The application of the linear micropolar theory to the strength analysis of bioceramic materials for bone reconstruction is described. Micropolar elasticity allows better results to be obtained for microstructural and singular domains as compared to the classical theory of elasticity. The fundamental equations of the Cosserat continuum are cited. The description of FEM implementation of micropolar elasticity is given. The results of solving selected 3D test problems are presented. Comparison of classical and micropolar solutions is discussed.

Application of the Micropolar Theory to the Strength Analysis of Bioceramic Materials for Bone Reconstruction

Eremeyev V. A.
;
2016-01-01

Abstract

The application of the linear micropolar theory to the strength analysis of bioceramic materials for bone reconstruction is described. Micropolar elasticity allows better results to be obtained for microstructural and singular domains as compared to the classical theory of elasticity. The fundamental equations of the Cosserat continuum are cited. The description of FEM implementation of micropolar elasticity is given. The results of solving selected 3D test problems are presented. Comparison of classical and micropolar solutions is discussed.
2016
Bones; Cosserat continuum; Finite element analysis; Micropolar elasticity; Porous media; Stress concentration
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11584/307215
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