970 resultados para Fibras oticas - Confiabilidade mecânica
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Química - IQ
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The planar design of solid oxide fuel cell (SOFC) is the most promising one due to its easier fabrication, improved performance and relatively high power density. In planar SOFCs and other solid-electrolyte devices, gas-tight seals must be formed along the edges of each cell and between the stack and gas manifolds. Glass and glass-ceramic (GC), in particular alkaline-earth alumino silicate based glasses and GCs, are becoming the most promising materials for gas-tight sealing applications in SOFCs. Besides the development of new glass-based materials, new additional concepts are required to overcome the challenges being faced by the currently existing sealant technology. The present work deals with the development of glasses- and GCs-based materials to be used as a sealants for SOFCs and other electrochemical functional applications. In this pursuit, various glasses and GCs in the field of diopside crystalline materials have been synthesized and characterized by a wide array of techniques. All the glasses were prepared by melt-quenching technique while GCs were produced by sintering of glass powder compacts at the temperature ranges from 800−900 ºC for 1−1000 h. Furthermore, the influence of various ionic substitutions, especially SrO for CaO, and Ln2O3 (Ln=La, Nd, Gd, and Yb), for MgO + SiO2 in Al-containing diopside on the structure, sintering and crystallization behaviour of glasses and properties of resultant GCs has been investigated, in relevance with final application as sealants in SOFC. From the results obtained in the study of diopside-based glasses, a bilayered concept of GC sealant is proposed to overcome the challenges being faced by (SOFCs). The systems designated as Gd−0.3 (in mol%: 20.62MgO−18.05CaO−7.74SrO−46.40SiO2−1.29Al2O3 − 2.04 B2O3−3.87Gd2O3) and Sr−0.3 (in mol%: 24.54 MgO−14.73 CaO−7.36 SrO−0.55 BaO−47.73 SiO2−1.23 Al2O3−1.23 La2O3−1.79 B2O3−0.84 NiO) have been utilized to realize the bi-layer concept. Both GCs exhibit similar thermal properties, while differing in their amorphous fractions, revealed excellent thermal stability along a period of 1,000 h. They also bonded well to the metallic interconnect (Crofer22APU) and 8 mol% yttrium stabilized zirconium (8YSZ) ceramic electrolyte without forming undesirable interfacial layers at the joints of SOFC components and GC. Two separated layers composed of glasses (Gd−0.3 and Sr−0.3) were prepared and deposited onto interconnect materials using a tape casting approach. The bi-layered GC showed good wetting and bonding ability to Crofer22APU plate, suitable thermal expansion coefficient (9.7–11.1 × 10–6 K−1), mechanical reliability, high electrical resistivity, and strong adhesion to the SOFC componets. All these features confirm the good suitability of the investigated bi-layered sealant system for SOFC applications.
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Pós-graduação em Física - FEG
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The evolution in telecommunications with the extensive use of optical fiber following the technological expansion and data transmission demand becomes a necessity today. In this paper a literature review with technical concepts, feasibility of projects and applications in data collection with comparisons and highlights of the current situation of this advance is presented. The benefits of using optical fiber and the advantages of FTTH architecture are identified, as well as concrete and devised projects that make this theme reality and future prospects in the continuity of speed increase and allowed broadcasts growth
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The evolution in telecommunications with the extensive use of optical fiber following the technological expansion and data transmission demand becomes a necessity today. In this paper a literature review with technical concepts, feasibility of projects and applications in data collection with comparisons and highlights of the current situation of this advance is presented. The benefits of using optical fiber and the advantages of FTTH architecture are identified, as well as concrete and devised projects that make this theme reality and future prospects in the continuity of speed increase and allowed broadcasts growth
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Resistance to corrosion, high tensile strength, low weight, easiness and rapidity of application, are characteristics that have contributed to the spread of the strengthening technique characterized by bonding of carbon fibers reinforced polymer (CFRP). This research aimed to develop an innovate strengthening method for RC beams, based on a high performance cement-based composite of steel fibers (macro + microfibers) to be applied as a transition layer. The purpose of this transition layer is better control the cracking of concrete and detain or even avoid premature debonding of strengthening. A preliminary study in short beams molded with steel fibers and strengthened with CFRP sheet, was carried out where was verified that the conception of the transition layer is valid. Tests were developed to get a cement-based composite with adequate characteristics to constitute the layer transition. Results showed the possibility to develop a high performance material with a pseudo strain-hardening behavior, high strength and fracture toughness. The application of the strengthening on the transition layer surface had significantly to improve the performance levels of the strengthened beam. It summary, it was proven the efficiency of the new strengthening technique, and much information can be used as criteria of projects for repaired and strengthened structures.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Pós-graduação em Ciência dos Materiais - FEIS
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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156 p.
