Abstract

The finite element method(FEM) presents some limitations when the mesh becomes highly distorted. For analysis of metal forming processes with large deformation, the conventional finite element method usually requires several remeshing operations due to severe mesh distortion. The new computational method developed in the recent years, usually designated by meshfree method, offers an attractive approach to avoid those time-consuming remeshing efforts. This new method uses a set of points to represent the problem domain with no need of an additional mesh. Also this new generation of computational method provides a higher rate of convergence than that of the conventional finite element methods. One of the promising applications of meshfree methods is the adaptive refinement for problems having multi-scale nature. In this study, an adaptive node generation procedure is proposed and also to illustrate the efficiency of proposed method, several numerical examples are presented.

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