244 resultados para Compostos poliméricos


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The development of technology for structural composites has as one of its ends form a set of materials that combine high values of mechanical strength and stiffness and low density. Today, companies like Embraer and PETROBRAS and research institutions like NASA, working with these materials with recognized advantages in terms of weight gain, increased performance and low corrosion. We have developed a systematic study to determine the bond strength between composite carbon fiber / epoxy and fiberglass / epoxy laminate both bonded to a carbon steel which are widely used in the petrochemical industry and repair. For morphological evaluation and bonding between materials of different natures, ultrasound analysis, optical microscopy and stereoscopy were performed. To simulate actual conditions, the composites were subjected to conditioning by using heat shock temperatures from -50 to 80 ° C for 1000 cycles for composite carbon fiber / epoxy composites and 2000 cycles for fiberglass / epoxy . The use of composites studied here proved to be efficient to perform repairs in metallic pipes with application petrochemical, as when exposed to sudden changes of temperature (-50 ° to 80 ° C) cycling at 1000 to 2000 times, its mechanical properties (shear and tensile) practically do not change

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Bi3NbO7 thin films were prepared by the polymeric precursor method. The precursor solutions were prepared with excess of bismuth ranging from 0% to 10% and the pH was controlled to be maintained between 8 and 9. This control was done by adding to the solution niobium and ethylene glycol. The final solution was clear and free of precipitation. After obtaining the precursor solution, has begun the process of characterization of powders with thermogravimetry (TG), differential thermal analysis and X-ray analysis (XRD). The films were obtained by the polymeric precursors, the method is advantageous because it is simple, and low cost involves steps and controlled stoichiometry. The films were annealed and characterized by XRD and SEM and also characterized according to their dialectics properties. We observed that the best results were obtained when the film is thermally at 800 ° C for two hours and 860 ° C for two hour. Under these conditions we obtain Bi3NbO7 thin films with good homogeneity, uniform distribution of the grains, but with the formation of secondary phase, which does not occur in treatments with lower temperature. The dielectric characterization showed that the produced film showed good characteristics with high dielectric constant and low loss

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O câncer, manifestação originada pelo crescimento descontrolado de células, afeta milhões de indivíduos. Os macrófagos são as primeiras células a serem ativadas para participar de uma resposta imunológica propriamente dita, são células capazes de secretar mais de cem produtos biologicamente ativos, entre esses, espécies reativas de nitrogênio e citocinas que atuam no contexto da resposta imunológica e/ou inflamatória. Sabendo que compostos de paládio (II) podem apresentar potenciais atividades antitumorais, neste trabalho foram testado os compostos de fórmula geral PdI2 (tdmPz) e Pd (SCN)2 (tdmPz), quanto a atividade anti-inflamatória e antitumoral. Como droga padrão das reações realizadas foi utilizada a cisplatina. Foi determinada a ação destes compostos frente ao sistema imunológico através, de ensaios de determinação de índice de citotoxicidade mediano (IC50) pela técnica de MTT, óxido nítrico (NO) e determinação das citocinas pró-inflamatórias TNF- e IL-12. Além disso, foi determinada a atividade antitumoral dos compostos frente à célula tumoral de Ehrlich. Os resultados não mostraram produção de NO e das citocinas IL-12 e TNF- pelos macrófagos peritoneais de animais normais e animais portadores do tumor de Ehrlich na sua forma sólida. No que se referem à atividade tóxica dos compostos testados, estes mostraram efeito citotóxico sobre os macrófagos e sobre a linhagem tumoral testada. Sendo assim mesmo não havendo a produção de mediadores próinflamatórios, os compostos apresentaram uma considerável citotoxicidade frente às células tumorais de Ehrlich e macrófagos peritoneais

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In this work polymeric composites reinforced with cotton fibers, from the textile industry, were developed in order to manufacture printed circuit boards. It was used expanded polystyrene (EPS) as a thermoplastic matrix by melting it. For the obtention of 10% and 15% of fiber volume fraction in cotton fibers composites, it was used wasted cotton fibers as an incentive of recycling and reusing of the domestic and industrial wastes as well as for Expanded Polystyrene(EPS). The mechanical properties of the composites were evaluated by tensile and flexural strength from standardized test methods. Composites were characterized by a Scanning Electron Microscopy (SEM), Thermogravimetry (TG/DTG), Differential Scanning Calorimetry (DSC) and dielectric analysis. The analysis of the results showed that fiber in the composite directly influenced in the thermal and mechanical properties

