--- name: material-model-library description: Biomaterial constitutive model library skill providing validated material properties for biological tissues and implant materials allowed-tools: - Read - Write - Glob - Grep - Edit - Bash metadata: specialization: biomedical-engineering domain: science category: Biomechanics and Structural Analysis skill-id: BME-SK-012 --- # Material Model Library Skill ## Purpose The Material Model Library Skill provides validated constitutive models and material properties for biological tissues and implant materials, supporting accurate biomechanical simulations and device design. ## Capabilities - Tissue material property database (bone, cartilage, soft tissue) - Hyperelastic model parameter sets (Mooney-Rivlin, Ogden) - Viscoelastic and poroelastic models - Implant material database (Ti-6Al-4V, CoCrMo, PEEK) - Degradation model parameters - Temperature and rate-dependent properties - Anisotropic material definitions - Age and disease-state variations - Material property uncertainty quantification - Literature reference compilation - Custom material fitting tools ## Usage Guidelines ### When to Use - Assigning material properties for FEA - Selecting materials for device design - Validating simulation models - Conducting parametric studies ### Prerequisites - Analysis type defined - Loading conditions characterized - Relevant tissue/material types identified - Accuracy requirements established ### Best Practices - Verify material sources and validation status - Consider patient-specific variations - Account for rate-dependency when relevant - Document material model assumptions ## Process Integration This skill integrates with the following processes: - Finite Element Analysis for Medical Devices - Biomaterial Selection and Characterization - Orthopedic Implant Biomechanical Testing - Scaffold Fabrication and Characterization ## Dependencies - Material property databases - Literature compilations - Experimental characterization data - FEA software material libraries - Material testing standards ## Configuration ```yaml material-model-library: tissue-types: - cortical-bone - cancellous-bone - cartilage - tendon - ligament - muscle - skin - vascular implant-materials: - Ti-6Al-4V - CoCrMo - PEEK - UHMWPE - stainless-steel model-types: - linear-elastic - hyperelastic - viscoelastic - poroelastic ``` ## Output Artifacts - Material property datasets - Constitutive model parameters - Material cards for FEA software - Property validation reports - Literature reference lists - Uncertainty quantification data - Material selection recommendations - Model fitting results ## Quality Criteria - Material properties from validated sources - Model parameters appropriate for loading conditions - Uncertainty properly characterized - References properly documented - Models validated against experimental data - Assumptions clearly stated