Detalhes do Documento

Hyperelastic modelling of cork-polyurethane gel composites : non-linear FEA imp...

Autor(es): Antunes, P. J. cv logo 1 ; Dias, Gustavo R. cv logo 2 ; Coelho, A. T. cv logo 3 ; Rebelo, F. cv logo 4 ; Pereira, Tiago cv logo 5

Data: 2008

Identificador Persistente: http://hdl.handle.net/1822/17886

Origem: RepositóriUM - Universidade do Minho

Assunto(s): Hyperelasticity; Strain energy function; Finite element analysis; Contact pressure; Cork-polyurethane gel composite; 3D foot model; Shoe insole; CT scan


Descrição
The CPGC – Cork-Polyurethane Gel Composite is a material that is mechanically characterized by non-linear elastic behaviour at large deformations. The non-linear behaviour can be modelled by hyperelastic constitutive models based on strain energy functions enabling a structured phenomenological framework for CPGC material modelling. The CPGC is a promising material for human comfort enhancement and dynamic damping/control applications. This paper presents the experimental methodology used for the CPGC evaluation of material parameters used in the hyperelastic models and the finite element model build-up. A 3D foot FEA model is presented in order to evaluate the performance of the hyperelastic model in a real case situation and the mechanical performance of shoe insoles, namely, trough the monitoring of the contact pressure values at the insole/foot interface.
Tipo de Documento Artigo
Idioma Inglês
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