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A anemia falciforme é uma doença genética caracterizada por uma anemia hemolítica crônica e fenômenos vaso-oclusivos, que levam a crises dolorosas e à lesão tecidual crônica e progressiva. Tem sido relatado que pacientes com anemia falciforme apresentam aumento dos níveis circulantes de citocinas, incluindo fator de necrose tumoral-α (TNF-α). O principal fármaco utilizado no tratamento dessa anemia é a hidroxiuréia (HU), fonte exógena de óxido nítrico (NO) e responsável pela inibição da agregação de plaquetas e aumento dos níveis de hemoglobina fetal (HbF). Trabalhos prévios têm demonstrado a importância da subunidade 1,2,5-oxadiazol-N-óxido como doadora de óxido nítrico. Nesse contexto, o presente trabalho tem como objetivo sintetizar um novo derivado híbrido do 1,2,5-oxadiol-N-óxido para a formação de um composto útil para o tratamento dos processos preventivos contra agregação plaquetária exacerbado em pacientes falciformes

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The project aims to develop ceramic compounds with gradients of the mechanical properties, using the molding technique with commercial starches. To understand the process of interaction between starch and ceramic powders, the proposed methodology involves viscometry tests (up to 200 °C). Viscometric assays were carried out with slurries of alumina, titania and aluminum titanate with potato starch, cassava and corn. The specimens were tested for dilatometry, thermomechanical, thermal shock, mechanical and characterization by SEM. The ceramic powders and starches were analyzed using the optical microscope to measure the size of these. It was made of th kinetics of starch gelatinization and titania with the cornstarch in theoptical microscope to observe how the grains of starch behaved in welling

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Phenolic compounds represent one of the main groups of secondary metabolites. Due to their chemical diversity, they have a variety of functions in plants, such as protection against ultraviolet radiation, herbivores and pathogens, and attraction of pollinators or dispersers of fruits and seeds. For human, the phenolic compounds are used like food colorings and flavors and, due to their pharmacological properties, mainly to antioxidant activity, they are associated with several health benefits, such as delay senility, prevention and therapy of cardiovascular diseases and of some cancers. The grapes are considered one of the main source of phenolic compounds and the fruit and its products are consumed in Brazil and worldwide. Considering the phenolic compounds diversity and their different distribution in the grape parts, this work had like aims the extraction, identification and quantification of the main classes of phenolic compounds of 10 grape varieties. The content of total phenols, flavanols and anthocyanins were determined, respectively, according to the Folin-Ciocalteu, DMACA and comparison of pH spectrophotometric methods. The content of total phenols varied from 142.75 + 1.86 to 483.39 + 5.90 mg.L-1 in the peel and from 86.50 + 0.54 to 146.32 + 9.97 mg.L-1 in the pulp. The amount of total flavanols varied from 3.68 + 0.03 to 6.92 + 0.26 mg.L-1 in the peel and from 0.90 + 0.00 to 1.36 + 0.00 mg.L-1 in the pulp. The content of total anthocyanins varied from 7.00 + 0.99 to 406.56 + 39.50 mg.L-1 in the peel and from 2.88 + 0.28 to 46.36 + 1.89 mg.L-1 in the pulp. The phenolic compounds concentration was higher in the peel than in the pulp. The total phenols and anthocyanins varied a lot while the total flavanols were more constant. The flavanols represent the smaller portion of phenolic compounds

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Atualmente, os compostos bioativos presentes em alimentos in natura vem sendo amplamente estudados, já que cada vez mais fica comprovado sua importância para saúde do homem devido suas funções e ações biológicas. Hoje já associa-se a ingestão de frutas e vegetais e a diminuição do risco de diversas doenças, tais como câncer, inflamações, doenças cardiovasculares, degeneração macular e outras, sendo os carotenóides e compostos fenólicos alguns dos grupos de compostos bioativos aos quais são atribuídas tais ações.1As pimentas têm significativa importância nesse cenário, uma vez que desde a época do Brasil colônia, até hoje, são muito utilizadas na culinária, nas crenças, na medicina e inclusive com arma de defesa. Os compostos presentes na pimenta são utilizados como remédios para artrites (pomadas a base de capsaicina), dores musculares (emplastro ‘Sabiá’), má digestão, dor de cabeça e gastrite. O presente estudo teve como objetivo quantificar os teores de ácido ascórbico, acidez, flavonóides totais, fenólicos totais, carotenóides totais e atividade antioxidante de duas variedades mais comuns da espécie C. Baccatum: pimenta “Dedo-de-Moça” e pimenta “Cambuci”. Além disso, fez-se um estudo para analisar o efeito do cozimento versus compostos bioativos, a fim de avaliar possíveis perdas de atividade devido ao processamento das amostras. Em todos os ensaios, a pimenta Dedo-de-Moça apresentou valores maiores de todos os compostos bioativos, quando comparados aos da pimenta Cambuci. Após o cozimento em água fervente, a maioria dos compostos sofreu redução, exceto nos testes de quantificação de Flavonóides e Carotenóides, os quais demonstraram aumento na concentração após o processamento.

