Publication | Open Access
Design of cellular materials for multiscale topology optimization: application to patient-specific orthopedic devices
24
Citations
66
References
2022
Year
Tissue EngineeringEngineeringMechanical EngineeringBiofabricationComputer-aided DesignBiomedical EngineeringStructural OptimizationComputational MechanicsCustomized InsolesCellular MaterialsMesh OptimizationPatient-specific Orthopedic DevicesBiomechanicsShape OptimizationBiomaterial ModelingMultiscale Topology OptimizationMaterials ScienceBiomaterialsDesignUnstructured Mesh GenerationFunctional Tissue Engineering3D Bioprinting3D PrintingTopology OptimizationNatural SciencesStructural TopologyDesign DomainAnisotropic Mesh AdaptivityMultiscale Modeling
Abstract A flexible problem-specific multiscale topology optimization is introduced to associate different areas of the design domain with diverse microstructures extracted from a dictionary of optimized unit cells. The generation of the dictionary is carried out by exploiting micro-SIMP with AnisoTropic mesh adaptivitY (microSIMPATY) algorithm, which promotes the design of free-form layouts. The proposed methodology is particularized in a proof-of-concept setting for the design of orthotic devices for the treatment of foot diseases. Different patient-specific settings drive the prototyping of customized insoles, which are numerically verified and successively validated in terms of mechanical performances and manufacturability.
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