609 resultados para Forno de microondas


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Esta obra se estructura en siete partes y una breve introducción a la temática principal del libro. Los temas de cada parte son: 1. Aspectos fundamentales de la energía microondas. 2. Materias dialécticas. 3. Técnicas de medidad de permitividades complejas. 4. Calentamiento microondas y secado. 5. Aplicaciones industriales. 6. Hornos de microondas de uso doméstico. 7. Ondas electromagnéticas y medio vivo. Efectos biológicos y aplicaciones médicas.

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El proyecto a desarrollarse constituye una de las principales soluciones de mayor disponibilidad en la red de CELULAR, puesto que la tecnología que se va a administrar mediante el Sistema de Gestión es precisamente una de las más importantes y que corresponden a los medios de transmisión entre

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Realizado en la Facultad de Químicas de Salamanca, por 3 profesores del centro para la asignatura Experimentación en Química Física de cuarto curso de la Licenciatura en Ciencias Químicas. El objetivo era el montaje y puesta a punto de una práctica de Espectroscopia Molecular para el laboratorio de Química Física. La metodología para la construcción del espectómetro estaba basada en la Mecánica Cuántica. Del plan previsto, sólo se cumplió la primera fase por problemas presupuestarios, se necesitará una subvención adicional para completar el montaje del equipo y poder realizar así el experimento completo en la Universidad de Salamanca.

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Neste trabalho foram investigados diferentes métodos de preparação de amostra para a determinação de níquel e vanádio em óleo cru usando a espectrometria de absorção atômica com forno de grafite (GF AAS). Investigou-se o uso de xileno como diluente, o qual foi inadequado devido à baixa estabilidade de níquel nas soluções e resultando na contaminação do equipamento. As soluções diluídas em isobutilmetilcetona apresentaram melhor estabilidade, mas não houve reprodutibilidade das medidas com os padrões orgânicos de níquel. Melhores resultados foram obtidos com emulsões óleo-em-água, usando Triton X-100 como surfactante. Também foi estudado o uso de padrões aquosos (inorgânicos) para o preparo das emulsões. Após o estabelecimento de curvas de pirólise para padrão e amostra de óleo cru, observou-se diferença no comportamento térmico do níquel na matriz de óleo cru. Foi então realizada uma investigação usando um espectrômetro de absorção atômica com fonte contínua de alta resolução (HR-CS AAS), equipamento com elevada capacidade de correção de fundo, e constatou-se que cerca de 50 % do analito é perdido em temperaturas abaixo de 400 ºC, enquanto que o restante é termicamente estável até pelo menos 1200 ºC. A fim de resolver o problema de perda de níquel volátil, foi investigado o uso de paládio como modificador químico. Através de curvas de pirólise com e sem paládio, observou-se que a mesma perda também ocorreu para o vanádio. Após a otimização da melhor quantidade de paládio, verificou-se que foi necessária uma quantidade de 20 µg de paládio para estabilização de níquel e vanádio. A determinação de níquel e vanádio total em amostras de óleo cru foi realizada usando-se paládio como modificador químico. A especiação destes elementos foi possível através da determinação das espécies estáveis, provavelmente compostos salinos não porfirínicos de níquel e vanádio, sem a adição de paládio, e a fração de compostos voláteis (provavelmente porfirinas de níquel e vanádio) foi calculada por diferença. Estabeleceram-se as figuras de mérito obtendo-se valores de massa característica de 19 e 33 pg e limite de detecção de 43 e 113 pg para níquel e vanádio, respectivamente. Esses resultados são compatíveis com dados reportados na literatura. A exatidão deste procedimento foi verificada pela análise dos materiais de referência certificados de metais traço em óleo residual (SRM 1634c) para níquel e vanádio e o petróleo (RM 8505) somente para vanádio e também por comparação com os resultados obtidos por HR-CS AAS para várias amostras de óleo cru. A aplicação do teste estatístico t-student aos resultados de níquel e vanádio total obtidos por GF AAS e HR-CS AAS mostrou que os mesmos não são significativamente diferentes a um nível de 95% de confiança.

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Este trabalho apresenta uma metodologia para o desenvolvimento de transdutor de microondas para a mensuração de umidade em produtos agrícolas com a utilização de estruturas planares em microfita. O termo aquametria é definido na literatura como a área da instrumentação responsável por mensurar a quantidade de água presente em sólidos e líquidos via identificação de suas propriedades dielétricas. São apresentados alguns aspectos relativos à aquametria, seguidos do modelo matemático e numérico da interação das ondas eletromagnéticas no meio dielétrico com perdas. O modelo matemático é então especializado para dar conta de uma microfita com uma amostra úmida superposta. A partir desses resultados, são apresentadas três propostas de transdutores que buscam mensurar a permissividade dielétrica complexa efetiva do conjunto microfita mais amostra. Os transdutores propostos são então simulados com a aplicação do método de diferenças finitas no domínio tempo, objetivando não só verificar a qualidade dos mesmos, mas também validar o modelo matemático.

