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An equivalent classical plate model of corrugated structures
Institution:1. Utah State University, Logan, Utah 84322, United States;2. Wayne State University, Detroit, Michigan 48202, United States;3. Purdue University, West Lafayette, Indiana 47907-2045, United States
Abstract:An equivalent classical plate model of corrugated structures is derived using the variational asymptotic method. Starting from a thin shell theory, we carry out an asymptotic analysis of the strain energy in terms of the smallness of a single corrugation with respect to the characteristic length of macroscopic deformation of the corrugated structure. We obtained the complete set of analytical formulas for effective plate stiffnesses valid for both shallow and deep corrugations. These formulas can reproduce the well-known classical plate stiffnesses when the corrugated structure is degenerated to a flat plate. The extension–bending coupling stiffnesses are obtained the first time. The complete set of relations are also derived for recovering the local fields of corrugated structures.
Keywords:Corrugated structure  Plate  Variational asymptotic method
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