963 resultados para Comportamento térmico


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Nesta dissertação, foi estudado o processo de remoção de graxa lubrificante, que estava untada em mangas das juntas homocinéticas de poliéteréster (Hytrel e Arnitel) com solventes. A proposta seria remover esta graxa com solventes e reutilizar as mangas novamente nas juntas homocinéticas, para diminuir o impacto ambiental. Para a limpeza das mangas, os solventes deveriam atender às exigências de máxima capacidade de remoção da graxa, mínima agressão às mangas e compatibilidade com as normas ambientais vigentes. Inicialmente, para a caracterização dos polímeros foram utilizadas as técnicas de análise térmica (TGA, DSC e DMA), e espectroscopia no infravermelho (IR); para os solventes foi utilizada a cromatografia gasosa acoplada à espectrometria de massa (CG/MSD), e para as graxas, o IR. A partir dos ensaios de inchamento dos solventes nos polímeros foram selecionados os três solventes (Solbrax-Eco 145/210, Siderclean 53 e Renotest LM) nos quais as graxas apresentavam maior solubilidade. Numa segunda etapa, estudaram-se as condições nas quais os solventes alterariam as propriedades dos polímeros através dos ensaios térmicos (TGA, DSC e DMA) e mecânicos (ensaio de tração e dureza). A partir do DSC obteve-se a Tm, Tc e o percentual de cristalinidade dos polímeros puros e dos polímeros imersos nos três solventes. Através do DMA, obteve-se o módulo de armazenamento (E’), módulo de perda (E”) e a tangente de perda (tan d) dos polímeros puros e dos polímeros imersos nos solventes (2, 5 e 9 dias). Baseado nos ensaios de tração dos polímeros puros e imersos nos solventes, estudou-se a tensão e o alongamento na ruptura, o módulo de elasticidade, e a força máxima até a ruptura. Concluiu-se, a partir dos ensaios térmicos, que os solventes atuam como plastificantes nos polímeros, alterando fortemente o seu comportamento térmico, dinâmico-mecânica e mecânico. À medida que o tempo de imersão dos polímeros nos solventes aumenta, uma maior quantidade de solvente é incorporada nos polímeros e a região da temperatura de transição vítrea e a tan d das amostras deslocam-se progressivamente para temperaturas mais baixas. Foi igualmente observada uma diminuição do módulo de elasticidade dos polímeros após a imersão nos solventes.

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Este trabalho mostra a síntese e comportamento térmico de novos materiais líquido-cristalinos utilizando como unidade mesogênica o grupo arilpiridilacetileno e ramificações terminais quirais e lineares através do Protocolo de Buchwald e da Reação de Sonogashira Sintetizou-se quatro séries homólogas diferentes, três delas apresentaram comportamento mesomórfico. A mesofase comum as três séries foi a esmética A. A quarta série homóloga 19a-d não apresentou comportamento líquido-cristalino. A série homóloga 13a-d apresentou além da mesofase esmética A, uma fase nemática antes do ponto de clareamento. Para a série homóloga 26a-d, observou-se a mesma fase, porém, o composto com oito carbonos na ramificação linear, apresentou uma mesofase cristal E. Para a série homóloga 36a-d, observou-se fases esméticas A e C quirais. Entretanto, foram sintetizados outros dois compostos para fins de comparação com a série 36a-d

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Este projecto toma partido do Regulamento das Características de Comportamento Térmico dos Edifícios (RCCTE), tendo por base uma obrigatoriedade legal imposta a nível nacional e europeu, que funciona como um “benchmark”. Desta forma contribui-se para uma utilização racional da energia, que passa a ser encarada como uma necessidade fundamental para um futuro economicamente sustentável e mais limpo, tendo em conta que os índices de dependência energética terão que diminuir (sustentabilidade), mas com a preocupação e o cuidado de preservar o conforto térmico. O aquecimento de águas para o consumo doméstico – águas quentes sanitárias (AQS) – é nos dias que correm um bem indispensável e de utilização generalizada para a vida e bem-estar de todos nós. O RCCTE permite avaliar o impacto das necessidades de energia para AQS nas necessidades globais de energia primária, com base em parâmetros (e.g., Esolar) que foram estudados neste trabalho, para demonstrar o real impacte associado à introdução de sistemas solares térmicos. Neste trabalho a contribuição da energia solar térmica foi estudada recorrendo a um programa de cálculo desenvolvido e validado pelo autor (Matlab) e ao programa Solterm, tendo sido analisados dois casos distintos com aplicações de sistemas solares térmicos, e um estudo económico de forma a garantir a viabilidade da implementação destes sistemas.

