495 resultados para Nanocompósitos. Nanografita. Epóxi. Grafiteexpandido. Microondas


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293 p. El contenido del capítulo 5 está sujeto a confidencialidad

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Polymer matrix composites offer advantages for many applications due their combination of properties, which includes low density, high specific strength and modulus of elasticity and corrosion resistance. However, the application of non-destructive techniques using magnetic sensors for the evaluation these materials is not possible since the materials are non-magnetizable. Ferrites are materials with excellent magnetic properties, chemical stability and corrosion resistance. Due to these properties, these materials are promising for the development of polymer composites with magnetic properties. In this work, glass fiber / epoxy circular plates were produced with 10 wt% of cobalt or barium ferrite particles. The cobalt ferrite was synthesized by the Pechini method. The commercial barium ferrite was subjected to a milling process to study the effect of particle size on the magnetic properties of the material. The characterization of the ferrites was carried out by x-ray diffraction (XRD), field emission gun scanning electron microscopy (FEG-SEM) and vibrating sample magnetometry (VSM). Circular notches of 1, 5 and 10 mm diameter were introduced in the composite plates using a drill bit for the non-destructive evaluation by the technique of magnetic flux leakage (MFL). The results indicated that the magnetic signals measured in plates with barium ferrite without milling and cobalt ferrite showed good correlation with the presence of notches. The milling process for 12 h and 20 h did not contribute to improve the identification of smaller size notches (1 mm). However, the smaller particle size produced smoother magnetic curves, with fewer discontinuities and improved signal-to-noise ratio. In summary, the results suggest that the proposed approach has great potential for the detection of damage in polymer composites structures

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Este trabajo presenta los resultados de una comparación entre una espinela (MgAl2O4) obtenida mediante sol-gel contra otros procesos reportados, tales como el horno eléctrico de arco, la reacción en estado sólido y las microondas.

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Propósito y método de estudio: En el presente estudio se evaluó el factor de biotransferencia (FBT) de arsénico (As) inorgánico en leche bovina cruda a través de agua de consumo en zonas contaminadas con este metaloide en México. Las muestras de leche y agua fueron colectadas en municipios de Durango, San Luis Potosí y Zacatecas zonas lugares donde se lleva a cabo la minería y con antecedente de contaminación por As. Para el análisis de As total fue empleado el método de digestión acida asistido por microondas (EPA 3052). La extracción de especies inorgánicas de As fue asistida por microondas empleando H3PO4 0.3 M a 90 °C durante 30 min, para su posterior separación en una resina de intercambio aniónico fuerte (SAX). La determinación de As total y de especies de arsénico se llevó a cabo por Espectrometría de Masas con Fuente de Plasma de Acoplamiento Inductivo (ICP-MS). Adicionalmente en las muestras leche previamente digeridas se analizó el contenido total de Pb, Cd, Cu, Zn y Fe por ICP-MS con la finalidad de evaluar el grado de contaminación por estos metales y establecer una correlación con la concentración de As en leche y el posible origen de la contaminación. Contribuciones y conclusiones La concentración de As total en el agua de la mayoría de las zonas de estudio superó el límite permisible para agua de consumo según la norma oficial NOM-127-SSA1-1994-2000 (25 μg/L). En cuanto a las muestras de leche, las concentraciones de As se encontraron entre el límite de detección y 472.80 μg/kg, siendo los estados de Durango y San Luis Potosí los que presentaron las concentraciones mayores. Las concentraciones de los otros metales analizados en leche mostraron que el promedio de Pb en leche en Zacatecas y San Luis Potosí, superó el límite permisible de acuerdo a la Comisión Europea. Así mismo para el caso del Cd la concentración media en el estado de San Luis Potosí superó los niveles ya reportados. Las zonas de San Luis Potosí, Durango y Zacatecas presentaron niveles altos de metales esenciales (Zn, Cu y Fe). Además se encontró que para los metales analizados (Pb, Cd, Cu, Zn y Fe) se presentó una correlación positiva estadísticamente significativa (p < 0.05) con As en leche, lo cual sugiere una fuente de contaminación común la minera que se realiza en los sitios de estudio. En cuanto a la concentración de especies de As inorgánico en leche, las concentraciones para la especie de As (V) fueron mayores (79.60-242.20 μg/kg) que las de As (III) (31.00-96.81 μg/kg); dado que la especie de As (V) presenta un menor grado de toxicidad podría indicar menor riesgo para la población que ingiere este alimento. Por último, se determinó el FBT de especies de As inorgánicas a través del agua de consumo, obteniéndose valores superiores a los ya reportados para As total (2.6 x 10-6 a 6 x 10-4); sin embargo, no se encontró una correlación significativa entre As en leche y arsénico en agua (p ˃0.05), lo cual sugiere que el agua no es la única vía de exposición de este metaloide. Para una posterior evaluación del factor de biotransferencia se sugiere el analizar el contenido de As en alimento y el suelo donde habita el organismo e incorporar estas fuentes de contaminación al modelo del FBT.

