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- W777213041 abstract "Since strain smoothing approach, particularly smoothed finite element method (S-FEM) in FEM, was introduced, S-FEM has been highlighted due to its strengths, effectively alleviating volumetric locking and distorted meshes. Despite these positives, this approach is still remained in 2D and linear elasticity. We provided remarkable results for volumetric locking with nearly incompressible neo-Hookean material in 2D using node-based S-FEM (NS-FEM) and edge-based S-FEM (ES-FEM). In this report, we extend S-FEM in 2D to 3D with face-based S-FEM (FS-FEM), and introduce NS-FEM in 3D. Benchmarking tests, simple shear and Lateral extension with Dirichlet and Neumann boundary conditions, and “Not-so-simple” shear deformation with Cardiff School of Engineering, Cardiff University, The Queen’s Building, The Parade, Cardiff, Wales, CF24 3AA, UK. Cardiff School of Mathematics, Cardiff University, Senghennydd Road, Cardiff, Wales, CF24 4AG, UK. Universite du Luxembourg, Faculte des Sciences, de la Technologies et de la Communication, Campus Kirchberg, 6, rue Coudenhove-Kalergi, L-1359, Luxembourg." @default.
- W777213041 created "2016-06-24" @default.
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- W777213041 date "2014-01-01" @default.
- W777213041 modified "2023-09-23" @default.
- W777213041 title "Strain smoothing technique in 3D for nearly incompressible neo-Hookean material" @default.
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