997 resultados para Materiais - Testes dinamicos


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Dissertação de mestrado integrado em Engenharia de Materiais

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Projeto de Investigação integrado de mestrado Internacional em Sustentabilidade do Ambiente Construído

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OBJETIVO: Este trabalho tem como objetivo criar um protocolo de testes de aceitação para equipamentos de imagem por ressonância magnética e demonstrar como e quais tipos de dispositivos de teste podem ser usados para a coleta de dados. MATERIAIS E MÉTODOS: Para cada um dos 15 testes selecionados foram elaborados a definição, o procedimento, a forma de análise e o critério de aceitação. RESULTADOS: Através dos testes de aceitação descritos é possível verificar características técnicas que constam nas propostas de venda dos fabricantes, assim como estabelecer valores de referências para serem utilizados em posteriores testes de constância. CONCLUSÃO: Futuros programas de garantia da qualidade em imagem por ressonância magnética devem considerar testes semelhantes ou iguais aos descritos neste trabalho.

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OBJETIVO: Comparar dados de dosimetria e fluência de fótons entre diferentes modelos de mama, discutindo as aplicações em testes de constância e estudos dosimétricos aplicados à mamografia. MATERIAIS E MÉTODOS: Foram simulados diferentes modelos homogêneos e um modelo antropomórfico de mama tipo voxel, sendo contabilizadas: a dose total absorvida no modelo, a dose absorvida pelo tecido glandular/material equivalente, e a dose absorvida e a fluência de fótons em diferentes profundidades dos modelos. Uma câmara de ionização simulada coletou o kerma de entrada na pele. As combinações alvo-filtro estudadas foram Mo-30Mo e Mo-25Rh, para diferentes potenciais aceleradores de 26 kVp até 34 kVp. RESULTADOS: A dose glandular normalizada, comparada ao modelo voxel, resultou em diferenças entre -15% até -21% para RMI, -10% para PhantomMama e 10% para os modelos Barts e Keithley. A variação dos valores da camada semirredutora entre modelos foi geralmente inferior a 10% para todos os volumes sensíveis. CONCLUSÃO: Para avaliar a dose glandular normalizada e a dose glandular, em mamas médias, recomenda-se o modelo de Dance. Os modelos homogêneos devem ser utilizados para realizar testes de constância em dosimetria, mas eles não são indicados para estimar a dosimetria em pacientes reais

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A utilização de resinas epóxi na fabricação de materiais compósitos vem crescendo substancialmente nos últimos anos. O processo de pultrusão também acompanha esta tendência e a demanda por dados técnicos a respeito desta resina vem crescendo, sendo cada vez mais objeto de pesquisa em universidades e empresas. A pultrusão é um processo contínuo de fabricação de materiais compósitos. O processo consiste basicamente em duas etapas a saber: a impregnação, onde se tem a aplicação da mistura com resina, endurecedor e aditivos sobre as fibras; a cura do perfil, onde o material compósito passa pelo processo de reticulação, adquirindo sua forma final e suas diferentes propriedades mecânicas, físicas e químicas. O interesse deste trabalho reside especialmente sobre este tipo de resina pelo fato de que seu emprego no processo de pultrusão confere excelentes propriedades químicas e elétricas ao perfil fabricado. Dadas às características do processo de pultrusão, o conhecimento do comportamento da resina, do ponto de vista físico e cinético, é requisito básico para a obtenção de produtos de qualidade. Apresentando um comportamento diferenciado de resinas poliéster, as resinas epóxi possuem características especiais que tornam o seu uso no processo de pultrusão bastante desafiador. Através de ensaios térmicos (calorimetria exploratória diferencial – DSC- e análise termogravimétrica – TGA) foi possível verificar o comportamento das resinas epóxi misturadas com endurecedor As resinas estudadas apresentaram boa resistência térmica, com temperaturas de degradação superiores a 1500C. Quando testadas no DSC, as resinas apresentaram diferentes calores de reação para cada um das condições testadas, destacando-se a resina LY-553 como adequada para uso no processo de pultrusão. Testes verificando tempo de gel e viscosidade complementaram os dados, fornecendo informações úteis para o estudo das resinas na área de impregnação no processo de pultrusão. Estes testes confirmaram a aplicabilidade da resina LY-553 no processo de pultrusão, bem como qualificaram a resina GY-281 como uma possível alternativa para a produção de perfis pultrudados.

