892 resultados para Desenvolvimento do comportamento


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Population growth experienced in major cities, allied to society s need of infra-structure, especially ones related to habitational demands, increases the consumption of construction materials. As a consequence, consumption of natural resources itself. Thus, due to this process, concrete is one of the most produced materials in civil construction. This is also due to the great diversity of its application, easiness in its execution and adequate mechanical performance, as well as low production costs. Following the same tendencies in construction development, the ceramic industry has intensified the production of porcelain ceramic tiles and floors. These are achieved by a fine finishing and receive polishing at the end of the fabrication process. This work researched the use of porcelain residues in polishing for the production of concrete. All of which; due to economical and environmental issues. This process aims to prove adequate destiny for this type of residue, due to environmental issues, incorporating it to the concrete itself; all of which provides economy in consumption of the materials that constitute concrete. Thus, the main characteristics of concrete were investigated through the inclusion of different concentration of the porcelain residue as additional trait element. The residue rates incorporated to the trait varied from 10% to 50% in relation to the cement mass, in the traits with plastic additives and without plastic additives. It is observed that the inclusion of porcelain residue produced a meaningful alteration in the consistency of fresh concrete. This residue has a fine granulometry and it considerably absorbed the water used in the concrete spreading, influencing the way this material is dealt with. Thus, the value of cement striking decreases with the increase of residues present in trait. The maximal incorporation of the residue was of 50%, massively, for the same factor water/initial cement. The use of residues in concrete results in an 40% increase in the compression resistance. It is also proportional to residue concentration of porcelain in the trait. The microstructure was also favored once porosity and concrete absorption decreases with the use of this residue. The parameters demonstrate the quality and durability of the concrete produced with this residue. The use of porcelain residue in concrete composition has not produced meaningful thermal behavior changes. Thermal conductivity, heat capacity and thermal diffusivity have been maintained basically constant

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Novel cementing materials formulations containing flexible polymeric admixtures have been studied aiming at improving the mechanical behavior of oil well cement slurries submitted to steam injection. However, research activities in this sector are still under development. The steam injected directly into the well causes casing dilation, which after a reduction in temperature, tends to return to its original dimensions, resulting in crack formation and hydraulic isolation loss of the well, which will result in shortening of well life. In this scenario, the objective of the present study was to evaluate the mechanical behavior of Portland-based slurries containing SBR latex, applied in oil well cementing of wells submitted to steam injection. Were formulated slurries with densities of 1.797 g/cm3 (15.0 lb/Gal) and 1.869 g/cm3 (15.6 lb/Gal), containing admixtures with a latex concentration of 0; 66.88; 133.76; 200.64 and 267.52 L/m3 (0, 0.5, 1.0, 1.5 and 2.0 gpc). Tests including rheology, fluid loss control, thickening time, API compressive strength and splitting tensile strength, beyond steam injection simulation. Microstrutural characteristics of the slurries were also performed (XRD, TG, FTIR and SEM). The results showed that increasing the polymer concentration increased in the rheological properties and fluid loss, and a decrease in the elasticity modulus of the cement slurries. The results obtained showed that the slurries can be applied in cementing operations of oil wells submitted to steam injection.

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É hoje em dia inquestionada a importância da inovação para o crescimento económico e para o desenvolvimento sustentado das empresas e da sociedade. Sendo verdade que o desempenho em termos de inovação das empresas, regiões ou países está condicionado por múltiplos factores de contexto, não é menos verdade que o verdadeiro motor desse desempenho são as iniciativas das empresas e das organizações. O sucesso dos projectos de inovação depende de um elevado número de factores, alguns dos quais são frequentemente negligenciados aquando da análise dos processos de inovação, tais como alianças estratégicas e parcerias, estrutura dos consórcios, protecção dos direitos de propriedade intelectual, estratégias de exploração dos resultados dos projectos, etc. Este artigo centra-se na análise e caracterização do processo de inovação em projectos de desenvolvimento de novos produtos levados a cabo por consórcios liderados por empresas industriais em Portugal. Após uma breve introdução ao problema, descreve-se de forma sucinta o enquadramento metodológico proposto e apresentam-se e discutem-se resultados obtidos através de um estudo conduzido pelo INESC Porto e pelo Observatório das Ciências e do Ensino Superior (OCES) do Ministério da Ciência, Inovação e Ensino Superior (MCIES).