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Ta-Cu bulk composites combine high mechanical resistance of the Ta with high electrical and thermal conductivity of the Cu. These are important characteristics to electrical contacts, microwave absorber and heat skinks. However, the low wettability of Ta under Cu liquid and insolubility mutual these elements come hard sintering this composite. High-energy milling (HEM) produces composite powders with high homogeneity and refines the grain size. This work focus to study Ta-20wt%Cu composite powders prepared by mechanical mixture and HEM with two different conditions of milling in a planetary ball mill and then their sintering using hydrogen plasma furnace and a resistive vacuum furnace. After milling, the powders were pressed in a steel dye at a pressure of 200 MPa. The cylindrical samples pressed were sintered by resistive vacuum furnace at 10-4torr with a sintering temperature at 1100ºC / 60 minutes and with heat rate at 10ºC/min and were sintered by plasma furnace with sintering temperatures at 550, 660 and 800ºC without isotherm under hydrogen atmosphere with heat rate at 80ºC/min. The characterizations of the powders produced were analyzed by scanning electron microscopy (SEM), x-ray diffraction (XRD) and laser granulometry. After the sintering the samples were analyzed by SEM, XRD and density and mass loss tests. The results had shown that to high intense milling condition produced composite particles with shorter milling time and amorphization of both phases after 50 hours of milling. The composite particles can produce denser structure than mixed powders, if heated above the Cu melting point. After the Cu to arrive in the melting point, liquid copper leaves the composite particles and fills the pores

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The development and study of detectors sensitive to flammable combustible and toxic gases at low cost is a crucial technology challenge to enable marketable versions to the market in general. Solid state sensors are attractive for commercial purposes by the strength and lifetime, because it isn t consumed in the reaction with the gas. In parallel, the use of synthesis techniques more viable for the applicability on an industrial scale are more attractive to produce commercial products. In this context ceramics with spinel structure were obtained by microwave-assisted combustion for application to flammable fuel gas detectors. Additionally, alternatives organic-reducers were employed to study the influence of those in the synthesis process and the differences in performance and properties of the powders obtained. The organic- reducers were characterized by Thermogravimetry (TG) and Derivative Thermogravimetry (DTG). After synthesis, the samples were heat treated and characterized by Fourier Transform Infrared Spectroscopy (FTIR), X-ray Diffraction (XRD), analysis by specific area by BET Method and Scanning Electron Microscopy (SEM). Quantification of phases and structural parameters were carried through Rietveld method. The methodology was effective to obtain Ni-Mn mixed oxides. The fuels influenced in obtaining spinel phase and morphology of the samples, however samples calcined at 950 °C there is just the spinel phase in the material regardless of the organic-reducer. Therefore, differences in performance are expected in technological applications when sample equal in phase but with different morphologies are tested

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In this work, was studied the formation of a composite of the refractory metal niobium with copper, through the process of high-energy milling and liquid phase sintering. The HEM can be used to synthesize composite powders with high homogeneity and fine size particle distribution. It may also produce the solid solubility in immiscible systems such as Nb-Cu, or extend the solubility of systems with limited solubility. Therefore, in the immiscible system Cu-Nb, the high-energy milling was successfully used to obtain the composite powder particles. Initially, the formation of composite particles during the HEM and the effect of preparation technique on the microstructure of the material was evaluated. Four loads of Nb and Cu powders containing 20%wt Cu were synthesized by MAE in a planetary type ball mill under different periods of grinding. The influence of grinding time on the metal particles is evaluated during the process by the withdrawal of samples at intermediate times of milling. After compaction under different forces, the samples were sintered in a vacuum furnace. The liquid phase sintering of these samples prepared by HEM produced a homogeneous and fine grained. The composite particles forming the sintered samples are the addition of a hard phase (Nb) with a high melting point, and a ductile phase (Cu) with low melting point and high thermal and electrical conductivities. Based on these properties, the Nb-Cu system is a potential material for many applications, such as electrical contacts, welding electrodes, coils for generating high magnetic fields, heat sinks and microwave absorbers, which are coupled to electronic devices. The characterization techniques used in this study, were laser granulometry, used to evaluate the homogeneity and particle size, and the X-ray diffraction, in the phase identification and to analyze the crystalline structure of the powders during milling. The morphology and dispersion of the phases in the composite powder particles, as well the microstructures of the sintered samples, were observed by scanning electron microscopy (SEM). Subsequently, the sintered samples are evaluated for density and densification. And finally, they were characterized by techniques of measuring the electrical conductivity and microhardness, whose properties are analyzed as a function of the parameters for obtaining the composite

