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Document Type

  • Article (25)
  • Conference Proceeding (1)

Author

  • Bordas, Stéphane Pierre Alain (26)
  • Rabczuk, Timon (26)
  • Nguyen-Xuan, Hung (10)
  • Kerfriden, Pierre (9)
  • Nguyen-Thanh, Nhon (7)
  • Natarajan, S. (4)
  • Zi, Goangseup (3)
  • Bakar, I. (2)
  • Beex, L.A.A. (2)
  • Budarapu, Pattabhi Ramaiah (2)
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Institute

  • Institut für Strukturmechanik (26)
  • Juniorprofessur Stochastik und Optimierung (2)

Keywords

  • Angewandte Mathematik (26)
  • Strukturmechanik (26)
  • Stochastik (2)

Year of publication

  • 2014 (8)
  • 2013 (6)
  • 2012 (4)
  • 2015 (3)
  • 2010 (2)
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Optimization of Elastic Properties and Weaving Patterns of Woven Composites (2013)
Bakar, I. ; Kramer, O. ; Bordas, Stéphane Pierre Alain ; Rabczuk, Timon
Optimization of Elastic Properties and Weaving Patterns of Woven Composites
Explicit finite deformation analysis of isogeometric membranes (2014)
Chen, Lei ; Nguyen-Thanh, Nhon ; Nguyen-Xuan, Hung ; Rabczuk, Timon ; Bordas, Stéphane Pierre Alain ; Limbert, Georges
Explicit finite deformation analysis of isogeometric membranes
Isogeometric analysis of laminated composite and sandwich plates using a new inverse trigonometric shear deformation theory (2014)
Thai, Chien H. ; Ferreira, A.J.M. ; Bordas, Stéphane Pierre Alain ; Rabczuk, Timon ; Nguyen-Xuan, Hung
Isogeometric analysis of laminated composite and sandwich plates using a new inverse trigonometric shear deformation theory
Size dependent free flexural vibration behavior of functionally graded nanoplates (2012)
Natarajan, S. ; Chakraborty, S. ; Thangavel, M. ; Bordas, Stéphane Pierre Alain ; Rabczuk, Timon
Size dependent free flexural vibration behavior of functionally graded nanoplates
Isogeometric finite element analysis using polynomial splines over hierarchical T-meshes (2010)
Nguyen-Thanh, Nhon ; Nguyen-Xuan, Hung ; Bordas, Stéphane Pierre Alain ; Rabczuk, Timon
Isogeometric finite element analysis has become a powerful alternative to standard finite elements due to their flexibility in handling complex geometries. One major drawback of NURBS based isogeometric finite elements is their less effectiveness of local refinement. In this study, we present an alternative to NURBS based isogeometric finite elements that allow for local refinement. The idea is based on polynomial splines and exploits the flexibility of T-meshes for local refinement. The shape functions satisfy important properties such as non-negativity, local support and partition of unity. We will demonstrate the efficiency of the proposed method by two numerical examples.
A Meshless Adaptive Multiscale Method for Fracture (2015)
Yang, Shih-Wei ; Budarapu, Pattabhi Ramaiah ; Mahapatra, D.R. ; Bordas, Stéphane Pierre Alain ; Zi, Goangseup ; Rabczuk, Timon
A Meshless Adaptive Multiscale Method for Fracture
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