About: Elastic-Plastic FEM Modelling of the Single Overload Effect on the Fatigue Crack Front Shape     Goto   Sponge   NotDistinct   Permalink

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  • A 3D elastic-plastic FEM model for prediction of planar fatigue crack growth is presented. The model is based on the concept of local low-cycle fatigue of a small material volume in front of a high cycle crack. A local crack front advance is modelled by the successive release of finite element mesh nodes in the plane of propagation. The release of the nodes is controlled by the value of the Smith-Watson-Topper fatigue damage parameter in the surrounding elements. The effect of the single tensile overload on the fatigue crack growth and on the fatigue crack front shape is modelled.
  • A 3D elastic-plastic FEM model for prediction of planar fatigue crack growth is presented. The model is based on the concept of local low-cycle fatigue of a small material volume in front of a high cycle crack. A local crack front advance is modelled by the successive release of finite element mesh nodes in the plane of propagation. The release of the nodes is controlled by the value of the Smith-Watson-Topper fatigue damage parameter in the surrounding elements. The effect of the single tensile overload on the fatigue crack growth and on the fatigue crack front shape is modelled. (en)
Title
  • Elastic-Plastic FEM Modelling of the Single Overload Effect on the Fatigue Crack Front Shape
  • Elastic-Plastic FEM Modelling of the Single Overload Effect on the Fatigue Crack Front Shape (en)
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  • Elastic-Plastic FEM Modelling of the Single Overload Effect on the Fatigue Crack Front Shape
  • Elastic-Plastic FEM Modelling of the Single Overload Effect on the Fatigue Crack Front Shape (en)
skos:notation
  • RIV/68407700:21340/11:00187308!RIV12-GA0-21340___
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  • P(GAP108/10/2049)
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  • 196937
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  • RIV/68407700:21340/11:00187308
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  • fatigue crack growth; FEM model; SWT parameter; low-cycle fatigue; node release schema; single overload (en)
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  • CH - Švýcarská konfederace
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  • 488-489
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  • Materna, Aleš
  • Oliva, Vladislav
issn
  • 1013-9826
number of pages
http://bibframe.org/vocab/doi
  • 10.4028/www.scientific.net/KEM.488-489.589
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  • 21340
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