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This work studied the immiscible blend of elastomeric poly(methyl methacrylate) (PMMA) with poly(ethylene terephthalate) (PET) bottle grade with and without the use of compatibilizer agent, poly(methyl methacrylate-co-glycidyl methacrylate - co-ethyl acrylate) (MGE). The characterizations of torque rheometry, melt flow index measurement (MFI), measuring the density and the degree of cristallinity by pycnometry, tensile testing, method of work essential fracture (EWF), scanning electron microscopy (SEM) and transmission electron microscopy (TEM) were performed in pure polymer and blends PMMA/PET. The rheological results showed evidence of signs of chemical reaction between the epoxy group MGE with the end groups of the PET chains and also to the elastomeric phase of PMMA. The increase in the concentration of PET reduced torque and adding MGE increased the torque of the blend of PMMA/PET. The results of the MFI also show that elastomeric PMMA showed lower flow and thus higher viscosity than PET. In the results of picnometry observed that increasing the percentage of PET resulted in an increase in density and degree crystallinity of the blends PMMA/PET. The tensile test showed that increasing the percentage of PET resulted in an increase in ultimate strength and elastic modulus and decrease in elongation at break. However, in the phase inversion, where the blend showed evidence of a co-continuous morphology and also, with 30% PET dispersed phase and compatibilized with 5% MGE, there were significant results elongation at break compared to elastomeric PMMA. The applicability of the method of essential work of fracture was shown to be possible for most formulations. And it was observed that with increasing elastomeric PMMA in the formulations of the blends there was an improvement in specific amounts of essential work of fracture (We) and a decrease in the values of specific non-essential work of fracture (βWp)

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The research and development of wind turbine blades are essential to keep pace with worldwide growth in the renewable energy sector. Although currently blades are typically produced using glass fiber reinforced composite materials, the tendency for larger size blades, particularly for offshore applications, has increased the interest on carbon fiber reinforced composites because of the potential for increased stiffness and weight reduction. In this study a model of blade designed for large generators (5 MW) was studied on a small scale. A numerical simulation was performed to determine the aerodynamic loading using a Computational Fluid Dynamics (CFD) software. Two blades were then designed and manufactured using epoxy matrix composites: one reinforced with glass fibers and the other with carbon fibers. For the structural calculations, maximum stress failure criterion was adopted. The blades were manufactured by Vacuum Assisted Resin Transfer Molding (VARTM), typical for this type of component. A weight comparison of the two blades was performed and the weight of the carbon fiber blade was approximately 45% of the weight of the fiberglass reinforced blade. Static bending tests were carried out on the blades for various percentages of the design load and deflections measurements were compared with the values obtained from finite element simulations. A good agreement was observed between the measured and calculated deflections. In summary, the results of this study confirm that the low density combined with high mechanical properties of carbon fibers are particularly attractive for the production of large size wind turbine blades

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In recent decades have seen a sharp growth in the study area of nanoscience and nanotechnology and is included in this area, the study of nanocomposites with self-cleaning properties. Since titanium dioxide (TiO2) has high photocatalytic activity and also antimicrobial, self-cleaning surfaces in your application has been explored. In this study a comparison was made between two synthesis routes to obtain TiO2 nanoparticles by hydrothermal method assisted by microwave. And after analysis of XRD and SEM was considered the best material for use in nanocomposites. It was deposited nanocomposite film of poly (dimethyl siloxane) (PDMS) with 0.5, 1, 1.5 and 2% by weight of nanoparticles of titanium dioxide (TiO2) by the spraying method. The nanocomposite was diluted with hexane and the suspension was deposited onto glass substrate, followed by curing in an oven with forced air circulation. The photocatalytic activity of the nanocomposite impregnated with methylene blue was evaluated by UV- vis spectroscopy from the intensity variation of absorption main peak at 660nm with time of exposure to the UV chamber. Changes in the contact angle and microhardness were analyzed before and after UV aging test. The effect of ultraviolet radiation on the chemical structure of the PDMS matrix was evaluated by spectrophotometry Fourier transform infrared (FTIR).The results indicated that the addition of TiO2 nanoparticles in the coating PDMS gave high photocatalytic activity in the decomposition of methylene blue, an important characteristic for the development of self-cleaning coatings