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This work main objective is to study the use of bricks in barium X-rays rooms in order to contribute to the optimization of shielding rooms diagnosis. The work was based on experimental measurements of X-ray attenuation (40 to 150 kV), using ceramic seal bearing the incorporation of barium sulfat (BaSO4). Different formulations were studied in three different firing temperatures and evaluated for incorporation in the ceramic body. The composition of 20% of barite processed at a temperature of 950 ° C showed better physical and mechanical properties, is considered the most suitable for the purpose of this work. Were produced bricks sealing composition formulated based on that presented the best technological features. These blocks were tested physically as a building material and wall protective barrier. Properties such as visual, deviation from the square, face flatness, water absorption and compressive strength were evaluated for all the blocks produced. The behavior of this material as attenuator for X-rays was investigated by experimental results which take into account mortar manufacturers barium through the different strains and compared with the reference material (Pb). The simulation results indicated that the ceramic block barium shows excellent properties of attenuation equivalence lead taking into account the energy used in diagnostic X-ray

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The growing concern with the solid residues management, observed in the last decade, due to its huge amount and impact, has motivated the search for recycling processes, where these residues can be reprocessed to generate new products, enlarging the cycle of materials and energy which are present. Among the polymeric residues, there is poly (ethylene terephthalate) (PET). PET is used in food packaging, preferably in the bottling of carbonated beverages. The reintegration of post-consumer PET in half can be considered a productive action mitigation of environmental impacts caused by these wastes and it is done through the preparation of several different products at the origin, i.e. food packaging, with recycling rates increasing to each year. This work focused on the development and characterization mechanical, thermal, thermo-mechanical, dynamic mechanical thermal and morphology of the pure recycled PET and recycled PET composites with glass flakes in the weight fraction of 5%, 10% and 20% processed in a single screw extruder, using the following analytical techniques: thermogravimetry (TG), differential scanning calorimetry (DSC), tensile, Izod impact, Rockwell hardness, Vicat softening temperature, melt flow rate, burn rate, dynamic mechanical thermal analysis (DMTA) and scanning electron microscopy (SEM). The results of thermal analysis and mechanical properties leading to a positive evaluation, because in the thermograms the addition of glass flakes showed increasing behavior in the initial temperatures of thermal decomposition and melting crystalline, Furthermore was observed growing behavior in the mechanical performance of polymer composites, whose morphological structure was observed by SEM, verifying a good distribution of glass flakes, showing difference orientation in the center and in the surface layer of test body of composites with 10 and 20% of glass flakes. The results of DMTA Tg values of the composites obtained from the peak of tan ä showed little reductions due to poor interfacial adhesion between PET and recycled glass flakes.

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Ceramic filters are cellular structures that can be produced by various techniques, among which we highlight the replication method, or method of polymeric sponge. This method consists of impregnating polymeric foam with ceramic slurry, followed by heat treatment, where will occur decomposition of organic material and the sinter of the ceramic material, resulting in a ceramic whose structure is a replica of the impregnated sponge. Ceramic filters have specific properties that make this type of material very versatile, used in various technological applications such as filters for molten metals and burners, make these materials attractive candidates for high temperature applications. In this work we studied the systems Al2O3-LZSA ceramic filters processed in the laboratory, and commercial Al2O3-SiC ceramics filters, both obtained by the replica method, this work proposes the thermal and mechanical characterization. The sponge used in the processing of filters made in the laboratory was characterized by thermogravimetric analysis. The ceramic filters were characterized by compressive strength, flexural strength at high temperatures, thermal shock, permeability and physical characterization (density and porosity) and microstructural (MEV and X-rays). From the results obtained, the analysis was made of the mechanical behavior of these materials, comparing the model proposed by Gibson and Ashby model and modified the effective area and the tension adjusted, where the modified model adapted itself better to the experimental results, representing better the mechanical behavior of ceramic filters obtained by the replica method

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A transição da adolescência para a idade adulta é uma fase crucial do desenvolvimento de qualquer jovem, na qual são colocados vários desafios em relação ao seu futuro. Os adolescentes com deficiência enfrentam desafios adicionais: quando comparados com os seus pares, têm mais dificuldades em encontrar um percurso de vida adulta, por exemplo no emprego ou no prosseguimento de estudos. Por outro lado, a baixa participação social é um dos fatores que mais afeta a qualidade de vida. Percebendo-se que o processo de transição é multifacetado, as seis investigações apresentadas neste trabalho colocam o enfoque no próprio indivíduo, mas também em contextos importantes para a transição como a família, através da seguinte sequência de estudos: (1) dois estudos preliminares que caracterizam adolescentes e jovens com deficiência no que se refere a comportamentos ligados à saúde, estilos de vida e respetivas interacções com a satisfação com a vida; (2) dois estudos qualitativos que confirmam a problemática da transição e aferem os fatores críticos envolvidos, através das percepções de pais e jovens; e (3) dois estudos que fazem a análise do comportamento destes factores numa amostra de adolescentes e jovens com deficiência. Os resultados revelam um padrão de saúde e sintomático mais negativo nos jovens com deficiência quando comparados com os seus pares, e salientam a importância da relação com os outros significativos, em especial os pais. Os vários estudos mostram ainda que os contextos de vida devem proporcionar suportes adequados e atempados à transição e apelam para a importância do desenvolvimento de aptidões críticas, tais como a promoção de competências de autodeterminação, autoeficácia, e promoção da resiliência. Os resultados dos estudos são discutidos de forma integrada. São também feitas recomendações futuras desde a perspectiva individual até à das políticas e planeamento. Finalmente, é proposto um modelo do planeamento e desenvolvimento da transição que pretende ser orientador para todos os atores envolvidos no processo.

