133 resultados para Laminados
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Neste trabalho é feita a optimização de estruturas laminadas do tipo placa-casca, construídas por materiais compósitos, fazendo-se uso de um modelo discreto baseado na Teoria de Kirchhoff em conjugação com a Teoria da Camada Única Equivalente.As análises estrutural e de sensibilidades de estruturas em regime estático com comportamento geometricamente não linear, em vibrações livres, e em estabilidade linear, são desenvolvidas para um elemento finito triangular plano de 3 nós, com 18 graus de liberdade. A optimização é feita considerando diferentes funções objectivo, tais como a maximização da energia elástica de deformação, a maximização da frequência fundamental e a maximização da carga crítica, e é baseada no método das sensibilidades. As sensibilidades destas funções objectivo em ordem ás variáveis de projeto são calculadas analíticamente, sendo a orientação das fibras as variáveis de projecto consideradas.
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Tesis (Maestro en Ciencias de la Ingeniería Mecánica con Especialidad en Materiales) UANL, 2001.
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Tesis ( Maestro en Ciencias de la Ingeniería Mecánica con Especialidad en Materiales) U.A.N.L.
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Tesis (Maestro en Ciencias de la Ingeniería Mecánica con Especialidad en Materiales) U.A.N.L.
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Tesis (Doctor en Ing. Mecánica con Especialidad en Materiales) U.A.N.L.
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Tesis (Doctor en Ingeniería de Materiales) UANL, 2000.
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Tesis (Doctor en Ingeniería de Materiales) U.A.N.L.
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Tesis (Doctorado en Ingeniería de Materiales) UANL, 2013.
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Neste trabalho implementou-se o elemento hexaédrico com um ponto de integração para análise estática e dinâmica de placas e cascas de materiais compósitos laminados com ou sem enrijecedores. O elemento está livre de travamento volumétrico e travamento de cisalhamento, não apresentando modos espúrios. São também incluídos problemas com não-linearidade geométrica A matriz de rigidez e de massa são dadas de forma explícita, reduzindo o tempo computacional, especialmente na análise não-linear. Para evitar o travamento de cisalhamento as componentes de deformações são referidas a um sistema co-rotacional. O travamento volumétrico é também eliminado, já que a parte dilatacional (esférica) da matriz gradiente é avaliada apenas no ponto central do elemento. Para a solução das equações de equilíbrio na análise estática, utilizam-se um método direto baseado na eliminação de Gauss ou um método iterativo de gradientes conjugados com precondicionamento executado através da eliminação incompleta de Choleski. Para a análise dinâmica, as equações de equilíbrio são integradas através do método explícito ou implícito de Taylor-Galerkin ou do método implícito de Newmark. Para análise não-linear utiliza-se o Método Generalizado de Controle dos Deslocamentos. Através de exemplos numéricos demonstra-se a eficiência e o potencial do elemento tridimensional na análise linear e não-linear de placas e cascas de materiais laminados. Os resultados são comparados com trabalhos que utilizam diferentes elementos de placas e cascas.
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Analisa a influência da criação de linhas de financiamento, com taxas subsidiadas, sobre a estrutura financeira dessas empresas, tecendo algumas considerações sobre sua política de financiamento. Aborda os efeitos do endividamento sobre a alavancagem financeira. Analisa os efeitos da política de contenção dos preços pelo CIP Conselho Interministerial de Preços) sobre a alavancagem operacional. Verifica a contribuição dos Incentivos de IPI criados pelo Decreto Lei n. 1547/77 , como fonte de fundos dessas empresas.
