Título: | NON-LINEAR BEHAVIOR AND INSTABILITY OF HYPERELASTIC MEMBRANES AND SHELLS | ||||||||||||||||||||||||||||||||||||||||||||
Autor: |
STEFANE RODRIGUES XAVIER LOPES |
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Colaborador(es): |
PAULO BATISTA GONCALVES - Orientador DJENANE CORDEIRO PAMPLONA - Coorientador |
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Catalogação: | 21/JAN/2004 | Língua(s): | PORTUGUESE - BRAZIL |
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Tipo: | TEXT | Subtipo: | THESIS | ||||||||||||||||||||||||||||||||||||||||||
Notas: |
[pt] Todos os dados constantes dos documentos são de inteira responsabilidade de seus autores. Os dados utilizados nas descrições dos documentos estão em conformidade com os sistemas da administração da PUC-Rio. [en] All data contained in the documents are the sole responsibility of the authors. The data used in the descriptions of the documents are in conformity with the systems of the administration of PUC-Rio. |
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Referência(s): |
[pt] https://www.maxwell.vrac.puc-rio.br/projetosEspeciais/ETDs/consultas/conteudo.php?strSecao=resultado&nrSeq=4414&idi=1 [en] https://www.maxwell.vrac.puc-rio.br/projetosEspeciais/ETDs/consultas/conteudo.php?strSecao=resultado&nrSeq=4414&idi=2 |
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DOI: | https://doi.org/10.17771/PUCRio.acad.4414 | ||||||||||||||||||||||||||||||||||||||||||||
Resumo: | |||||||||||||||||||||||||||||||||||||||||||||
This thesis investigates the large deformations of
hyperelastic membranes and shells. The static nonlinear
behavior and possible instabilities of the membrane are
both analyzed. A detailed experimental analysis was carried
out involving cylindrical membranes and shells with
different geometries and initial axial forces and the
influence of the axial force and the internal pressure were
investigated. An apparatus was developed to support
vertically the extended structure while it is filled with
air. The membranes and shells used in the experiments are
composed of an isotropic, homogeneous and hyperelastic
rubber, which is modeled as a Neo-Hookean incompressible
material, described by a single elastic constant, or a
Mooney-Rivlin or Ogden material, described by two elastic
constants. Theses constants were obtained by comparing the
experimental and numerical solutions for the structure
under traction. The structure was discretized using
appropriate membrane or shell finite elements and the
resulting nonlinear equilibrium equations solved using the
FE software ABAQUS. When the extended structure was filled
with air, it was observed that the pressure increased
initially as the volume increased until a certain critical
value was reached, after which a bubble was suddenly formed
along the structure and the internal pressure decreased
markedly with increasing volume. The experimental results
are, as shown in the thesis, in satisfactory agreement with
the theory. A detailed parametric analysis was also carried
out to study the influence of the initial traction and
geometric parameters on the non-linear behavior and load
carrying capacity of the structure. The influence of
different types of local imperfections was also studied in
detail.
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