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Material and geometric nonlinear isoparametric spline finite strip analysis of perforated thin-walled steel structures—Numerical investigations
Authors:Zhenyu Yao  Kim J.R. Rasmussen
Affiliation:School of Civil Engineering, The University of Sydney, Sydney, NSW 2006, Australia
Abstract:The theoretical developments of a material inelastic and geometric nonlinear analysis by use of the isoparametric spline finite strip method (ISFSM) are presented in a companion paper (Yao and Rasmussen (submitted) [1]). In the present paper, the numerical implementation of the analysis is reported, including nonlinear solution techniques, inelastic material models, selective reduced integration strategies, convergence criteria, and solution procedures. The reliability and efficiency of the method are demonstrated by a number of numerical examples, including analyses of flat plates with different material plasticity models, a classical nonlinear shell problem, perforated flat and stiffened plates, and perforated stiffened channel section storage rack uprights.
Keywords:Isoparametric spline finite strip method   Material inelasticity   Geometric nonlinear analysis   Thin-walled structures   Folded plate   Perforations   Post-buckling
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