891 resultados para Matriz cerâmica


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Steel is an alloy EUROFER promising for use in nuclear reactors, or in applications where the material is subjected to temperatures up to 550 ° C due to their lower creep resistance under. One way to increase this property, so that the steel work at higher temperatures it is necessary to prevent sliding of its grain boundaries. Factors that influence this slip contours are the morphology of the grains, the angle and speed of the grain boundaries. This speed can be decreased in the presence of a dispersed phase in the material, provided it is fine and homogeneously distributed. In this context, this paper presents the development of a new material metal matrix composite (MMC) which has as starting materials as stainless steel EUROFER 97, and two different kinds of tantalum carbide - TaC, one with average crystallite sizes 13.78 nm synthesized in UFRN and another with 40.66 nm supplied by Aldrich. In order to improve the mechanical properties of metal matrix was added by powder metallurgy, nano-sized particles of the two types of TaC. This paper discusses the effect of dispersion of carbides in the microstructure of sintered parts. Pure steel powders with the addition of 3% TaC UFRN and 3% TaC commercial respectively, were ground in grinding times following: a) 5 hours in the planetary mill for all post b) 8 hours of grinding in the mill Planetary only for steel TaC powders of commercial and c) 24 hours in the conventional ball mill mixing the pure steel milled for 5 hours in the planetary mill with 3% TaC commercial. Each of the resulting particulate samples were cold compacted under a uniaxial pressure of 600MPa, on a cylindrical matrix of 5 mm diameter. Subsequently, the compressed were sintered in a vacuum furnace at temperatures of 1150 to 1250 ° C with an increment of 20 ° C and 10 ° C per minute and maintained at these isotherms for 30, 60 and 120 minutes and cooled to room temperature. The distribution, size and dispersion of steel and composite particles were determined by x-ray diffraction, scanning electron microscopy followed by chemical analysis (EDS). The structures of the sintered bodies were observed by optical microscopy and scanning electron accompanied by EDS beyond the x-ray diffraction. Initial studies sintering the obtained steel EUROFER 97 a positive reply in relation to improvement of the mechanical properties independent of the processing, because it is obtained with sintered microhardness values close to and even greater than 100% of the value obtained for the HV 333.2 pure steel as received in the form of a bar

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Epoxy based nanocomposites with 1 wt % and 3 wt % of nanographite were processed by high shear mixing. The nanographite was obtained by chemical (acid intercalation), thermal (microwave expansion) and mechanical (ultrasonic exfoliation) treatments. The mechanical, electrical and thermal behavior of the nanocomposites was determined and evaluated as a function of the percentage of reinforcement. According to the experimental results, the electrical conductivity of epoxy was not altered by the addition of nanographite in the contents evaluated. However, based on the mechanical tests, nanocomposites with addition of 1 wt.% and 3 wt.% of nanographite showed increase in tensile strength of 16,62 % and 3,20 %, respectively, compared to the neat polymer. The smaller increase in mechanical strength of the nanocomposite with 3 wt.% of nanographite was related to the formation of agglomerates. The addition of 1 wt.% and 3 wt.% of nanographite also resulted in a decrease of 6,25 % and 17,60 %, respectively, in the relative density of the material. Thus, the specific strength of the nanocomposites was approximately 33,33 % greater when compared to the neat polymer. The addition of 1 wt.% and 3 wt.% of nanographite in the material increased the mean values of thermal conductivity in 28,33 % and 132,62 %, respectively, combined with a reduction of 26,11 % and 49,80 % in volumetric thermal capacity, respectively. In summary, it has been determined that an addition of nanographite of the order of 1 wt.% and 3 wt.% produced notable elevations in specific strength and thermal conductivity of epoxy

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Dissertação para obtenção do grau de Mestre em Arquitectura, apresentada na Universidade de Lisboa - Faculdade de Arquitectura.