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O processamento térmico de materiais cerâmicos via energia de microondas, no estágio atual, vem ganhando cada dia mais importância, tendo em vista suas inúmeras aplicações, como por exemplo: aplicação de microondas na área de processamento mineral (aquecimento de minérios antes da moagem, secagem, redução carbotérmica de óxidos minerais, lixiviação, fusão, pré-tratamento de minérios e concentrados de ouro refratário, regeneração de carvão, etc. de acordo com Kigman & Rowson, 1998). Em virtude de uma série de vantagens em potencial, frente aos métodos convencionais de aquecimento, como redução no tempo de processamento; economia de energia; diminuição do diâmetro médio das partículas e melhoramento nas propriedades tecnológicas em geral, esta tecnologia vem se destacando. Neste contexto, o objetivo geral deste trabalho, é desenvolver uma pesquisa visando identificar e caracterizar novas opções de matérias-primas cerâmicas como argilas, feldspatos e caulins que sejam eficazes para definir a formulação de uma ou mais massas para produção de componentes de cerâmica estrutural com propriedades físicas, mecânicas e estéticas adequadas após passarem por sinterização convencional e por energia de microondas destacando as vantagens desta última. Além dos requisitos técnicos e de processo, as formulações apresentadas deverão atender às expectativas de preço e de logística de fornecimento. No estudo foram conformados corpos-de-prova por extrusão e prensagem, sinterizados em fornos microondas e convencional, sob ciclos de queima mais rápidos que os atualmente praticados. As matérias-primas foram caracterizadas e analisadas, utilizando as técnicas de fluorescência por raios X (FRX), difração por raios X (DRX), análise térmica diferencial (DTA), análise térmica gravimétrica (DTG), análise granulométrica (AG), microscopia eletrônica de varredura (MEV), absorção d agua (AA), massa especifica aparente (MEA), porosidade aparente (PA), retração linear (RL) e tensão de ruptura e flexão (TRF). Os resultados obtidos indicaram que as propriedades tecnológicas de Absorção de água (AA) e Tensão de Ruptura e flexão (TRF), proposto no trabalho foram adquiridos com sucesso e estão bem além do limite exigido pelas especificações das normas da ABNT NBR 15.270/05 e 15.310/09

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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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The modern society depends on an efficient communications system able to of transmitting and receiving information with a higher speed and reliability every time. The need for ever more efficient devices raises optimization techniques of microstrip devices, such as techniques to increase bandwidth: thicker substrates and substrate structures with EBG (Electromagnetic Band Gap) and PBG (Photonic Band Gap). This work has how aims the study of the application of PBG materials on substrates of planar structures in microstrip, more precisely in directional quadrature couplers and in rat-race and impedance of transformers. A study of the planar structures in microstrip and substrates EBG is presented. The PBG substrates can be used to optimize the radiation through the air, thus reducing the occurrence of surface waves and the resulting diffraction edge responsible for degradation of radiation pattern. Through specific programs in FORTRAN Power Station obtained the frequencies and couplings for each structure. Are used the program PACMO - Computer Aided Design in Microwave. Results are obtained of the frequency and coupling devices, ranging the frequency band used (cellular communication and Wimax systems) and the permittivity of the substrate, comparing the results of conventional material and PBG materials in the s and p polarizations.

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This dissertation contributes for the development of methodologies through feed forward artificial neural networks for microwave and optical devices modeling. A bibliographical revision on the applications of neuro-computational techniques in the areas of microwave/optical engineering was carried through. Characteristics of networks MLP, RBF and SFNN, as well as the strategies of supervised learning had been presented. Adjustment expressions of the networks free parameters above cited had been deduced from the gradient method. Conventional method EM-ANN was applied in the modeling of microwave passive devices and optical amplifiers. For this, they had been proposals modular configurations based in networks SFNN and RBF/MLP objectifying a bigger capacity of models generalization. As for the training of the used networks, the Rprop algorithm was applied. All the algorithms used in the attainment of the models of this dissertation had been implemented in Matlab

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The red ceramics and structural ceramics, as they are known, include ceramic materials made by blocks of seals and structures, bricks, tiles, smail flagstones manacles, rustic floors and ornamental materials. Their fabrication uses raw material such as clay and clay sites, with some content of impurity. It has good durability and mechanical strength to compression, low cost, making it one of the mainly used materials in civil engineering. The incorporation of many industrial activities residue to ceramic products is a technological alternative for reducing the environmental impact caused by its carefree disposal. This incorporation can promote chemical change and inertness of metals from residue, by fixation in the glassy phase of ceramic during the burning stage. The main aim of this project is to study the technical feasibility of the addition of ceramic oven ash into formulations of mass for structural ceramics. In this project two kinds of clay (plastic and non-plastic) were used, as well as the ash from firewood used in the process of burning of structural ceramics. A group of experiments was outlined, which permitted the evaluation of the influence of the burning cycle in different temperatures of the ash content in formulations for ceramic blocks through technological properties, mechanical behavior and microstructure. Five samples were processed of each one of the masses of plastic and non-plastic clay without addition of ash and with addition of ash on the percentages of 10 % and 20 %, for temperatures of 850 °C, 950 °C, 1050 °C and 1150 °C, obtained through sinterization process. Among the studied compositions, the one which presented best performance was the mass of clay with 10 % of ash, at temperature of 1150 °C, with the smallest absorption of water, the smallest apparent porosity, specific apparent mass a bit over the others and greatest mechanical resistance to flexion. The composition made confirmed the technical feasibility of the use of ash in the mass for structural ceramics with maintenance of its necessary characteristics for its purposes