995 resultados para Nanoparticulas de dióxido de titânio e prata


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A alta resistência combinada à baixa densidade e resistência à corrosão do titânio e suas ligas apresentam-se de grande importância para indústrias química, automobilística, aeronáutica e biomédica. Todavia, a produção e processamento do titânio possui custos elevados. Consequentemente, muitos esforços tem sido despendidos para reduzir o custo de peças de titânio. Uma alternativa de redução de custo foi produzir peças pela técnica de metalurgia do pó, sem a necessidade de operações secundárias. Atualmente os métodos usados para produzir pós de titânio são os processos de eletrodo rotatório à plasma e hidretação-dehidretação. O presente trabalho tem como objetivo produzir e caracterizar os pós de titânio comercialmente puro, obtidos a partir de sucata de processos de conformação, usando o processo de hidretação-dehidretação (HDH). Sua processabilidade foi testada através das técnicas de moldagem por injeção de pós e metalurgia do pó convencional. A morfologia, microestrutura e composição dos pós foram caracterizados pelas análises de difração de raios-x, microscopia eletrônica de varredura e analisador elementar de hidrogênio. Os resultados mostraram que o processo HDH combinado com a moagem mecânica é capaz de produzir partículas dede titânio com tamanho médio na faixa de 7-45 mm, que podem ser usadas nas técnicas de moldagem por injeção de pós e metalurgia do pó convencional, respectivamente.

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O principal objetivo dessa dissertação é analisar, através de um estudo caso, como a questão do “preconceito intergrupal” pode ser percebida no desenvolvimento histórico de pequenos municípios brasileiros. Escolhendo a história da memória da cidade de Cachoeira da Prata como objeto central, buscamos discutir como ocorreu o processo de diferenciação social da pequena comunidade formada pelos descendentes do ex-escravo Nicolau Teixeira do restante da cidade. Para tanto, dividimos a dissertação em duas partes. A primeira é formada pelos três primeiros capítulos, nos quais apresentamos a vila fabril de Cachoeira de Macacos como o cenário, no qual o cel. Américo Teixeira é identificado como o líder maior de um projeto de domínio político e industrial que deixou marcas duradouras na memória da população mais antiga da cidade. Nesse contexto, buscamos discutir como o fenômeno do pós-emancipação da escravidão se manifestou na localidade, analisando parte da trajetória de vida do ex-escravo Nicolau Teixeira, um leal apoiador do projeto político do cel. Américo, que se tornou, na primeira metade do século XX, o patriarca de uma comunidade criada nas imediações da antiga vila fabril. Na segunda parte, composta exclusivamente pelo quarto capítulo, discutimos de maneira conjugada, a história da diferenciação social da comunidade e diferentes posicionamentos políticos e metodológicos que adotamos ao longo da pesquisa. Após essa análise, concluímos que só é possível entender os meandros do processo que levou os descendentes de Nicolau Teixeira à condição de exclusão social após percebê-los como atores capazes de elaborar narrativas e representações que auxiliam a população de Cachoeira da Prata a conhecer um “outro lado” da história local.

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As práticas de manejo influenciam fatores controladores da dinâmica do C em solos agrícolas e, portanto, seus estoques de C orgânico e os fluxos de C no sistema solo-atmosfera na forma de dióxido de carbono (CO2) em solo em condições aeróbicas e metano (CH4) em solo inundado. O objetivo geral desse trabalho foi avaliar essas influências em solos submetidos por longo período aos sistemas de preparo convencional (PC) e plantio direto (PD).

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Este trabalho tem como objetivo primeiro analisar o tratamento que a grande imprensa dispensou às notícias relativas à poluição do ar por dióxido de enxofre (S02) no município do Rio de Janeiro, nos anos de 1982-83. Foram consultados os seguintes diários: Jornal do Brasil, O Globo, Ultima Hora, Tribuna da Imprensa e O Dia. O primeiro capítulo apresenta a situação administrativa, legislativa e histórica do município do Rio de Janeiro, após o que julgamos importante a apresentação dos vãrios conceitos existentes sobre meio ambiente. Fornecemos também um quadro da situação ambiental de nosso municfpio. O capítulo terceiro discute então o que vem a ser educação ambiental sob vãrios pontos de vista. Procuramos também situar os jornais como educadores não formais e questionamos o cumprimento, pelos jornais da função que lhe e primeira: informar a população dos fatos que a cerca.