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Technology always advances and thus the device miniaturization and improved performance, besides multifunctionality, they become extremely necessary. A wave of research on the area tends to grow in number and importance in today's market, it is necessary to search for new materials, new applicability of the existing ones and new processes for increasingly cheaper costs. Dielectric materials are considered a key element in this sector being the main electrical properties its high dielectric constant and low dielectric loss. The Polymeric Precursor Method appears as a good alternative because is a low cost, simple process with controlled stoichiometry. In this method, two steps were performed. In a first step, the precursor solution was decomposed into powders and in a second step the precursor solution was converted in thin films. In this work, was used the polymeric precursor methods to get thin films where they were heat treated and characterized by XRD, SEM and AFM. We have obtained Bi3NbO7 thin films with good homogeneity and uniform distribution of grains were noted. We observed that the best condition to obtain the tetragonal phase is annealing the film at high temperatures for a longer soaking time and with excess of bismuth. Several oxides electrodes were evaluated aiming to obtain textured dielectric thin films

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Epidemiological studies have shown an inverse relationship between nuts, including walnuts, intakes and chronic diseases such as cardiovascular diseases and cancers. The nuts contain phenolics compounds and flavonoids and are rich in tocopherol, phytosterols, and squalene. They are sources of carbohydrates, essential fatty acids and minerals. Since walnuts contain high levels of n-3 fatty acids and low unsaturated fatty acids, high levels of vitamin E, pholyphenols, flavonoids, arginine and fiber. The compounds possible beneficial effects are due to their antioxidant and antiproliferative activities, which are linked to a reduced risk for developing atherosclerosis and cancer. In recent years, the consumers have been showing an increased interest in nuts and walnuts because of their nutritional qualities and their potential beneficial effects on people’s health This review aims to describe the importance of beneficial bioactive compounds present in nuts and walnuts.

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This study presents a literature review which shows the nutritional, medicinal and antioxidant importance of mushrooms. In this research, the main antioxidant compounds of mushrooms, such as phenolic acids, flavonoids and tocopherols, as well as their mechanisms of action were described. The main in vitro methods used for evaluation of the antioxidant activity of these compounds were approached. The influences from the solvent polarity and the kind of extraction in the acquisition of the antioxidant compounds were also discussed. It was possible to conclude that mushrooms are a source of carbohydrates, proteins and minerals, thus presenting nutritional properties. The functional and medicinal properties are attributed to glucans, besides being excellent sources of natural antioxidants. Regarding the extraction process, it was noticed that the solvent polarity used in the extraction process is determinant in the obtainment of antioxidant compounds.

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The nanostructured materials over the last decade have been increasing the variety of studies and research applications in many industries. From the understanding and manipulation of nanoscale is possible to obtain high-performance materials. One method, which has been very effective in obtaining of nanostructured composites, is the electrospinning, a technique that uses electrostatic forces to produce fibers from a polymer solution. By understanding and controlling of process conditions, such as solution viscosity, working distance, the velocity of the collector, applied voltage and others conditions, it is possible to obtain fibers in many different morphologies. This work aims to obtain nanostructured composites from polysulfone (PSU) a thermoplastic polymer with high oxidation resistance and good mechanical strength at high temperatures and carbon nanotubes (CNTs) that are excellent reinforcements for polymer materials, their mechanical resistance is greater than that of all known materials; using the electrospinning process via polymer solution. Were used polysulfone solutions, n,n-ndimetil acetamide (PSU / DMAc) and this same solution added of CNTs in order to obtain the nanofibers. In both cases were analyzed the effectiveness of the process from the analysis of fiber diameters, rheological behavior and infrared spectroscopy. The results obtained confirmed the efficiency of the electrospinning process to obtain polymeric fibers