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A importância dos vãos envidraçados deve-se não só à sua contribuição para o isolamento térmico da habitação, mas também, por permitirem obter uma otimização dos ganhos solares, maximizando-os no inverno e minimizando-os no verão, contribuindo deste modo para a melhoria das condições de conforto e diminuição dos consumos energéticos. Sendo os vãos envidraçados elementos bastante favoráveis às trocas de calor, tornase necessário conhecer de que forma as diferentes soluções envidraçadas existentes no mercado, e proteções solares/oclusão noturna, podem influenciar o desempenho térmico dos edifícios. Com a crescente tendência de utilização do vidro na construção torna-se ainda mais importante uma escolha criteriosa das soluções para os vãos envidraçados. Este trabalho contribui para a avaliação da influência do tipo de envidraçados e da inércia térmica dos materiais, na prevenção de situações de sobreaquecimento no verão, com base no RCCTE (Regulamento das Características de Comportamento Térmico dos Edifícios), bem como para identificar a melhor relação custo/benefício das soluções. Como caso de estudo, considerou-se uma moradia unifamiliar, simulando diferentes soluções envidraçadas e analisado o seu impacto na moradia. A metodologia consistiu numa análise paramétrica e económica, sustentada no RCCTE e direcionada para a influência dos envidraçados na prevenção do sobreaquecimento no verão. Para a análise da viabilidade económica das soluções propostas, recorreu-se à metodologia definida pela ADENE (Agência para a Energia), pelo cálculo dos custos de exploração e períodos de retorno do investimento, e também o método VAL (Valor Atual Líquido) que pressupõe uma análise do investimento ao longo do tempo. Com este trabalho, conclui-se que um projeto cuidado dos vãos envidraçados e uma seleção criteriosa dos elementos construtivos, aliados a uma análise inerente ao custo/benefício, contribui significativamente para a escolha adequada das soluções construtivas a adotar, de forma a privilegiar o conforto térmico, o desempenho energético dos edifícios e a conservação de energia.

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This research consists in studying the influence of the various type of construction systems of roofs with their energy efficiency as well as on the cost benefit for the commercial buildings on the temperatures condition of the city of Natal/RN. The main goal of this research is to analyze the cost benefit of the construction systems of roofs available on the market, taking into consideration the energy efficiency of the commercial buildings artificially air conditioned in order to be used by the projectors and to be adequated to the temperatures condition of the city of Natal/RN. The method of valuation of the cost benefit of roof systems consists in six steps: Features and simulation of the reference building; Analyze of sensitivity; Analyzes, features and simulation of alternatives of roof construction systems; Analyze of the cost of implementation; Analyze of the benefits of the alternatives comparing to the base case; And finally the analyze of the cost benefit. The model type chosen as reference was stores with pre molded buildings and system of roof with fiber ciment and ceiling . The thermal results showed the influence of the roof system on the energy efficiency of the building. The Final results of the simulations of the alternatives comes to a conclusion that the absortance is the variable that presents the best cost benefit relation and the reduction on the thermal transmittance still has limitations because of the high cost

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Natural air ventilation is the most import passive strategy to provide thermal comfort in hot and humid climates and a significant low energy strategy. However, the natural ventilated building requires more attention with the architectural design than a conventional building with air conditioning systems, and the results are less reliable. Therefore, this thesis focuses on softwares and methods to predict the natural ventilation performance from the point of view of the architect, with limited resource and knowledge of fluid mechanics. A typical prefabricated building was modelled due to its simplified geometry, low cost and occurrence at the local campus. Firstly, the study emphasized the use of computational fluid dynamics (CFD) software, to simulate the air flow outside and inside the building. A series of approaches were developed to make the simulations possible, compromising the results fidelity. Secondly, the results of CFD simulations were used as the input of an energy tool, to simulate the thermal performance under different rates of air renew. Thirdly, the results of temperature were assessed in terms of thermal comfort. Complementary simulations were carried out to detail the analyses. The results show the potentialities of these tools. However the discussions concerning the simplifications of the approaches, the limitations of the tools and the level of knowledge of the average architect are the major contribution of this study

