Compliance minimization of thin plates made of material with predefined Kelvin moduli. Part I. Solving the local optimization problem

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Authors

  • G. Dzierżanowski Faculty of Civil Engineering, Warsaw University of Technology, Poland
  • T. Lewiński Faculty of Civil Engineering, Warsaw University of Technology, Poland

Abstract

The paper deals with compliance minimization of a transversely homogeneous plate, subjected to the in-plane and transverse loadings acting simultaneously. The set of design variables includes the eigenstates of Hooke’s tensor whose eigenvalues, i.e. Kelvin moduli fields, are assumed to be fixed on the middle plane of the plate, but no isoperimetric condition is imposed. The optimization task reduces to an equilibrium problem of an effective hyperelastic plate. The effective potential is explicitly expressed in terms of the invariants of both the strain fieldsinvolved.

Keywords:

free material optimization, compliance minimization, anisotropic plates

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