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  • The model of progressive failure of composite materials considering material non-linearity was developed and implemented into the Abaqus FE software. Extended Puck failure criterion for 3D stress state was used for failure prediction. Furthermore, a simplified approach for simulation of delamination was considered. For the progressive failure simulation, the stiffness matrix degradation was used and the degradation parameters were function of a fracture angle. The model was tested on problems of a pin-loaded composite plate and of a composite tube subjected to compressive loading perpendicular to the tube axis.
  • The model of progressive failure of composite materials considering material non-linearity was developed and implemented into the Abaqus FE software. Extended Puck failure criterion for 3D stress state was used for failure prediction. Furthermore, a simplified approach for simulation of delamination was considered. For the progressive failure simulation, the stiffness matrix degradation was used and the degradation parameters were function of a fracture angle. The model was tested on problems of a pin-loaded composite plate and of a composite tube subjected to compressive loading perpendicular to the tube axis. (en)
Title
  • Model of Progressive Failure of Composite Materials using 3D Puck Failure Criterion
  • Model of Progressive Failure of Composite Materials using 3D Puck Failure Criterion (en)
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  • Model of Progressive Failure of Composite Materials using 3D Puck Failure Criterion
  • Model of Progressive Failure of Composite Materials using 3D Puck Failure Criterion (en)
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  • RIV/49777513:23520/14:43922869!RIV15-GA0-23520___
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  • P(ED1.1.00/02.0090), P(GAP101/11/0288), S
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  • 29742
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  • RIV/49777513:23520/14:43922869
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  • Progressive failure, composite, Puck criterion, finite element analysis. (en)
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  • [43A2627A0728]
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  • Zemčík, Robert
  • Bek, Lukáš
http://localhost/t...ganizacniJednotka
  • 23520
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