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Colon-specific drug delivery systems have attracted increasing attention from the pharmaceutical industry due to their ability of treating intestinal bowel diseases (IBD), which represent a public health problem in several countries. In spite of being considered a quite effective molecule for the treatment of IBD, mesalazine (5-ASA) is rapidly absorbed in the upper gastrointestinal tract and its systemic absorption leads to risks of adverse effects. The aim of this work was to develop a microparticulate system based on xylan and Eudragit® S- 100 (ES100) for colon-specific delivery of 5-ASA and evaluate the interaction between the polymers present in the systems. Additionaly, the physicochemical and rheological properties of xylan were also evaluated. Initially, xylan was extracted from corn cobs and characterized regarding the yield and rheological properties. Afterwards, 10 formulations were prepared in different xylan and ES100 weight ratios by spray-drying the polymer solutions in 0.6N NaOH and phosphate buffer pH 7.4. In addition, 3 formulations consisting of xylan microcapsules were produced by interfacial cross-linking polymerization and coated by ES100 by means of spray-drying in different polymer weight ratios of xylan and ES100. The microparticles were characterized regarding yield, morphology, homogeneity, visual aspect, crystallinity and thermal behavior. The polymer interaction was investigated by infrared spectroscopy. The extracted xylan was presented as a very fine and yellowish powder, with mean particle size smaller than 40μm. Regarding the rheological properties of xylan, they demonstrated that this polymer has a poor flow, low density and high cohesiveness. The microparticles obtained were shown to be spherical and aggregates could not be observed. They were found to present amorphous structure and have a very high thermal stability. The yield varied according to the polymer ratios. Moreover, it was confirmed that the interaction between xylan and ES100 occurs only by means of physical aggregation

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The production of red ceramic is an industrial activity that causes an intense impact. The manufacture of its products considerably increases the demand for natural resources, mainly with the extraction of raw material. The ceramic material produced generates waste, such as ash firewood and chamote. The residue from the beneficiation of kaolin is deposited in a poor, degrades the environment and contaminate water sources and soil, constituting in this manner, ecological disasters. The main objective of this work is to develop the formulation of a ceramic product consisting solely of industrial solid wastes, from ceramic tiles, (chamote) residue of kaolin and ash firewood. It is assumed that this product made in the laboratory can be used in coatings, wall and floor. The aim is to facilitate the replacement of the raw material of original composition of a ceramic body, for waste, while the process of production equal to the conventionally used, so that the properties of the product are reproduced. This work is characterized waste as its chemical composition, analysis of particle size, X-ray diffraction and thermal behavior. Several formulations were studied. The mass of waste was prepared by dry process, pressed to 25 MPa, and then burned in muffle type oven to 850, 950, 1050 and 1150 °C. The results showed that it is technically possible to produce porous tiles only with waste. It was found that the formulations of bodies play a key role in the properties of the final product, as well as the sintering temperature and heating rates. RN in the waste of kaolin is estimated at 15,000 t/month, about 3,000 gray t/month and chamote with 10 million pieces/month damaged. The presence of carbonates of calcium and magnesium at 1050 ° C results in an appropriate porosity and mechanical strength. The formulation M3JE, composed of 69% waste of kaolin, 7.7% and 23.3% of chamote of gray, became suitable for porous materials with the strength and absorption within the level of national and international standards

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Initially concentrated in some poles at the South and Southeast regions of Brazil, the ceramic tiles industry became wide during the 80 s decade, with a disconcentration industrial and regional pulverization. The competitiveness in the ceramic tiles internal and external consumers markets, it has debtor the industries to invest in sophisticated products each time more, either in design or the technology, but, mainly, in its final properties. Amongst the diverse types of ceramic coating, the porcelanato if has detached had to its process of technological production and excellent characteristics techniques. The Porcelanato is currently the material for coatings that presents the best technical and aesthetic features when compared with others ceramics found on the market. The chemical composition and the others raw materials characteristics have an importance that must to be ally to the inherent characteristics of fabrication process, essentially those related to the cycle of burning. This work had as purpose to develop formularizations of ceramic mass for production of porcelanato without glass coating, pertaining to the group BIa (text of absorption of water ≤ 0.5%) and with resistance superior mechanics 35MPa from raw materials characterized. The ceramic raw materials selected to the development of this study (A1 and A2 clays, feldspate, talc and quartz) were submitted to the following tests: X-ray fluorescence - chemical analysis determination; X-ray diffraction - Analysis of the stages mineralogics; Laser granulometry - size distribution of particles; and Differential thermal analysis - thermal behavior. Were performed tests of absorption of water, lineal retraction of it burns, apparent specific mass and rupture tension the flexing. The results had evidenced that the formularizations that had the A1 clay and talc on its composition were efficient for the porcelanato production remaining their technological characteristics inside of the intervals of variation desired by the Norms of the ABNT