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El objetivo de la presente tesis doctoral, se centra en plantear las posibilidades estructurales de fibras cortas de acero como refuerzo de la matriz de hormigón, habitualmente denominado HRFA, junto con la posibilidad de proporcionarle propiedades autocompactantes, que mejoren ciertos aspectos del material, formando el denominado Hormigón Autocompactante Reforzado con Fibras de Acero (HACRFA), en determinadas condiciones, gracias a las propiedades y características que se han atestiguado en este documento. Para tal fin y a diferencia de la mayoría de las experiencias anteriores que conocemos, se construye y analiza un tramo de muro de gran envergadura (3 metros de alto y 6 metros de largo). Este planteamiento permite estudiar la disposición de las fibras de acero dentro de un elemento estructural de gran tamaño y ejecutado en condiciones reales de obra, para determinar el comportamiento del material teniendo en cuenta todos los condicionantes posibles, algunos de los cuales no están presentes en las investigaciones de laboratorio. La exhaustiva caracterización del material que compone la estructura, conlleva la división del muro en 380 probetas de diversos tamaños que se someten a prometedores ensayos no destructivos y a los habituales ensayos destructivos. Las correlaciones establecidas entre ambos campos, posibilitan la determinación de aspectos resistentes de forma indirecta y sin dañar el material, estableciendo nuevas vías para un interesante control de calidad sobre la propia estructura. Para complementar el análisis a posteriori, se establece una metodología para determinar de manera previa a la ejecución de los trabajos la orientación de las fibras dentro de la masa de hormigón. Las simulaciones realizadas por medio de la Dinámica Computacional de Fluídos, permiten además establecer una serie de estimaciones de las resistencias residuales del material a partir de la orientación de las fibras prevista, detectando a priori puntos débiles o inadecuados procesos de hormigonado. Como colofón se realiza una comparativa económica y sostenibilidad medioambiental entre la aplicación a depósitos de contención cilíndricos propuesta, ejecutada por un lado mediante un hormigón convencional y el HACRFA por el otro. Cada sistema presenta sus ventajas y desventajas pero se concluye que el HACRFA puede resultar igual o más económico y sostenible, que un diseño estructural convencional. Estos trabajos se enmarcan dentro de las investigaciones desarrolladas por el Área de Conocimiento de Ingeniería de la Construcción adscrito al Departamento de Ingeniería Mecánica de la Universidad del País Vasco / Euskal Herriko Unibertsitatea (UPV/EHU).
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Nesta dissertação de Mestrado do programa de Pós-Graduação em Ciência e Tecnologia dos Materiais é apresentado um estudo para a caracterização do concreto reforçado com fibras de polipropileno e de aço pela análise das imagens de microtomografia computadorizada por transmissão de raios X (μCT). Foram produzidos corpos de prova de concreto para determinar a sua resistência mecânica à compressão. As imagens foram obtidas no sistema Skyscan, modelo 1174, reconstruídas e analisadas. Foi possível observar na análise das imagens a estrutura da fibra de aço dispersa na matriz do concreto e quantificá-las pelo programa de análise de imagens Ctan e perceber um ganho na resistência mecânica em relação ao concreto sem fibras. Não foi feito a quantificação das amostras de fibras de polipropileno dispersas na matriz de concreto, mas foi observada a presença de aglomerados dessa fibra que resultaram na perda da resistência mecânica em relação ao concreto sem fibras.