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Este trabalho avaliou comparativamente, em laboratório, a fidelidade dimensional de quatro materiais de moldagem usados nas moldagens finais em prótese total, um hidrocolóide irreversível (Hidrogum), um poliéter (Impregum) e dois silicones de adição (Honigum e Extrude), bem como a técnica de dupla moldagem, com ou sem alívio, usando o material Extrude de consistências média e leve. Para isto foi usado como corpo de prova um modelo metálico que simula um maxilar edêntulo, onde foram colocados quatro postes em forma do pirâmide, três truncadas, colocadas na crista do rebordo para medições horizontais, e uma inteira, que servia de referência para uma medição vertical. Com cada material ou técnica foram feitos dez moldes do modelo padrão, que foram vazados com gesso tipo IV. Os sessenta modelos obtidos, bem como o modelo-padrão, foram submetidos às medições das distâncias entre as referências situadas nas pirâmides, três medidas no sentido horizontal e uma no sentido vertical. Isto foi feito numa máquina para medição por coordenadas (tridimensionai), BRT-M507 fabricada pela Mitutoyo, com software Cosmos/Geopak-Win. Os resultados foram submetidos à analise de variância e testes complementares (Post Hoc Tests, de Duncan). A análise dos resultados mostra que quase todas as medidas no plano horizontal foram menores nas réplicas que no padrão, e que na medida vertical a discrepância entre os resultados foi maior, sendo umas medidas maiores e outras menores que no padrão. Estatisticamente, apenas numa das três distâncias avaliadas, Dist. 2, não houve diferença significativa entre os materiais. Concluiu-se que, com exceção do material Extrude em moldagem simples, os silicones e o poliéter tiveram desempenho semelhante, e que o hidrocolóide irreversível evidenciou os piores resultados. Outra conclusão foi que as duas técnicas de dupla moldagem usando materiais de consistências diferentes mostraram resultados semelhantes ao Honigum e Impregum, sendo mais precisas que estes na reprodução da altura, medida relacionada com a moldagem da zona de postdamming no paciente edêntulo.

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Biofilmes bacterianos na indústria de alimentos freqüentemente são prejudiciais, uma vez que podem abrigar patógenos e deteriorantes que contaminam os produtos. Este trabalho se propôs a avaliar e correlacionar o papel dos fatores de adesão e da hidrofobicidade na formação de biofilmes em diversos materiais. Leite in natura foi aliquotado em tubos contendo corpos de prova constituídos de vidro, polipropileno, aço inoxidável e pano de algodão e incubados em 10 °C e 25 °C. Após 2 h, 5 h e 8 h de contato, as células não aderidas foram removidas da superfície dos materiais, e as aderidas contadas em PCA. Foram isolados e identificados microrganismos dos biofilmes, sendo verificada a produção de cápsula (coloração com vermelho congo), fímbria (hemaglutinação em placa), hemolisinas (ágar sangue) e proteases (ágar leite). As hidrofobicidades celular e dos materiais foram determinadas pelos testes de agregação com sulfato de amônio e do ângulo do raio da gota séssil, respectivamente. Verificou-se a adesão de consórcios formados por E. coli, S. aureus e B. cereus. Os 103 isolados obtidos pertencem, principalmente, a espécies da família Enterobacteriaceae (46) e do gênero Staphylococcus (45). Na produção de fatores de virulência, 50,4% dos isolados produziram cápsula, 48,5% produziram fímbria, 55,3% hemolisina e 20,3% proteases. Dos microrganismos Gram-positivos e Gram-negativos, 86,6% e 84,4% foram positivos para o teste de hidrofobicidade, respectivamente. O aço inoxidável foi o material mais hidrofóbico testado, seguido por polipropileno e vidro. A temperatura de 25 °C e o polipropileno foram os maiores favorecedores de adesão dos consórcios bacterianos.

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The production of the red pottery brick, made traditionally with clay, is a technique that is already stabled. However, in spite of the little complexity that involves the conventional process of these bricks production, it are exposed to many problems that begin in the fase of exploration of the mines, the problems get worse because of the lack of the clay's characterization, and they continue through the steps of the dough preparation, conformation of the products, the drying and the burning process. The wastefulness is shown and so is the low quality of the material produced. Among other factors, the high use of energy in the burning makes the cost of this material inaccessible to the low income consumer. Besides this, the destruction of the environment around the mines and the use of native vegetation to produce wood - the most used fuel in the pottery industry - make serious environmental damage. The production technique of a new type of simple brick (adobe), that has low cost and no environmental damage, can be the viable altemative to lower the cost of this part of the civil construction, and, consequently, in the building of cheaper houses. In this paper, the results of the mechanical resistance of the adobe brick are shown, using in its composition, clay, natural vegetable fibers, cement and plaster in a process that is completely handcrafted and manual. It is intented to make clear that are possible alternatives to be put in practice, with the simple process, using "raw earth" that has been used in the construction of houses in thousands of years, trying to solve these severe problems. Analysis and tests were performed to find results that could prove the possibility of the utilization of this kind of material. Other studies are in progress, and the new researches are necessary to enrich this work, but it stays the certainty that there is potential to produce bricks from adobe, as an alternative that has low cost to civil construction

