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Advances in pantographic structures: Design, manufacturing, models, experiments and image analyses

: dell’Isola, F.; Seppecher, P.; Spagnuolo, M.; Barchiesi, E.; Hild, F.; Lekszycki, T.; Giorgio, I.; Placidi, L.; Andreaus, U.; Cuomo, M.; Eugster, S.R.; Pfaff, A.; Hoschke, K.; Langkemper, R.; Turco, E.; Sarikaya, R.; Misra, A.; Angelo, M. de; D’Annibale, F.; Bouterf, A.; Pinelli, X.; Misra, A.; Desmorat, B.; Pawlikowski, M.; Dupuy, C.; Scerrato, D.; Peyre, P.; Laudato, M.; Manzari, L.; Göransson, P.; Hesch, C.; Hesch, S.; Franciosi, P.; Dirrenberger, J.; Maurin, F.; Vangelatos, Z.; Grigoropoulos, C.; Melissinaki, V.; Farsari, M.; Muller, W.; Abali, B.E.; Liebold, C.; Ganzosch, G.; Harrison, P.; Drobnicki, R.; Igumnov, L.; Alzahrani, F.; Hayat, T.


Continuum Mechanics and Thermodynamics 31 (2019), Nr.4, S.1231-1282
ISSN: 0935-1175
ISSN: 1432-0959
Fraunhofer EMI ()

In the last decade, the exotic properties of pantographic metamaterials have been investigated and different mathematical models (both discrete or continuous) have been introduced. In a previous publication, a large part of the already existing literature about pantographic metamaterials has been presented. In this paper, we give some details about the next generation of research in this field. We present an organic scheme of the whole process of design, fabrication, experiments, models and image analyses.