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This employment has the function the utilization of mango seeds Tommy Atkins, like starch source to obtain biopolymers and fibers source and nanowhiskers cellulose also, that will be use like reinforcing fillers in micro and nanobiocomposites polymeric. The fibers in natura removed from tegument mango seed were characterized, as weel as the treated fibers and nanowhiskers of cellulose extracted from them. The starch extracted from seed s almond showed a good performance (32%) and a high purity. The chemicals analyzes, of crystallinity and morphological of the fibers in natura, treated fibers and nanowhiskers of cellulose confirmed the efficacy of the chemical treatement performed to remove amorphous constituents (hemicellulose and lignina). The thermoplastic starch (TPS) obtained from two sources, corn starch and starchy material mango, was produced in a twin screw extruder with compositon mass of 62,5% of starch, 9,4% of water and 28,1% of glycerol. The starch material mango was the main objective of this work for the production of biodegradable materials, and the starch corn was utilized during the production stage to evaluate the processability of the starch and use as parameter for comparison, according of being a conventional source for obtaining conventional comercial starch. The incorporation of fibers (6% in mass) and nanowhiskers cellulose (1% in mass) in matrix of TPS to obtain composite and nanocomposite, respectively, it was performed in single screw extruder. The biocomposites and bionanocomposites polymeric were obtained and the TPS from starchy material mango presented better results of thermal and mechanicals properties when compared to TPS corn starch. Concludes that the sediment generated of the agroindustrial processing mango used presents potencial to producing of biodegradables materials

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For the chemical method of synthesis of co-precipitation were produced ferrite powders manganese-cobalt equal stoichiometric formula Mn (1-x) Co (x) Fe2O4, for 0 < x < 1, first reagent element using as the hydroxide ammonium and second time using sodium hydroxide. The obtained powders were calcined at 400 ° C, 650 ° C, 900 ° C and 1150 ° C in a conventional oven type furnace with an air atmosphere for a period of 240 minutes. Other samples were calcined at a temperature of 900 ° C in a controlled atmosphere of argon, to evaluate the possible influence of the atmosphere on the final results the structure and morphology. The samples were also calcined in a microwave oven at 400 ° C and 650 ° C for a period of 45 minutes possible to evaluate the performance of this type of heat treatment furnace. It was successfully tested the ability of this group include isomorphic ferrite with the inclusion of nickel cations in order to evaluate the occurrence of disorder in the crystalline structures and their changes in magnetic characteristics.To identify the structural, morphological, chemical composition and proportions, as well as their magnetic characteristics were performed characterization tests of X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM), energy dispersive spectroscopy (EDX), thermogravimetric (TG), vibrating sample magnetometry (MAV) and Mössbauer spectroscopy. These tests revealed the occurrence of distortion in the crystal lattice, changes in magnetic response, occurrence of nanosized particles and superparamagnetism

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Tese de Doutoramento, Ciências do Mar da Terra e do Ambiente, Ramo: Ciências e Tecnologias do Ambiente, Especialidade em Biotecnologia, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2016

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Composite laminates with plies in different directions finely dispersed are classified as homogenized. The expected benefits of homogenization include increased mechanical strength, toughness and resistance to delamination. The objective of this study was to evaluate the effect of stacking sequence on the tensile strength of laminates. Composite plates were fabricated using unidirectional layers of carbon/epoxy prepreg with configurations [903/303/-303]S and [90/30/-30]3S. Specimens were subjected to tensile and open hole tension (OHT) tests. According to the experimental results, the mean values of strength for the homogenized laminates [90/30/-30]3S were 140% and 120% greater for tensile and OHT tests, respectively, as compared to laminates with configuration [903/303/-303]S. The increase in tensile strength for more homogenized laminates was associated with the increment in interlaminar interfaces, which requires more energy to produce delamination, and the more complicated crack propagation through plies with different orientations. OHT strength was not affected by the presence of the hole due to the predominance of the interlaminar shear stress in relation to the stress concentration produced by the hole

