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Home Selected publications Topology optimization of bone using cubic material design and evolutionary methods based on internal remodeling
Topology optimization of bone using cubic material design and evolutionary methods based on internal remodeling PDF Print E-mail
I.Goda, J.-F. Ganghoffer, S.Czarnecki, R.Czubacki, P.Wawruch, Topology optimization of bone using cubic material design and evolutionary methods based on internal remodeling,  Mechanics Research Communications, 95(2019), pp. 52-60
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Highlights
• Optimal bone tissue mechanical properties and anisotropy directions are computed based on Cubic Material Design for the minimum compliance optimization problem considering cubic symmetry.
• The evolution in time of internal bone density and anisotropic properties are computed based on evolutionary algorithms relying on internal remodeling simulations.
• Simulation results indicate that the proposed approaches reasonably mimic the major geometrical and material features of natural bone.
 

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Home Selected publications Topology optimization of bone using cubic material design and evolutionary methods based on internal remodeling
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