적응성 선향저감적분법에 의한 요소의 안정성 향상과 강소성 유한요소해석에의 적용Improvement of Element Stability Using Adaptive Directional Reduced Integration and its Application to Rigid-Plastic Finite Element Method

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In the analysis of metal forming processes by the finite element method, there are many numerical instabilities such as element locking, hourglass mode and shear locking. These instabilities may have a bad effect upon accuracy and convergence. The present work is concerned with improvement of stability and efficiency in two-dimensional rigid-plastic finite element method using various type of elemenmts and numerical intergration schemes. As metal forming examples, upsetting and backward extrusion are taken for comparison among the methods: various element types and numerical integration schemes. Comparison is made in terms of stability and efficiency in element behavior and computational efficiency and a new scheme of adaptive directional reduced integration is introduced. As a result, the finite element computation has been stabilized from the viewpoint of computational time, convergency, and numerical instability.
Publisher
한국정밀공학회
Issue Date
1995-03
Language
Korean
Citation

한국정밀공학회지, v.12, no.3, pp.32 - 41

ISSN
1225-9071
URI
http://hdl.handle.net/10203/76365
Appears in Collection
ME-Journal Papers(저널논문)
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