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O objetivo deste trabalho foi a produção e caracterização de componentes sinterizados de titânio para aplicação biomédica, obtidos através do processo de fabricação chamado de Moldagem de Pós por Injeção ( MPI ), ou “Metal Injection Molding” ( MIM ) na língua inglesa. Para a produção dos componentes de titânio, utilizou-se de pós de hidreto de titânio produzidos pelo processo de Hidretação-Dehidretação ( HDH ), no Laboratório de Transformação Mecânica - UFRGS. Foram realizados ensaios para a caracterização dos componentes sinterizados quanto às suas propriedades mecânicas, resistência à corrosão, características morfológicas e de biocompatibilidade. Este trabalho concentra-se no desenvolvimento e produção de componentes para área odontológica ( implantodontia ) e médica, visando a implementar a técnica de Moldagem de Pós por Injeção ( MPI ) de hidreto de titânio para aplicação na produção de implantes, tendo em vista que, atualmente, este processo não é utilizado para tal fim. Para as análises de biocompatibilidade foram produzidos parafusos corticais para utilização como implantes. Após a caracterização morfológica e química dos implantes produzidos foram realizados ensaios in vitro de corrosão e in vivo de biocompatibilidade onde foi possível observar algumas características da superfície do implante como, por exemplo, a susceptibilidade à corrosão por frestas e elevado recobrimento ósseo do implante.

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SILVA, J. S. P. Estudo das características físico-químicas e biológicas pela adesão de osteoblastos em superfícies de titânio modificadas pela nitretação em plasma. 2008. 119 f. Tese (Doutorado) - Faculdade de Medicina, Universidade de São Paulo. São Paulo, 2008.

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Commercially pure Titanium (cp Ti) is a material largely used in orthopedic and dental implants due to its biocompatibility properties. Changes in the surface of cp Ti can determine the functional response of the cells such as facilitating implant fixation and stabilization, and increased roughness of the surface has been shown to improve adhesion and cellular proliferation. Various surface modification methods have been developed to increase roughness, such as mechanical, chemical, electrochemical and plasma treatment. An argon plasma treatment generates a surface that has good mechanical proprieties without chemical composition modification. Besides the topography, biological responses to the implant contribute significantly to its success. Oxidative stress induced by the biomaterials is considered one of the major causes of implant failure. For this reason the oxidative potential of titanium surfaces subjected to plasma treatment was evaluated on this work. CHO-k1 cells were cultivated on smooth or roughed Ti disks, and after three days, the redox balance was investigated measuring reactive oxygen species (ROS) generation, total antioxidant capacity and biomarkers of ROS attack. The results showed cells grown on titanium surfaces are subjected to intracellular oxidative stress due to hydrogen peroxide generation. Titanium discs subjected to the plasma treatment induced less oxidative stress than the untreated ones, which resulted in improved cellular ability. Our data suggest that plasma treated titanium may be a more biocompatible biomaterial.

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Titanium is a biomaterial widely employed in biomedical applications (implants, prostheses, valves, stents). Several heat treatments are usually used in order to obtain physical properties required to different applications. This work studied the influence of the heat treatment on microstructure of commercial pure titanium, and their consequences in growth and proliferation of MC3T3-E1 cells. Discs of titanium were treated in different temperatures, and characterized by optical microscopy, image analysis, wettabillity, roughness, hardness and X-ray diffraction. After the heat treatment, significant modifications in these properties were observed. Pattern images of titanium, before and after the cell culture, were compared by overlapping to analyze the influence of microstructure in microstructure and preferences guidance cells. However, in general, titanium discs that showed a higher residual strength also presented an increase of cells numbers on surface

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This work aims to develop a methodology for analysis of images using overlapping, which assists in identification of microstructural features in areas of titanium, which may be associated with its biological response. That way, surfaces of titanium heat treated for 08 (eight) different ways have been subjected to a test culture of cells. It was a relationship between the grain, texture and shape of grains of surface of titanium (attacked) trying to relate to the process of proliferation and adhesion. We used an open source software for cell counting adhered to the surface of titanium. The juxtaposition of images before and after cell culture was obtained with the aid of micro-hardness of impressions made on the surface of samples. From this image where there is overlap, it is possible to study a possible relationship between cell growth with microstructural characteristics of the surface of titanium. This methodology was efficient to describe a set of procedures that are useful in the analysis of surfaces of titanium subjected to a culture of cells

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Discs were grade II cp Ti oxynitride by plasma of Ar - N2 - O2 using different proportions of individual gases. These ratios were established from analysis of optical emission spectroscopy (OES) of plasma species. The proportions that resulted in species whose spectra showed an abrupt change of light intensity were chosen for this study. Nanohardness tests revealed that there was a correlation between the intensity of N2 + species with the hardness, because the treatments where they had a higher intensity, obtained a higher value nanohardness, although the crystalline phases have remained unchanged. With respect to topography, it was observed that in general, the surface roughness is related to the intensities of plasma species, because they may have different values depending on the behavior of the species. Images obtained by optical microscopy revealed a surface with grains of different colors to optical reflectance showed a peak of reflection in the red area. Measures the contact angle and surface tension showed hydrophilic properties and hydrophilic with little variation of polar and dispersive components of surface tension