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In the execution of civil engineering works, either by wasting during the coating of wall or demolition of gypsum walls, the generation of the gypsum waste involves serious environmental concerns. These concerns are increased by the high demand of this raw material in the sector and by the difficulties of proper disposal byproduct generated. In the search for alternatives to minimize this problem, many research works are being conducted, giving emphasis in using gypsum waste as fillers in composites materials in order to improve the acoustic, thermal and mechanical performances. Through empirical testing, it was observed that the crystallization water contained in the residue (CaSO4.2H2O) could act like primary agent in the expanding of the polyurethane foam. Considering that polyurethane produced from vegetable oils are biodegradable synthetic polymers and that are admittedly to represent an alternative to petrochemical synthetic polyurethane, this research consist an analysis of the thermal behavior of a composite whose matrix obtained from a resin derived from the expansive castor oil seed, with loads of 4%, 8%, 12% and 16% of gypsum waste replacing to the polyol prepolymer blend. Contributors to this analysis: a characterization of the raw material through analysis of spectroscopy by Fourier transform infrared (FTIR), chemical analysis by X-Ray Fluorescence (XRF) and mineralogical analysis by X Ray Diffraction (XRD), complemented by thermo gravimetric analysis (TGA). In order to evaluate the thermo physical properties and thermal behavior of the composites manufactured in die closed with expansion contained, were also carried tests to determine the percentage of open pore volume using a gas pycnometer, scanning electronic microscopy (SEM), in addition to testing of flammability and the resistance to contact with hot surfaces. Through the analysis of the results, it appears that it is possible to produce a new material, which few changes in their thermo physical properties and thermal performance, promotes significant changes and attractive to the environment

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The use of reflective surfaces functioning as thermal insulator has grown significantly over the years. Reflective thermal insulator are materials that have several characteristics such as low emissivity, low absorptivity and high reflectivity in the infrared spectrum. The use of these materials has grown a lot lately, since it contains several important radioactive properties that minimize the heat loss of thermal systems and cooling systems that are used to block the heat on the roof of buildings. A system made of three surfaces of 316 stainless steel mirror was built to analyze the influence of reflective surfaces as a way to reduce the heat loss and thereby conserve the energy of a thermal system. The system was analyzed both with and without the presence of vacuum, and then compared with a system that contained glass wool between the stainless steel mirror walls, since this isolator is considered resistive and also broadly used around the world in thermal systems. The reflectivity and emissivity of the surfaces used were also measured in this experiment. A type K thermocouple was fixed on the wall of the system to obtain the temperature of the stainless steel mirror surfaces and to analyze the thermal behavior of each configuration used. The results showed an efficiency of 13% when the reflective surfaces were used to minimize the heat loss of the thermal system. However, the system with vacuum had the best outcome, a 60% efficiency. Both of these were compared to the system made of glass wool as a thermal insulator

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Rare earth elements have recently been involved in a range of advanced technologies like microelectronics, membranes for catalytic conversion and applications in gas sensors. In the family of rare earth elements like cerium can play a key role in such industrial applications. However, the high cost of these materials and the control and efficiencies associated processes required for its use in advanced technologies, are a permanent obstacle to its industrial development. In present study was proposed the creation of phases based on rare earth elements that can be used because of its thermal behavior, ionic conduction and catalytic properties. This way were studied two types of structure (ABO3 and A2B2O7), the basis of rare earths, observing their transport properties of ionic and electronic, as well as their catalytic applications in the treatment of methane. For the process of obtaining the first structure, a new synthesis method based on the use of EDTA citrate mixture was used to develop a precursor, which undergone heat treatment at 950 ° C resulted in the development of submicron phase BaCeO3 powders. The catalytic activity of perovskite begins at 450 ° C to achieve complete conversion at 675 ° C, where at this temperature, the catalytic efficiency of the phase is maximum. The evolution of conductivity with temperature for the perovskite phase revealed a series of electrical changes strongly correlated with structural transitions known in the literature. Finally, we can establish a real correlation between the high catalytic activity observed around the temperature of 650 ° C and increasing the oxygen ionic conductivity. For the second structure, showed clearly that it is possible, through chemical processes optimized to separate the rare earth elements and synthesize a pyrochlore phase TR2Ce2O7 particular formula. This "extracted phase" can be obtained directly at low cost, based on complex systems made of natural minerals and tailings, such as monazite. Moreover, this method is applied to matters of "no cost", which is the case of waste, making a preparation method of phases useful for high technology applications

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There is nowadays a growing demand for located cooling and stabilization in optical and electronic devices, haul of portable systems of cooling that they allow a larger independence in several activities. The modules of thermoelectrical cooling are bombs of heat that use efect Peltier, that consists of the production of a temperature gradient when an electric current is applied to a thermoelectrical pair formed by two diferent drivers. That efect is part of a class of thermoelectrical efcts that it is typical of junctions among electric drivers. The modules are manufactured with semiconductors. The used is the bismuth telluride Bi2Te3, arranged in a periodic sequence. In this sense the idea appeared of doing an analysis of a system that obeys the sequence of Fibonacci. The sequence of Fibonacci has connections with the golden proportion, could be found in the reproductive study of the bees, in the behavior of the light and of the atoms, as well as in the growth of plants and in the study of galaxies, among many other applications. An apparatus unidimensional was set up with the objective of investigating the thermal behavior of a module that obeys it a rule of growth of the type Fibonacci. The results demonstrate that the modules that possess periodic arrangement are more eficient

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)