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Carbide reinforced metallic alloys potentially improve some important mechanical properties required for the overall use of important engineering materials such as steel and nickel. Nevertheless, improved performance is achieved not only by composition enhancement but also by adequate processing techniques, such as novel sintering methods in the case of powder metallurgy. The method minimizes energy losses in addition to providing uniform heating during sintering. Thus, the general objective of this study was to evaluate the density, hardness, flexural strength, dilatometric behavior and to analyze the microstructure of metal matrix composites based nickel with addition of carbides of tantalum and / or niobium when sintered in a conventional furnace and Plasma assisted debinding and sintering (PADS). Initially, were defineds best parameters of granulation, screening and mixing procedure. After, mixtures of carbonyl Ni and 5%, 10% and 15 wt.% NbC and TaC were prepared in a Y-type mixer under wet conditions during 60 minutes. The mixtures were then dried and granulated using 1.5 wt. % paraffin diluted in hexane. Granulates were cold pressed under 600 MPa. Paraffin was then removed from the pressed pellets during a pre-sintering process carried out in a tubular furnace at 500 °C during 30 min. The heating rate was 3 ºC/min. The pellets were then sintered using either a plasma assisted reactor or a conventional resistive tubular furnace. For both methods, the heating rate was set to 8 ºC/min up to 1150 °C. The holding time was 60 minutes. The microstructure of the sintered samples was evaluated by SEM. Brinell hardness tests were also carried out. The results revealed that higher density and higher hardness values were observed in the plasma-assisted sintered samples. Hardness increased with the concentration of carbides in the Ni-matrix. The flexural strength also increased by adding the carbides. The decline was larger for the sample with addition of 5% 5% TaC and NbC. In general, compositions containing added carbide 10% showed less porous and more uniform distribution of carbides in the nickel matrix microstructural appearance. Thus, both added carbide and plasma sintering improved density, hardness, flexural strength and microstructural appearance of the composites

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This research was motivated by the requirement of asbestos s replacement in building systems and the need to generate jobs and income in the country side of the state of Bahia, Brazil. The project aimed at using fibers from licuri leaves (syagrus coronata), an abundant palm in the region, to produce composites appropriate for the sustainable production of cement fibre reinforced products in small plants. The composites were produced in laboratory using Portland cement CP-II-F32, sand, water, licuri palm fiber contents of 1.0, 1.5 and 2.0% by weight of binder (two different fiber length) and metakaolin. The latter was chosen as an additional binder for its efficiency to reduce the alkalinity of cementitious matrixes therefore preventing the degradation of vegetable fibers. The characterization of the composite components was carried out by sieving and laser particle size analyses, thermal analysis, fluorescence and X-ray diffraction. The composites performance was evaluated by 3- point-bending tests, compressive strength, ultrasound module of elasticity, free and restrained shrinkage, water capillarity absorption and apparent specific gravity. It has been found that the addition of fibers increased the time to onset of cracking over 200.00% and a 25% reduction in cracks opening in the restrained shrinkage test. The capillary absorption reduced about 25% when compared to fiber-free composites. It was also observed with regard to flexural strength, compressive strength and specific gravity, that the addiction of fibers did not affect the composite performance presenting similar results for compounds with and without fibers. In general it can be stated that the reinforced composite fibers of palm licuri presents physical and mechanical characteristics which enable them to be used in the intended proposals of this research

