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Finite Element Modelling of a Cellular Electric Microenvironment
Published on: May 18, 2021
Finite element modeling as a tool for predicting the fracture behavior of robocast scaffolds
Pedro Miranda1, Antonia Pajares, Fernando Guiberteau
1Departamento de Ingeniería Mecánica, Energética y de los Materiales, Universidad de Extremadura, Avda de Elvas s/n, 06071 Badajoz, Spain. pmiranda@unex.es
Abstract:
The use of finite element modeling to calculate the stress fields in complex scaffold structures and thus predict their mechanical behavior during service (e.g., as load-bearing bone implants) is evaluated. The method is applied to identifying the fracture modes and estimating the strength of robocast hydroxyapatite and beta-tricalcium phosphate scaffolds, consisting of a three-dimensional lattice of interpenetrating rods. The calculations are performed for three testing configurations: compression, tension and shear. Different testing orientations relative to the calcium phosphate rods are considered for each configuration. The predictions for the compressive configurations are compared to experimental data from uniaxial compression tests.