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As most current studies, reinforced plastics have been, in recent years, a viable alternative in building structural elements of medium and large, since the lightness accompanied by high performance possible. The design of hybrid polymer composites (combination of different types of reinforcements) may enable structural applications thereof, facing the most severe service conditions. Within this class of composite materials, reinforced the underlying tissues hybrid high performance are taking space when your application requires high load bearing and high rigidity. The objective of this research work is to study the challenges in designing these fabrics bring these materials as to its mechanical characterization and fracture mechanisms involved. Some parameters associated with the process and / or form of hybridization stand out as influential factors in the final performance of the material such as the presence of anisotropy, so the fabric weave, the process of making the same, normative geometry of the specimens, among others. This sense, four laminates were developed based hybrid reinforcement fabrics involving AS4 carbon fiber, kevlar and glass 49-E as the matrix epoxy vinyl ester resin (DERAKANE 411-350). All laminates were formed each with four layers of reinforcements. Depending on the hybrid fabric, all the influencing factors mentioned above have been studied for laminates. All laminates were manufactured industrially used being the lamination process manual (hand-lay-up). All mechanical characterization and study of the mechanism of fracture (fracture mechanics) was developed for laminates subjected to uniaxial tensile test, bending in three and uniaxial compression. The analysis of fracture mechanisms were held involving the macroscopic, optical microscopy and scanning electron microscopy

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Among the various effects caused by the climate change and human intervention, the mangrove ecosystem changes through of the years has been worth mentioning, which hasn t known which are the pros and cons for the adjacent coastal and estuarine environments yet. It happens due to the present dynamism in these areas, besides of the difficult understanding of the processes associated with evolution. This study aimed to environmentally evaluate adjacent mangroves from the Macau and Serra oil fields, located on Rio Grande do Norte northern coast, to support the mitigating actions related to the containment of the erosive process, as well as, according to the principles of the Clean Development Mechanism (CDM), to assess the amount of atmospheric carbon sequestered by the studied ecosystem. An inventory was conducted through mangrouve mapping which has supplied this research, especially regarding to the structural characterization of mangrove areas. To understand the local mangrove behavior in a greater level detail, techniques of remote sensing, GIS and GPS were used to make an analogy between the current and past states of the mangrove studied, allowing to make anticipated projections for the future impacts or changes in that region. This study combined data from multispectral LANDSAT 5 TM, Landsat 7 ETM+ with radar microwave data from SAR RADARSAT-1, which increased the interpretation capacity of the data from optical sensor systems. The interpretations have been supported by the data field, representing a better and innovative methodology for the environmental and taxonomic characterization of mangrove forests considered. The results reveal that mangroves of the Ponta do Tubarão Sustainable Development Reserve are biologically representative areas and providing a variety of benefits, especially for local communities, constituting the priority sites for actions development aimed at conservation. They also have been showing the necessity to make mitigating measures in order to recover degraded areas through reforestation or creating new areas of mangrove, as currently 7.1% of the mangrove forests studied are dead or in an advanced state of decomposition. The amount of atmospheric carbon sequestered proved very significant when analyzed for the whole area, which is able to sequester atmospheric 4,294,458 Ton CO2 per year

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A intensa busca por confiabilidade de resultados torna cada vez mais importante o papel dos materiais de referência, principalmente em química analítica, pois fornecem referências metrológicas visando assegurar a rastreabilidade de medições e ainda são fundamentais para a validação de métodos analíticos. O aumento da demanda por novos materiais de referência é gradativo em todas as áreas do conhecimento, porém os setores agropecuários e de alimentos estão entre os mais carentes. No Brasil, essa demanda é atendida somente pela importação do material a custos elevados, sendo freqüente a inexistência de materiais adequados às necessidades do país. Nesse contexto, o presente trabalho visou à produção de material de referência para nutrientes e contaminantes inorgânicos em fosfato de rocha, matéria-prima utilizada para a fabricação de fertilizantes. O material foi produzido seguindo as seguintes etapas, estabelecidas internacionalmente pelas ISO GUIAS 30 a 35: preparo e envase do material, avaliação da homogeneidade, teste de estabilidade a curto e a longos períodos e na caracterização prévia, que consistiu na montagem do ensaio colaborativo, com a distribuição do material preparado a laboratórios que se dispuseram a colaborar com o projeto. Ainda foram realizados estudos voltados ao preparo da amostra visando a rapidez e redução de uso de reagentes. A avaliação da estimativa da massa mínima, da homogeneidade e da estabilidade do material foi realizada utilizando-se como técnica de determinação a espectrometria de emissão óptica com plasma indutivamente acoplado (ICP OES). Para a determinação de fósforo foi avaliado o emprego de espectrometria de emissão com plasma induzida por laser (LIBS). Os resultados foram submetidos à análise de variância de fator único (ANOVA) e a homogeneidade e a estabilidade do material apresentaram médias dentro do intervalo de confiança de 95%. Os resultados obtidos durante o preparo e através do ensaio colaborativo possibilitaram a caracterização química e o calculo das incertezas relativas a cada etapa do preparo do material, sendo elaborada a carta controle com os resultados do material de referência e as incertezas expandidas para cada um dos analitos em estudo. Parte do trabalho foi desenvolvido junto ao National Research Council Canada (NRCC) em Ottawa no Canadá, onde foi avaliada a aplicabilidade do sistema de combustão iniciada por radiação microondas no preparo de amostras de materiais de referência nacionais anteriormente preparados, fígado bovino (RM-Agro E3001a) e forrageira (RM-Agro E1001a), para a determinação de As, Cd, Cu e Pb por espectrometria de massas com plasma indutivamente acoplado (ICP-MS), sendo obtidos resultados que poderão ser aplicados em outros materiais orgânicos e inorgânicos.