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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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O trabalho apresentado enquadra-se na realização do estágio curricular no âmbito do 2º ciclo de reabilitação psicomotora. O estágio curricular decorreu no Centro de Apoio ao Desenvolvimento Infantil durante o ano letivo 2012/2013. Nesta instituição a estagiária desenvolveu o seu trabalho dentro de problemáticas como a perturbação de hiperatividade e défice de atenção e os problemas de comportamento. O trabalho envolve a caraterização da instituição, a consideração da intervenção psicomotora no âmbito do desenvolvimento e aprendizagem e o aprofundamento teórico das problemáticas observadas. No sentido deste trabalho refletir as conquistas e dificuldades de todo um processo, são apresentadas as atividades realizadas no âmbito do estágio e uma reflexão crítica sobre o contributo de todo o processo para a aprendizagem e futuro profissional da estagiária.

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Os conhecimentos parentais sobre o desenvolvimento da criança na primeira infância são como a literatura mostra, fundamentais no modo como os pais interagem e atuam com os seus filhos, ou seja, nas práticas educativas parentais, sendo determinantes no comportamento e desenvolvimento futuro dos seus filhos. Muito pouco se tem investido neste tema, ao nível nacional, embora o mesmo não se verifique ao nível internacional. Neste sentido, parece especialmente interessante explorar esta dimensão em pais de crianças portuguesas com um instrumento também pouco conhecido na realidade portuguesa. O presente estudo tem como objetivo caraterizar os conhecimentos sobre o desenvolvimento infantil de um grupo de mães de crianças do pré-escolar, que frequentavam jardins-de-infância na margem sul do Tejo. Para tal pudemos contar com a colaboração de 110 mães de crianças com idades compreendidas entre os 3 e os 7 anos que acederam em participar, preenchendo um questionário com 58 itens, adaptado do “Knowledge of Infant Development Inventory - Preeschoolers” (KIDI-P); (MacPhee, 1981). Os dados obtidos através do KIDI-P, foram cruzados com diversas variáveis sociodemográficas, tendo-se verificado alguns resultados, significativos, nomeadamente no que se refere ao nível de instrução, de situação profissional e nível de rendimento familiar. O nível de instrução, apresenta uma correlação significativa com os conhecimentos maternais, sendo que quanto mais baixo, menor o número de respostas corretas. As mães empregadas conseguem dar um maior número de respostas corretas, demonstrando assim mais conhecimento sobre o desenvolvimento da criança, do que as que estão desempregadas, assim aquelas com nível baixo de rendimento familiar apresentam mais respostas erradas do que as que têm rendimento familiar mais elevado. Podemos assim concluir que algumas variáveis sociodemográficas estão relacionadas com o conhecimento das mães sobre o desenvolvimento da criança, confirmando vários dos estudos científicos realizados ao nível internacional.

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Dissertação de mest. em Estudos Marinhos e Costeiros, especialização em Aquacultura, Unidade de Ciências e Tecnologias dos Recursos Aquáticos, Univ. do Algarve, 1994

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The 15Kh2MFA steel is a kind of Cr-Mo-V family steels and can be used in turbines for energy generation, pressure vessels, nuclear reactors or applications where the range of temperature that the material works is between 250 to 450°C. To improve the properties of these steels increasing the service temperature and the thermal stability is add a second particle phase. These particles can be oxides, carbides, nitrites or even solid solution of some chemical elements. On this way, this work aim to study the effect of addition of 3wt% of niobium carbide in the metallic matrix of 15Kh2MFA steel. Powder metallurgy was the route employed to produce this metallic matrix composite. Two different milling conditions were performed. Condition 1: milling of pure 15Kh2MFA steel and condition 2: milling of 15Kh2MFA steel with addition of niobium carbide. A high energy milling was carried out during 5 hours. Then, these two powders were sintered in a vacuum furnace (10-4torr) at 1150 and 1250°C during 60 minutes. After sintering the samples were normalized at 950°C per 3 minutes followed by air cooling to obtain a desired microstructure. Results show that the addition of niobium carbide helps to mill faster the particles during the milling when compared with that steel without carbide. At the sintering, the niobium carbide helps to sinter increasing the density of the samples reaching a maximum density of 7.86g/cm³, better than the melted steel as received that was 7,81g/cm³. In spite this good densification, after normalizing, the niobium carbide don t contributed to increase the microhardness. The best microhardness obtained to the steel with niobium carbide was 156HV and to pure 15Kh2MFA steel was 212HV. It happened due when the niobium carbide is added to the steel a pearlitic structure was formed, and the steel without niobium carbide submitted to the same conditions reached a bainitic structure

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Dissertação de Mestrado, Engenharia Biológica, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2016

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Tese (doutorado)—Universidade de Brasília, Faculdade de Economia, Administração e Contabilidade, Programa de Pós-Graduação em Administração, 2016.