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The pulsed plasma nitriding is a solution currently used in the metallurgical industry to resolve problems earlier in the processing of parts by using plasma DC voltage. These problems consisted mainly of edge effect and opening arches caused due to non-uniformity of electric fields on uneven surfaces. By varying the pulse width can reduce these effects. However, variations in pulse width can drastically affect the population of the plasma species and hence the final microstructure of the nitrided layer. In literature, little is known about the effect of process parameters on the properties of the plasma species and, consequently, the surface properties. We have developed a system of nitriding with pulsed source with fixed period of 800  pulse width is variable. Examined the variation of these parameters on the properties of nitrided surface when keeping constant temperature, gas composition, flow, pressure and power. It was found that the values of width and pulse repetition time of considerable influence in the intensities of the species present in plasma. Moreover, we observed the existence of the edge effect for some values of pulse widths, as well as changes in surface roughness and hardness

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Titanium nitride films were grown on glass using the Cathodic Cage Plasma Deposition technique in order to verify the influence of process parameters in optical and structural properties of the films. The plasma atmosphere used was a mixture of Ar, N2 and H2, setting the Ar and N2 gas flows at 4 and 3 sccm, respectively and H2 gas flow varied from 0, 1 to 2 sccm. The deposition process was monitored by Optical Emission Spectroscopy (OES) to investigate the influence of the active species in plasma. It was observed that increasing the H2 gas flow into the plasma the luminescent intensities associated to the species changed. In this case, the luminescence of N2 (391,4nm) species was not proportional to the increasing of the H2 gas into the reactor. Other parameters investigated were diameter and number of holes in the cage. The analysis by Grazing Incidence X-Ray Diffraction (GIXRD) confirmed that the obtained films are composed by TiN and they may have variations in the nitrogen amount into the crystal and in the crystallite size. The optical microscopy images provided information about the homogeneity of the films. The atomic force microscopy (AFM) results revealed some microstructural characteristics and surface roughness. The thickness was measured by ellipsometry. The optical properties such as transmittance and reflectance (they were measured by spectrophotometry) are very sensitive to changes in the crystal lattice of the material, chemical composition and film thicknesses. Therefore, such properties are appropriate tools for verification of this process control. In general, films obtained at 0 sccm of H2 gas flow present a higher transmittance. It can be attributed to the smaller crystalline size due to a higher amount of nitrogen in the TiN lattice. The films obtained at 1 and 2 sccm of H2 gas flow have a golden appearance and XRD pattern showed peaks characteristics of TiN with higher intensity and smaller FWHM (Full Width at Half Maximum) parameter. It suggests that the hydrogen presence in the plasma makes the films more stoichiometric and becomes it more crystalline. It was observed that with higher number of holes in the lid of the cage, close to the region between the lid and the sample and the smaller diameter of the hole, the deposited film is thicker, which is justified by the most probability of plasma species reach effectively the sample and it promotes the growth of the film

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Continuous Synthesis by Solution Combustion was employed in this work aiming to obtain tin dioxide nanostructured. Basically, a precursor solution is prepared and then be atomized and sprayed into the flame, where its combustion occurs, leading to the formation of particles. This is a recent technique that shows an enormous potential in oxides deposition, mainly by the low cost of equipment and precursors employed. The tin dioxide (SnO2) nanostructured has been widely used in various applications, especially as gas sensors and varistors. In the case of sensors based on semiconducting ceramics, where surface reactions are responsible for the detection of gases, the importance of surface area and particle size is even greater. The preference for a nanostructured material is based on its significant increase in surface area compared to conventional microcrystalline powders and small particle size, which may benefit certain properties such as high electrical conductivity, high thermal stability, mechanical and chemical. In this work, were employed as precursor solution tin chloride dehydrate diluted in anhydrous ethyl alcohol. Were utilized molar ratio chloride/solvent of 0,75 with the purpose of investigate its influence in the microstructure of produced powder. The solution precursor flux was 3 mL/min. Analysis with X-ray diffraction appointed that a solution precursor with molar ratio chloride/solvent of 0,75 leads to crystalline powder with single phase and all peaks are attributed to phase SnO2. Parameters as distance from the flame with atomizer distance from the capture system with the pilot, molar ratio and solution flux doesn t affect the presence of tin dioxide in the produced powder. In the characterization of the obtained powder techniques were used as thermogravimetric (TGA) and thermodiferential analysis (DTA), particle size by laser diffraction (GDL), crystallographic analysis by X-ray diffraction (XRD), morphology by scanning electron microscopy (SEM), transmission electron microscopy (TEM), specific surface area (BET) and electrical conductivity analysis. The techniques used revealed that the SnO2 exhibits behavior of a semiconductor material, and a potentially promising material for application as varistor and sensor systems for gas