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The International journal of pressure vessels and piping, 2011-10, Vol.88 (10), p.434-447
2011

Details

Autor(en) / Beteiligte
Titel
Comparison of fracture strain based ductile failure simulation with experimental results
Ist Teil von
  • The International journal of pressure vessels and piping, 2011-10, Vol.88 (10), p.434-447
Ort / Verlag
Kidlington: Elsevier Ltd
Erscheinungsjahr
2011
Link zum Volltext
Quelle
Access via ScienceDirect (Elsevier)
Beschreibungen/Notizen
  • This paper provides experimental validation of the approach for simulating ductile failure using finite element methods, recently proposed by the authors. The proposed method is based on a phenomenological stress-modified fracture strain model. Incremental damage is defined by the ratio of the plastic strain increment to the fracture strain, and total damage is calculated using linear summation. When the accumulated damage becomes unity, all stress components at the finite element gauss point are reduced to a small value to simulate progressive failure. The proposed method is validated against four experimental data sets of cracked specimens made of three different materials. Despite the simplicity of the proposed method, the simulated results agree well with experimental data for all cases considered, providing sufficient confidence in the use of the proposed method to simulate ductile failure. ► This paper provides experimental validation of the approach for simulating ductile failure using finite element methods, recently proposed by the authors. ► The method is based on a phenomenological stress-modified fracture strain model and incremental damage is defined by the ratio of the plastic strain increment to the fracture strain. ► The proposed method is validated against four experimental data sets of cracked specimens made of three different materials. ► We found that, despite the simplicity of the proposed method, the simulated results agree well with experimental data for all cases considered.

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