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Heating rate is one of the main variables that determine a fire cycle. In industrial processes that use high temperatures, greater fire great can reduce the cost of production and increase productivity. The use of faster and more efficient fire cycles has been little investigated by the structural ceramic industry in Brazil. However, one of the possibilities that aims at modernizing the sector is the use of roller kilns and the inclusion of natural gas as fuel. Thus, the purpose of this study is to investigate the effect of heating rate on the technological properties of structural ceramic products. Clay raw materials from the main ceramic industries in the state of Rio Grande do Norte were characterized. Some of the raw materials characterized were formulated to obtain the best physical and mechanical properties. Next, raw materials and formulations were selected to study the influence of heating rate on the final properties of the ceramic materials. The samples were shaped by pressing and extrusion and submitted to rates of 1 °C/min, 10 °C/min and 20 °C/min, with final temperatures of 850 °C, 950 °C and 1050 °C. Discontinuous cycles with rates of 10 °C/min or 15 °C/min up to 600 °C and a rate of 20 °C/min up to final temperature were also investigated. Technological properties were determined for all the samples and microstructural analysis was carried out under a number of fire conditions. Results indicate that faster and more efficient fire cycles than those currently in practice could be used, limiting only some clay doughs to certain fire conditions. The best results were obtained for the samples submitted to slow cycles up to 600 °C and fast fire sinterization up to 950 °C. This paper presents for the first time the use of a fast fire rate for raw materials and clay formulations and seeks to determine ideal dough and processing conditions for using shorter fire times, thus enabling the use of roller kilns and natural gas in structural ceramic industries

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Se presenta el informe sobre los resultados de la investigación teórico-práctica acerca de los procedimientos de elaboración de cerámica Rakú y su aplicación en obra artística. Esta investigación ha sido necesaria debido a que en el amplio lenguaje universal de la cerámica, el Rakú en la actualidad es referente visual y parte importante principalmente en términos de cerámica artística. En El Salvador anteriormente no se contaba con ningún referente escrito que informara como preparar una pasta, o un vidriado, o menos aun como construir el equipo básico para Rakú, de hecho la técnica es bastante desconocida entre los artistas del país. Es así que los resultados de la investigación se exponen a estudiantes de la opción cerámica de la Escuela de Artes y a ceramistas interesados en desarrollar nuevas formas de expresión plástica. Los resultados son también parte del compromiso por parte del taller de cerámica de la Escuela de Artes de la Universidad de El Salvador en profundizar sobre los conocimientos en cerámica y exponerlos a la población en general. En este orden como resultado del proceso de investigación los principales aportes son: Ser el primer documento escrito acerca de la técnica de Rakú en nuestro país, facilitando la información a otros interesados para su aplicación. Presentar los resultados de la utilización de dos infusiones tradicionales de nuestro país: el agua de nacazcol y el añil, ambas produciendo efectos interesantes y aplicables a obra de carácter artístico elaborada con la técnica de Rakú, añadiendo así un elemento propio de nuestra cultura, además de la inclusión de diferentes diseños de hornos artesanales para la quema de piezas con esta técnica en particular.

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Se evalúa si una sola extracción, mediante la aplicación de un método de ensayo normalizado que simula condiciones extremas de uso, permite determinar el contenido total de plomo y cadmio presente en piezas de vajilla cerámica que entran en contacto con los alimentos y su implicación en el resultado analítico. Se aplicó el método de ensayo varias veces sobre materiales de referencia de cerámica con diferentes concentraciones iniciales de plomo y el cadmio para cuantificar la liberación sucesiva de ambos metales. El lixiviado en cada aplicación se analizó por absorción atómica. Los resultados mostraron que una sola aplicación del método de ensayo no extrae todo el plomo y el cadmio en la vajilla cerámica. Se observaron liberaciones posteriores para todas las piezas de cerámica a prueba con diferente concentración inicial. Para cadmio se registraron las siguientes variaciones en las extracciones: 40 a 95% en la primera extracción, de 0 a 28% en la segunda, de 0.2 hasta 21% en la tercera, y de 1 a 40% en la cuarta. Para el plomo, se registraron los subsiguientes valores en los lixiviados entre el 50 y el 93% en la primera prueba, entre el 2 y el 24% en la segunda, entre el 2 y el 18% en la tercera y entre el 2 y el 17% en la cuarta extracción. Los resultados revelan que la cantidad total de plomo y cadmio liberado en una sola prueba estándar no reflejan el contenido total de plomo y cadmio que las piezas de cerámica liberan a largo plazo después de su uso.

