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Homogenization and Global Responses of Inhomogeneous Spherical Nonlinear Elastic Shells
Authors:Yi-Chao Chen  K. R. Rajagopal  Lewis Wheeler
Affiliation:(1) Department of Mechanical Engineering, University of Houston, Houston, TX 77204-4006, USA;(2) Department of Mechanical Engineering, Texas A&M University, College Station, TX 77843-3123, USA
Abstract:Homogenization of radially inhomogeneous spherical nonlinear elastic shells subject to internal pressure is studied. The equivalent homogeneous material is defined in such a way that it gives rise to exactly the same global response to the pressure load as that of the inhomogeneous shell. For a shell with general strain–energy function and inhomogeniety, the strain–energy function of the equivalent homogeneous material is determined explicitly. The resulting formula is used to study layered composite shells. The equivalent homogeneous material for an infinitely fine layered composite shell is examined, and is found to give not only the same global response, but also the same average stress field as the composite shell does.
Keywords:homogenization theory  nonlinear elastic material  inhomogeneous material  layered composite material
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