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We built an experimental house on an UFRN´s land using blocks made by a composite consisting of cement, plaster, EPS, crushed rubber and sand. Several blocks were made from various compositions and we made preliminary tests of mechanical and thermal resistance, choosing the most appropriate proportion. PET bottles were used inside the block to provide thermal resistance. In this work, a second function was given to the bottles: to serve as a docking between the blocks, because the ends of the cylinders came out of each block on top as well as at the bottom, with the bottom cut, allowing to fit of the extremities of the upper cylinder of a block in the lower holes of the other one, which were formed by the cutting already mentioned. Minimum compression tests were performed according to ABNT standards for walls closing blocks (fence). With that house built, we did studies of thermal performance in order to ascertain conditions of comfort, checking external and internal temperatures in the walls and in the ambient, among other variables, such as wind speed and relative humidity. The resulting blocks provided adequate thermal insulation to the environment, where the walls presented differences up to 11.7 ºC between the outer and inner faces, getting the maximum temperature inside the house around 31 °C, within the so-called thermal comfort zone for warm climates. At the end of the experiments it was evident the effectiveness of that construction in order to provide thermal comfort in the internal environment of the house, as well as we could confirm the viability of building houses from recyclable materials, reducing the constructive costs, becoming a suitable alternative for low- incoming families. Moreover, besides the low cost, the proposal represents an alternative use of various recyclable materials, therefore considered an ecological solution

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We present two models of blocks made of composite material obtained from the use of cement, plaster, EPS crushed, shredded tire, mud, sand and water, for the construction of popular housing. Were made metal molds for the manufacture of blocks to be used in the construction of a residence for low-income families. Performed tests of compressive strength of the composite for various formulations that met the specific standard for blocks used in construction. To study the thermal conductivity of the composite for further study of thermal comfort generated in a residence built with the proposed composite. We also determined the mass-specific and water absorption for each formulation studied. Using a home already built with another composite material, made up the closing of a window with the building blocks and found the thermal insulation, measuring external and internal temperatures of the blocks. The blocks had made good thermal insulation of the environment, resulting in differences of up to 12.6°C between the outer and inner faces. It will be shown the feasibility of using composite for the end proposed and chosen the most appropriate wording

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obesity affects rightly functional capacity diminishing the cardiovascular system efficiency and oxygen uptake (VO2). Field tests, such as, Incremental Shuttle Walking Test (ISWT) and Six Minute Walk Test (6MWT) has been employed as alternative of Cardiopulmonary Exercise Test (CPX), to functional assessing for conditions which transport of oxygen to peripheral is diminished. Nevertheless, the knowing about metabolic variables response in real time and it comparing among different maximal and submaximal tests in obese is absent. Aim: to compare cardiopulmonary, metabolic response during CPX, ISWT and 6MWT and to analyse it influence of adiposity markers in obese. Material e Method: crosssectional, prospective study. Obese included if: (BMI>30Kg/m2; FVC>80%), were assessed as clinical, anthropometric (BMI, body adiposity index-BAI, waist-WC, hip- HC and neck-NC circumferences) and spirometry (forced vital capacity-FVC, Forced expiratory volume-1°second-FEV1, maximal voluntary ventilation-MVV) variables. Obese performed the sequence of tests: CPX, ISWT and 6MWT. Throughout tests was assessed breath-by-breath by telemetry system (Cortex-Biophysik-Metamax3B) variables; oxygen uptake on peak of activity (VO2peak); carbon dioxide production (VCO2); Volume Expiratory (VE); ventilatory equivalents for VO2 (VE/VO2) and CO2 (VE/VCO2); respiratory exchange rate (RER) and perceived effort-Borg6-20). Results: 15 obese (10women) 39.4+10.1years, normal spirometry (%CVF=93.7+9.7) finished all test. They have BMI (43.5+6.6kg/m2) and different as %adiposity (BAI=50.0+10.5% and 48.8+16.9% respectively women and men). Difference of VO2ml/kg/min and %VO2 were finding between CPX (18.6+4.0) and 6MWT (13.2+2.5) but not between ISWT (15.4+2.9). Agreement was found for ISWT and CPX on VO2Peak (3.2ml/kg/min; 95%; IC-3.0 9.4) and %VO2 (16.4%). VCO2(l/min) confirms similarity in production for CPX (2.3+1.0) and ISWT (1.7+0.7) and difference for 6MWT (1.4+0.6). WC explains more the response of CPX and ISWT than other adiposity markers. Adiposity diminishes 3.2% duration of CPX. Conclusion: ISWT promotes similar metabolic and cardiovascular response than CPX in obese. It suggesting that ISWT could be useful and reliable to assess oxygen uptake and functional capacity in obese

