Mechanical Metamaterials Made by Photopolymerisation: Unit Cells, Boundary Effects, Nonlinearity and Qualification
Segurola, Juan
Mechanical metamaterials derive performance from architecture, but photopolymerisation introduces dimensional error, boundary truncation and nonlinear constituent behaviour that can shift the apparent unit-cell response. ER-361 establishes a qualification route from as-built geometry to specimen-scale mechanics. Relative density, cell count and slenderness are linked to stiffness, instability and failure, while CT or optical metrology is paired with full-field deformation and force-displacement data. Cell-count and specimen-size sweeps expose boundary effects; geometric perturbations test sensitivity to manufacturing variation. The review therefore separates a transferable architectural response from behaviour that exists only for one specimen size, boundary condition or as-printed defect population.
ER-361.
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DOI de esta versión 10.5281/zenodo.23126827 · Todas las versiones en Zenodo