M. Esfahani, B. Yousefi, M. Tavakkolizadeh. A mixed finite element formulation for Timoshenko fiber models based on the local stress field. 17 DOI 10.21595/vp.2018.19808
X. Long, W. Yuan, K. Tan, C. Lee. A superelement formulation for efficient structural analysis in progressive collapse. Structural Engineering and Mechanics 48(3) DOI 10.12989/sem.2013.48.3.309
X. Long, K. Tan, C. Lee. A 3D co-rotational beam element for steel and RC framed structures. Structural Engineering and Mechanics 48(5) DOI 10.12989/sem.2013.48.5.587
Z. Hu, M. Wu. Large displacement geometrically nonlinear finite element analysis of 3D Timoshenko fiber beam element. Structural Engineering and Mechanics 51(4) DOI 10.12989/sem.2014.51.4.601
T. OTANI, S. II, T. SHIGEMATSU, T. FUJINAKA, M. HIRATA, T. OZAKI, S. WADA. Computational model of coil placement in cerebral aneurysm with using realistic coil properties. JBSE 10(4) DOI 10.1299/jbse.15-00555
T. Kurokawa, M. Shigematsu, M. Kohiyama. Form finding analysis based on variational method for multistable structure utilizing snap-through behaviour. IOP Conf. Ser.: Mater. Sci. Eng. 10 (2010) DOI 10.1088/1757-899x/10/1/012156
E. Della Nave, E. Dvorkin. On the modeling of oil well drilling processes. Engineering Computations 32(2) DOI 10.1108/ec-03-2013-0093
G. Hashimoto, K. Ono, H. Okuda. Application of a fixed Eulerian mesh-based scheme based on the level set function generated by virtual nodes to large-deformation fluid-structure interaction. Interaction and multiscale mechanics 5(3) DOI 10.12989/imm.2012.5.3.287
X. Liu, M. Bradford, R. Erkmen. Time-Dependent Response of Spatially Curved Steel-Concrete Composite Members. I: Computational Modeling. J. Struct. Eng. 139(12) DOI 10.1061/(asce)st.1943-541x.0000698
M. Rao, S. Tarun, R. Schmidt, K. Schröder. Finite element modeling and analysis of piezo-integrated composite structures under large applied electric fields. Smart Mater. Struct. 25(5) (2016) DOI 10.1088/0964-1726/25/5/055044
R. Toscano, E. Dvorkin. A shell element for finite strain analyses: hyperelastic material models. Engineering Computations 24(5) DOI 10.1108/02644400710755898
Y. Doh, C. Hong. Progressive Failure Analysis for Filament Wound Pressure Vessel. Journal of Reinforced Plastics and Composites 14(12) (2016) DOI 10.1177/073168449501401203
A. Barraco, M. Munteanu. A Special Finite Element for Static and Dynamic Study of Mechanical Systems under Large Motion, Part 1. Revue Européenne des Éléments Finis 11(6) (2012) DOI 10.3166/reef.11.773-790
M. Munteanu, A. Barraco. A Special Finite Element for Static and Dynamic Study of Mechanical Systems under Large Motion, Part 2. Revue Européenne des Éléments Finis 11(6) (2012) DOI 10.3166/reef.11.791-814
T. Sawada, A. Tezuka. LLM and X-FEM based interface modeling of fluid–thin structure interactions on a non-interface-fitted mesh. Comput Mech 48(3) (2011) DOI 10.1007/s00466-011-0600-y
S. Chang, S. Kim, M. Kim. Stability of Shear Deformable Thin-Walled Space Frames and Circular Arches. Journal of Engineering Mechanics 122(9) DOI 10.1061/(asce)0733-9399(1996)122:9(844)
C. Martínez, R. Goncalves. Laying Modeling of Submarine Pipelines Using Contact Elements into a Corotational Formulation. J. Offshore Mech. Arct. Eng. 125(2) DOI 10.1115/1.1555117
C. Meier, A. Popp, W. Wall. Geometrically Exact Finite Element Formulations for Slender Beams: Kirchhoff–Love Theory Versus Simo–Reissner Theory. Arch Computat Methods Eng 26(1) (2017) DOI 10.1007/s11831-017-9232-5
M. Sharifnia. A new beam element for analysis of planar large deflection. J Braz. Soc. Mech. Sci. Eng. 40(2) (2018) DOI 10.1007/s40430-018-0970-6
M. Ritto-Corrêa, D. Camotim. On the differentiation of the Rodrigues formula and its significance for the vector-like parameterization of Reissner-Simo beam theory. Int. J. Numer. Meth. Engng. 55(9) (2002) DOI 10.1002/nme.532