3 resultados para DELAMINATION

em Repositório Científico da Universidade de Évora - Portugal


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In this study, a finite element (FE) framework for the analysis of the interplay between buckling and delamination of thin layers bonded to soft substrates is proposed. The current framework incorporates the following modeling features: (i) geometrically nonlinear solid shell elements, (ii) geometrically nonlinear cohesive interface elements, and (iii) hyperelastic material constitutive response for the bodies that compose the system. A fully implicit Newton–Raphson solution strategy is adopted to deal with the complex simultaneous presence of geometrical and material nonlinearities through the derivation of the consistent FE formulation. Applications to a rubber-like bi-material system under finite bending and to patterned stiff islands resting on soft substrate for stretchable solar cells subjected to tensile loading are proposed. The results obtained are in good agreement with benchmark results available in the literature, confirming the accuracy and the capabilities of the proposed numerical method for the analysis of complex three-dimensional fracture mechanics problems under finite deformations.

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With a new finite strain anisotropic framework, we introduce a unified approach for constitutive model- ing and delamination of composites. We describe a finite-strain semi-implicit integration algorithm and the application to assumed-strain hexahedra. In a laminate composite, the laminae are modeled by an anisotropic Kirchhoff/Saint-Venant material and the interfaces are modeled by the exponential cohesive law with intrinsic characteristic length and the criterion by Benzeggagh and Kenane for the equivalent fracture toughness. For the element formulation, a weighted least-squares algorithm is used to calculate the mixed strain. Löwdin frames are used to model orthotropic materials without the added task of per- forming a polar decomposition or empirical frames. To assess the validity of our proposals and inspect step and mesh size dependence, a least-squares based hexahedral element is implemented and tested in depth in both deformation and delamination examples.

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Segundo estudos anteriores, por vezes verificam-se problemas de delaminação e fissuração em pavimentos com a aplicação de endurecedores de superfície, principalmente em condições de vento e/ou calor. Estes fenómenos muitas vezes provêm de outros fatores que não só as condições climatéricas, ou seja, os problemas podem começar no betão de base, associados algumas vezes a situações menos corretas na sua elaboração e aplicação. Por este motivo, nesta dissertação ir-se-á analisar qual a influência do betão de base quando se produz um conjunto de não­conformidades em obra, nomeadamente ao nível da colocação do betão de base. A partir dos resultados obtidos foi possível verificar que nem todas as situações de não­conformidade obtiveram maus resultados na ligação endurecedor/betão. /ABSTRATC: According to previous studies, problems with delamination and cracking in pavements with surface hardener have been found, especially in windy conditions and/or heat. But these phenomenons often come from other factors, problems can start at the concrete base, sometimes associated to situations where there is an incorrect design and implementation and for this reason this thesis will analyze the influence of the concrete base when it produces a set of non-conformities in work, particularly in terms of placement of the concrete base. Based on what has been reported by several companies a set of tests has established. From the obtained results it was verified that not all situations of non-compliance showed poor results in the connection of the surface hardener I concrete.