Collapse of Orthotropic Spherical Shells

We report on the buckling and subsequent collapse of orthotropic elastic spherical shells under volume and pressure control. Going far beyond what is known for isotropic shells, a rich morphological phase space with three distinct regimes emerges upon variation of shell slenderness and degree of ort...

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Veröffentlicht in:Physical review letters 2019-08, Vol.123 (5), p.058002-058002, Article 058002
Hauptverfasser: Munglani, Gautam, Wittel, Falk K, Vetter, Roman, Bianchi, Filippo, Herrmann, Hans J
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Sprache:eng
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Zusammenfassung:We report on the buckling and subsequent collapse of orthotropic elastic spherical shells under volume and pressure control. Going far beyond what is known for isotropic shells, a rich morphological phase space with three distinct regimes emerges upon variation of shell slenderness and degree of orthotropy. Our extensive numerical simulations are in agreement with experiments using fabricated polymer shells. The shell buckling pathways and corresponding strain energy evolution are shown to depend strongly on material orthotropy. We find surprisingly robust orthotropic structures with strong similarities to stomatocytes and tricolpate pollen grains, suggesting that the shape of several of Nature's collapsed shells could be understood from the viewpoint of material orthotropy.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.123.058002