Wrinkling of pressurized elastic shells

We study the formation of localized structures formed by the point loading of an internally pressurized elastic shell. While unpressurized shells (such as a ping pong ball) buckle into polygonal structures, we show that pressurized shells are subject to a wrinkling instability. We present scaling la...

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Κύριοι συγγραφείς: Vella, D, Ajdari, A, Vaziri, A, Boudaoud, A
Μορφή: Journal article
Έκδοση: 2011
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author Vella, D
Ajdari, A
Vaziri, A
Boudaoud, A
author_facet Vella, D
Ajdari, A
Vaziri, A
Boudaoud, A
author_sort Vella, D
collection OXFORD
description We study the formation of localized structures formed by the point loading of an internally pressurized elastic shell. While unpressurized shells (such as a ping pong ball) buckle into polygonal structures, we show that pressurized shells are subject to a wrinkling instability. We present scaling laws for the critical indentation at which wrinkling occurs and the number of wrinkles formed in terms of the internal pressurization and material properties of the shell. These results are validated by numerical simulations. We show that the evolution of the wrinkle length with increasing indentation can be understood for highly pressurized shells from membrane theory. These results suggest that the position and number of wrinkles may be used in combination to give simple methods for the estimation of the mechanical properties of highly pressurized shells.
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spelling oxford-uuid:f43d9bef-0b53-485b-9608-d647260875bf2022-03-27T12:18:14ZWrinkling of pressurized elastic shellsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f43d9bef-0b53-485b-9608-d647260875bfMathematical Institute - ePrints2011Vella, DAjdari, AVaziri, ABoudaoud, AWe study the formation of localized structures formed by the point loading of an internally pressurized elastic shell. While unpressurized shells (such as a ping pong ball) buckle into polygonal structures, we show that pressurized shells are subject to a wrinkling instability. We present scaling laws for the critical indentation at which wrinkling occurs and the number of wrinkles formed in terms of the internal pressurization and material properties of the shell. These results are validated by numerical simulations. We show that the evolution of the wrinkle length with increasing indentation can be understood for highly pressurized shells from membrane theory. These results suggest that the position and number of wrinkles may be used in combination to give simple methods for the estimation of the mechanical properties of highly pressurized shells.
spellingShingle Vella, D
Ajdari, A
Vaziri, A
Boudaoud, A
Wrinkling of pressurized elastic shells
title Wrinkling of pressurized elastic shells
title_full Wrinkling of pressurized elastic shells
title_fullStr Wrinkling of pressurized elastic shells
title_full_unstemmed Wrinkling of pressurized elastic shells
title_short Wrinkling of pressurized elastic shells
title_sort wrinkling of pressurized elastic shells
work_keys_str_mv AT vellad wrinklingofpressurizedelasticshells
AT ajdaria wrinklingofpressurizedelasticshells
AT vaziria wrinklingofpressurizedelasticshells
AT boudaouda wrinklingofpressurizedelasticshells