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Author

  • Nguyen-Xuan, Hung (3)
  • Rabczuk, Timon (3)
  • Thai, Chien H. (3)
  • Bordas, Stéphane Pierre Alain (2)
  • Nguyen-Thanh, Nhon (2)
  • Ferreira, A.J.M. (1)
  • Le, T.H. (1)
  • Nguyen-Thoi, T. (1)

Keywords

  • Angewandte Mathematik (3)
  • Strukturmechanik (3)

Year of publication

  • 2012 (1)
  • 2014 (1)
  • 2015 (1)

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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
Isogeometric analysis of laminated composite plates using the higher-order shear deformation theory (2015)
Thai, Chien H. ; Nguyen-Xuan, Hung ; Bordas, Stéphane Pierre Alain ; Nguyen-Thanh, Nhon ; Rabczuk, Timon
Isogeometric analysis of laminated composite plates using the higher-order shear deformation theory
Static, free vibration and buckling analysis of laminated composite Reissner-Mindlin plates using NURBS-based isogeometric approach (2012)
Thai, Chien H. ; Nguyen-Xuan, Hung ; Nguyen-Thanh, Nhon ; Le, T.H. ; Nguyen-Thoi, T. ; Rabczuk, Timon
This paper presents a novel numerical procedure based on the framework of isogeometric analysis for static, free vibration, and buckling analysis of laminated composite plates using the first-order shear deformation theory. The isogeometric approach utilizes non-uniform rational B-splines to implement for the quadratic, cubic, and quartic elements. Shear locking problem still exists in the stiffness formulation, and hence, it can be significantly alleviated by a stabilization technique. Several numerical examples are presented to show the performance of the method, and the results obtained are compared with other available ones.
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