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Composite laminates with plies in different directions finely dispersed are classified as homogenized. The expected benefits of homogenization include increased mechanical strength, toughness and resistance to delamination. The objective of this study was to evaluate the effect of stacking sequence on the tensile strength of laminates. Composite plates were fabricated using unidirectional layers of carbon/epoxy prepreg with configurations [903/303/-303]S and [90/30/-30]3S. Specimens were subjected to tensile and open hole tension (OHT) tests. According to the experimental results, the mean values of strength for the homogenized laminates [90/30/-30]3S were 140% and 120% greater for tensile and OHT tests, respectively, as compared to laminates with configuration [903/303/-303]S. The increase in tensile strength for more homogenized laminates was associated with the increment in interlaminar interfaces, which requires more energy to produce delamination, and the more complicated crack propagation through plies with different orientations. OHT strength was not affected by the presence of the hole due to the predominance of the interlaminar shear stress in relation to the stress concentration produced by the hole
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The growing demand in the use of composite materials necessitates a better understanding of its behavior related to many conditions of loading and service, as well as under several ways of connections involved in mechanisms of structural projects. Within these project conditions are highlighted the presence of geometrical discontinuities in the area of cross and longitudinal sections of structural elements and environmental conditions of work like UV radiation, moisture, heat, leading to a decrease in final mechanical response of the material. In this sense, this thesis aims to develop studies detailed (experimental and semi-empirical models) the effects caused by the presence of geometric discontinuity, more specifically, a central hole in the longitudinal section (with reduced cross section) and the influence of accelerated environmental aging on the mechanical properties and fracture mechanism of FGRP composite laminates under the action of uniaxial tensile loads. Studies on morphological behavior and structural degradation of composite laminates are performed by macroscopic and microscopic analysis of affected surfaces, in addition to evaluation by the Measurement technique for mass variation (TMVM). The accelerated environmental aging conditions are simulated by aging chamber. To study the simultaneous influence of aging/geometric discontinuity in the mechanical properties of composite laminates, a semiempirical model is proposed and called IE/FCPM Model. For the stress concentration due to the central hole, an analisys by failures criteria were performed by Average-Stress Criterion (ASC) and Point-Stress Criterion (PSC). Two polymeric composite laminates, manufactured industrially were studied: the first is only reinforced by short mats of fiberglass-E (LM) and the second where the reinforced by glass fiber/E comes in the form of bidirectional fabric (LT). In the conception configurations of laminates the anisotropy is crucial to the final mechanical response of the same. Finally, a comparative study of all parameters was performed for a better understanding of the results. How conclusive study, the characteristics of the final fracture of the laminate under all conditions that they were subjected, were analyzed. These analyzes were made at the macroscopic level (scanner) microscope (optical and scanning electron). At the end of the analyzes, it was observed that the degradation process occurs similarly for each composite researched, however, the LM composite compared to composite LT (configurations LT 0/90º and LT ±45º) proved to be more susceptible to loss of mechanical properties in both regarding with the central hole as well to accelerated environmental aging
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The growing demand in the use of composite materials necessitates a better understanding its behavior to many conditions of loading and service, as well as under several ways of connections involved in mechanisms of structural projects. It is know that most of the structural elements are designed with presence of geometric discontinuities (holes, notches, etc) in their longitudinal sections and / or transversals, and that these discontinuities affect the mechanical response of these elements. This work has aims to analyze a study of the mechanical response, when in the presence geometric discontinuity, of polymer matrix composite laminates (orthophthalic polyester) to the uniaxial tensile test. The geometric discontinuity is characterized by the presence of a center hole in the transversal section of the composite. In this study, different kinds of stacking sequences are tested, with and without the presence of the hole, so as to provide better understanding of the mechanical properties. This sense, two laminates were studied: the first is only reinforced by with seven layers short mats of fiberglass-E (CM) and the second where the reinforcement of fiberglass-E comes in the form of bidirectional fabric (CT), with only four layers. The laminate CT has the presence of anisotropy (sense of continuous fibers with respect to the applied load) as the main parameter influencing its mechanical behavior, behavior this, not observed for the CM. In addition to the mechanical properties was also studied the fracture characteristics developed in each composite laminated. The results also showed that the presence of the hole in the transversal section decreased the ultimate strength of laminates and changed the final characteristic of fracture in all kinds of composite laminated studied
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