Modeling of Size Effects in Bending of Perforated Cosserat Plates
Author(s) -
Roman Kvasov,
Lev Steinberg
Publication year - 2017
Publication title -
modelling and simulation in engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.264
H-Index - 20
eISSN - 1687-5591
pISSN - 1687-5605
DOI - 10.1155/2017/5246197
Subject(s) - finite element method , parametric statistics , uniqueness , kinematics , mathematics , elasticity (physics) , convergence (economics) , numerical analysis , mathematical analysis , bending , structural engineering , mechanics , materials science , classical mechanics , physics , engineering , composite material , statistics , economics , economic growth
This paper presents the numerical study of Cosserat elastic plate deformation based on the parametric theory of Cosserat plates, recently developed by the authors. The numerical results are obtained using the Finite Element Method used to solve the parametric system of 9 kinematic equations. We discuss the existence and uniqueness of the weak solution and the convergence of the proposed FEM. The Finite Element analysis of clamped Cosserat plates of different shapes under different loads is provided. We present the numerical validation of the proposed FEM by estimating the order of convergence, when comparing the main kinematic variables with an analytical solution. We also consider the numerical analysis of plates with circular holes. We show that the stress concentration factor around the hole is less than the classical value, and smaller holes exhibit less stress concentration as would be expected on the basis of the classical elasticity
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