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Data from: [1] Ritter, J.; Shegufta, S. & Zaiser, M. "Effects of disorder on deformation and failure of brittle porous materials" arXiv, 2023 Abstract: from [1] The mechanical behavior of porous materials depends strongly on porosity and pore geometry, but also on morphological parameters characterizing the spatial arrangement of pores. Here we use bond-based peridynamics to study effects of disorder on the deformation and failure behavior of brittle porous solids both in the quasi-static limit and in case of dynamic loading scenarios. We show that structural disorder, which has a strong influence on stiffness, strength and toughness in the quasi-static limit, becomes less relevant under dynamic loading conditions. Contact: Jonas Ritter Institute of Materials Simulation Friedrich-Alexander-Universität Erlangen-Nürnberg Dr.-Mack-Str. 77 90762 Fürth Germany Software: Peridigm Content: The dataset consists of the input geometries as well as the combined results (values for each simulation and mean values and standard deviation of each parameter set). Each folder contains a README.md that lists the content and provides description of the data and further metadata.
This work was funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) - 377472739/GRK 2423/1-2019 (Research Training Group GRK 2423 'Fracture across Scales - FRASCAL'). The authors gratefully acknowledge this support.
Porous material, Peridynamics, Failure, Disorder
Porous material, Peridynamics, Failure, Disorder
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