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O presente estudo avaliou a eficiência agronômica da aplicação de pó de rochas silicatadas como fonte de potássio em cultivos consecutivos de milheto e alfafa em casa de vegetação. As rochas Biotita Xisto (BX), Sienito Ceraíma (TA15), Mafurito Acreúna (TA21), Sienito SANW (TA20), Biotita Gnaísse (EL02) e Fonolito Curimbaba (FN) foram aplicadas como fontes de potássio de liberação lenta em três doses de 1,25; 2,50 e 5,0 g de rocha moída por kg de solo. Cloreto de potássio foi utilizado como fertilizante convencional em doses de 0,10; 0,20 e 0,40 g de KCl kg-1 de solo. O solo utilizado nos experimentos foi um latossolo amarelo distrófico de textura média, com teor de potássio de 1,2 mmolc dm-3 solo. A rocha TA21 foi testada sem e com correção da acidez do solo. Com a finalidade de observar a dissolução das rochas em um ambiente com plantas foram realizados cinco cultivos consecutivos: (1) milheto (62 dias de cultivo); (2), (3) e (4) alfafa (80, 115 e 155 dias de cultivo, respectivamente) e (5) milheto, com 80 dias de cultivo. A produção de matéria seca no cultivo da alfafa foi significativamente menor do que o cultivo do milheto. As amostras de forrageira foram digeridas e quantificadas empregando o método de decomposição assistida por radiação micro-ondas com HNO3 + H2O2 para a determinação do teor de potássio extraído pelas plantas. As amostras de rochas foram caracterizadas por fluorescência de raios X, difração de raios X, microscopia eletrônica de varredura e distribuição de tamanho das partículas e submetidas a ensaios com solução extratora Mehlich-1, ácido acético e ácido fumárico 0,05mol L-1, em diferentes tempos de extração. Todos os extratos foram quantificados por espectrometria de emissão óptica com plasma acoplado indutivamente (ICP OES), sendo determinados os teores de Al, Ca, K, Mg, Mn, Na, P e Zn. O método da resina trocadora de íons foi aplicado para todas as amostras de rochas avaliadas, sendo quantificados K, Ca, Mg e P. Potássio solúvel foi determinado por fotometria de chama após extração com água quente, método oficial do Ministério da Agricultura, Pecuária e Abastecimento (MAPA). Para extração drástica foram avaliados dois métodos de decomposição assistida por radiação microondas: com uso de água régia e água régia invertida com adição de H2O2 e 2 etapas de pré-decomposição. Os elementos Al, Ca, K, Mg, Mn, Na e Zn foram quantificados por ICP OES e os resultados obtidos foram comparados por meio do teste t pareado, que indicou não haver diferença significativa entre os métodos de decomposição no intervalo de 95% de confiança. A partir das concentrações obtidas nas extrações e da quantidade de potássio extraída nos cultivos foi realizado o cálculo de correlação entre os extratores e as plantas, considerando a eficiência agronômica. O uso da calagem nos solos que receberam adição da rocha TA21 influenciou significativamente a absorção de potássio, sendo que foi observado efeito relativo à liberação de K apenas quando essa rocha foi adicionada ao solo sem tratamento prévio com a calagem. A ordem decrescente de eficiência de extração de potássio, considerando o total aplicado nos tratamentos e o K extraído pelas plantas foi EL02 > TA21-SC > KCl > FN> BX> TA20 > TA15 > TA21. Os dois métodos de decomposição desenvolvidos apresentaram melhor correlação com o potássio extraído das rochas EL02. O estudo de casa de vegetação corroborou com os ensaios de extração realizados em laboratório, que indicaram que a rocha EL02 é a que possui o maior percentual de liberação de K em relação às demais rochas avaliadas.