Belda, RicardoPalomar, MartaMarco Esteban, MiguelVercher Martínez, AnaGiner, Eugenio2022-07-182022-07-182021-01-010928-4931https://hdl.handle.net/10016/35484Open cell polyurethane foams are often used as cancellous bone surrogates because of their similarities in morphology and mechanical response. In this work, open cell polyurethane foams of three different densities are characterized from morphometric and mechanical perspectives. The analysis of micro-computed tomography images has revealed that the high density foams present the greatest inhomogeneities. Those inhomogeneities promoted the failure location. We have used the finite element models as a tool to estimate elastic and failure properties that can be used in numerical modeling. Furthermore, we have assessed the anisotropic mechanical response of the foams, whose differences are related to the morphometric inhomogeneities. We found significant relationships between morphometry and the elastic and failure response. The detailed information about morphometry, elastic constants and strength limits provided in this work can be of interest to researchers and practitioners that often use these polyurethane foams in orthopedic implants and cement augmentation evaluations.13eng© 2020 The AuthorsAtribución-NoComercial-SinDerivadas 3.0 EspañaCompression fracture characterizationDigital image correlationMicro-feMorphometric characterizationOpen cell foamOpen cell polyurethane foam compression failure characterization and its relationship to morphometryresearch articleIngeniería IndustrialIngeniería Mecánicahttps://doi.org/10.1016/j.msec.2020.111754open access113Materials Science & Engineering C-Materials for Biological Applications120AR/0000028099