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Volatile Organic Compounds are pollutants coming mainly from activities that use fossil fuels. Within this class are the BTEX (benzene, toluene, ethylbenzene and xylenes) compounds that are considered hazardous. Among the various existing techniques for degradation of pollutants, there is advanced oxidation using H2O2 generating hidoxil radical ( OH). In this work, the mesoporous material of MCM-41 was synthesized by hydrothermal method and then was used as support, the impregnation of titanium by the method of synthesis with excess solvent to obtain the catalyst Ti-MCM-41. The catalyst was used in the reaction catalyzed removal of BTEX in water using H2O2 as oxidant. The materials were characterized by: XRD, TG/DTG, FTIR, nitrogen adsorption-desorption and FRX-EDX, in order to verify the method of impregnation of the mesoporous titanium support was effective. Catalytic tests were carried out in reactors of 20 mL containing BTEX (100.0 μg/L), H2O2 (2.0 M) and Ti-MCM-41 (2.0 g/L) in acid medium. The reaction occurred for 5 h at 60 °C and analysis were performed by gas chromatography with photoionization detector and static headspace sampler. The characterizations have proven the effectiveness of the synthesis method used and the incorporation of titanium lt in the support. The catalytic tests showed satisfactory results with conversion of more than 95 % for the studied compounds, where the catalyst 48% Ti-MCM-41 showed a higher removal efficiency of the compounds under study

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Oxygen carriers are metal oxides which have the ability to oxidize and reduce easily by various cycles. Due to this property these materials are widely usedin Chemical-Looping Reforming processes to produce H2 and syngas. In this work supports based on MCM-41 and La-SiO2 were synthesized by hydrothermal method. After the synthesis step they were calcined at 550°C for 2 hours and characterized by TG, XRD, surface area using the BET method and FTIR spectroscopy. The deposition of active phase, in this case Nickel, took place in the proportions of 5, 10 and 20% by weight of metallic nickel, for use as oxygen carriers.The XRD showed that increasing in the content of Ni supported on MCM-41 resulted in a decrease in spatial structure and lattice parameter of the material. The adsorption and desorption curves of the MCM-41 samples exhibited variations with the increase of Ni deposited. Surface area, average pore diameter and wall density of silica showed significant changes , due to the increase of the active phase on the mesoporous material. By other hand, in the samples with La-SiO2 composition was not observed peaks characteristic of hexagonal structure, in the XRD diffractogram. The adsorption/desorption isotherms of nitrogen observed are type IV, characteristic of mesoporous materials. The catalytic test indicates that the supports have no influence in the process, but the nickel concentration is very important, because the results for minor concentration of nickel are not good. The ratio H2/O2 was close to 2, for all 15 cycles involving the test storage capacity of O2, indicating that the materials are effective for oxygen transport

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Statistics of environmental protection agencies show that the soil has been contaminated with problems often resulting from leaks, spills and accidents during exploration, refining, transportation and storage oil operations and its derivatives. These, gasoline noteworthy, verified by releasing, to get in touch with the groundwater, the compounds BTEX (benzene, toluene, ethylbenzene and xylenes), substances which are central nervous system depressants and causing leukemia. Among the processes used in remediation of soil and groundwater contaminated with organic pollutants, we highlight those that use hydrogen peroxide because they are characterized by the rapid generation of chemical species of high oxidation power, especially the hydroxyl radical ( OH), superoxide (O2 -) and peridroxil (HO2 ), among other reactive species that are capable of transforming or decomposing organic chemicals. The pH has a strong effect on the chemistry of hydrogen peroxide because the formation of different radicals directly depends on the pH of the medium. In this work, the materials MCM-41 and Co-MCM-41 were synthesized and used in the reaction of BTEX removal in aqueous media using H2O2. These materials were synthesized by the hydrothermal method and the techniques used to characterize were: XRD, TG/DTG, adsorption/desorption N2, TEM and X-Ray Fluorescence. The catalytic tests were for 5 h of reaction were carried out in reactors of 20 mL, which was accompanied by the decomposition of hydrogen peroxide by molecular absorption spectrophotometry in the UV-Vis, in addition to removal of organic compounds BTEX was performed as gas chromatography with detection photoionization and flame ionization and by static headspace sampler. The characterizations proved that the materials were successfully synthesized. The catalytic tests showed satisfactory results, and the reactions containing BTEX + Co-MCM-41 + H2O2 at pH = 12.0 had the highest percentages of removal for the compounds studied