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En este trabajo se presenta la investigación realizada con el objeto de determinar la factibilidad tecnológica para el registro de los hologramas de matriz de punto utilizados ampliamente en la industria de las artes gráficas como elementos de seguridad en la lucha contra la piratería y la falsificación de productos -- Para ello se estudian y presentan los fundamentos ópticos de las rejillas de difracción que los conforman, derivando los métodos que permiten el cálculo a partir de condiciones establecidas de iluminación y reconstrucción -- A partir de dichos métodos se desarrollan y se ponen en funcionamiento sistemas y arreglos experimentales completos, que involucran el software para el control de los dispositivos mecánicos, para el manejo y diseño de las imágenes, y adicionalmente la óptica propiamente dicha -- Los sistemas de esta forma implementados, que permiten la generación y registro de las rejillas, son puestos a prueba y se presentan los resultados tomando como parámetro la medición de los espectros generados por difracción -- Finalmente se presentan y evalúan varios ejemplos típicos de la aplicación de los hologramas de seguridad generados en el sistema desarrollado

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El objetivo esencial del trabajo es emitir una propuesta metodológica, como vía alternativa, para abordar la resolución de ciertos Sistemas de Ecuaciones Diferenciales Lineales (SEDL) expresables en forma normal, usando métodos matriciales, a partir del empleo de la diagonalimción y normalización de matrices a través de la matriz normal de Jordan y usando para ello un procedimiento único, basado en el método analítico que es empleado para resolver la ecuación diferencial lineal de primer orden dada en su forma característica, sin soslayar, la obligada extensión a este contexto. Desde el punto de vista didáctico, la metodología general que se propone, para la resolución de estos SEDL es una de sus mayores ventajas metodológicas, ya que, precisamente, proporciona una vía operacional única y fija, con las obligadas transferencias contextuales que fueron señaladas, esperándose lograr una estructuración sistémica de los contenidos asociados al tema, en aras de alcanzar mayores niveles de asequibilidad dentro del proceso de asimilación.

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Dissertação (mestrado)—Universidade de Brasília, Instituto de Ciências Biológicas, Programa de Pós-Graduação em Biologia Microbiana, 2016.

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Com o crescente avanço tecnológico as questões ambientais bem como a eficiência energética assumem cada vez maior relevância e, neste sentido, torna-se imperativo pensar de uma forma mais eficaz e eficiente tanto ao nível ambiental como energético, aliando a eficiência energética a um menor nível dos consumos energéticos. Uma das medidas para melhorar a eficiência energética passa pela construção de edifícios mais eficientes utilizando diversas tecnologias passivas. Assim sendo, este estudo tem por objetivo avaliar o comportamento térmico e as consequências da ventilação numa cobertura em telha cerâmica e subtelha com beiral ventilado, durante os meses de Outono e Inverno. Através de instrumentação diversa colocada numa célula-teste e no ambiente exterior envolvente obtiveram-se diversos dados experimentais relativos a fatores ambientais tais como: temperaturas, humidades relativas, velocidade do ar, radiação solar, entre outros. Fez-se uma avaliação dos dados experimentais recolhidos e da transferência de calor verificada nesses meses. Os resultados mostram que tanto o comportamento térmico bem como a ventilação da caixa-de-ar são fortemente dependentes das condições do ar exterior e da radiação solar, o que tendo em conta os meses de estudo ,permite concluir que a tipologia da cobertura pode não se tornar vantajosa neste período. No entanto, os valores de humidade relativa registados em toda a cobertura bem como no interior da célula demonstram que a ventilação na caixa-de-ar é um fator relevante que contribui para reduzir a possibilidade de ocorrência da condensação do vapor de água contido no ar, ou seja, não existem períodos muito longos com valores de humidade relativa elevados, contribuído para a sua salubridade.