761 resultados para Aluminio - Corrosão


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Quando adicionadas ao betão, a possibilidade de corrosão das fibras de aço , devido à penetração de cloretos e ação da carbonatação, é um parâmetro de durabilidade no betão auto-compactável reforçado com fibras de aço (BACRFA) que requer especial atenção. No BACRFA fendilhado, a corrosão tende a ocorrer nas fibras de aço que atravessam as fissuras, o que pode afetar o seu comportamento à flexão. Deste modo, o estudo do comportamento interfacial fibra/matriz é importante para a compreensão dos efeitos da corrosão das fibras de aço no comportamento mecânico e na durabilidade das estruturas de BACRFA. Com o intuito de avaliar estes efeitos, no presente trabalho desenvolveu-se um ensaio experimental de arrancamento de fibras de aço em BAC fendilhado, sujeitas previamente à ação da corrosão por exposição a um ambiente agressivo de cloretos, sendo a corrosão avaliada por intermédio de técnicas eletroquímicas. Os ensaios eletroquímicos realizados revelaram que a probabilidade de corrosão das fibras de aço num ambiente com cloretos é superior a 90%. No mesmo ambiente, a susceptibilidade para a corros ão das fibras de aço que atravessam uma pseudo-fissura, aumenta com a abertura de fissura provocando um aumento da resistência ao arranque da fibra em BAC fissurado

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El presente estudio se orienta a materiales de aplicación en la fabricación de motores y transformadores de potencias medias a bajas (laminaciones), abordando en el mismo los aspectos inherentes a la etapa de recocido descarburante realizado por el usuario. Dicho tratamiento térmico permite modificar el contenido de carbono original alcanzando niveles muy bajos (< 0,005%C). Además, se debe aumentar el tamaño de grano a valores óptimos para conseguir las mejores propiedades magnéticas: bajas pérdidas y alta permeabilidad. Este crecimiento de grano está fuertemente influido por las características morfológicas y por la cantidad de partículas de segunda fase precipitadas, de las cuales el nitruro de aluminio (AlN) es el principal inhibidor de crecimiento. Su control o la predicción de su influencia es el objetivo de los usuarios de laminaciones, para obtener un tamaño de grano adecuado. En consecuencia, este trabajo propone un estudio exhaustivo del comportamiento del AlN en el anclaje del borde de grano y en la formación de la textura cristalográfica, y la posibilidad de modelizar matemáticamente su influencia. El objetivo general de este trabajo es el estudio integral de la optimización del tratamiento térmico de los aceros eléctricos, para su aplicación por parte de las empresas usuarias de dichos materiales. Como objetivo específico, en este trabajo se propone la observación microscópica con microscopía de transmisión, de las partículas de NAl en aceros de bajo carbono de uso eléctrico, para inferir sobre su influencia en el crecimiento controlado del tamaño de grano y en la formación de textura. Se propone, además, intentar la modelización del anclaje de grano que producen los nitruros de aluminio.

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Uma técnica de ataque de 250 ou 500 mg de amostras de solo, devidamente preparadas, com ácido perclórico e ácido fluorídrico é descrita. O resíduo do ataque com HClO4 e HF é tratado com 10 ml de solução de HC1 1,0 N e o volume é completado a 25 ou 50 ml, de acordo com o peso da amostra trabalhada, 250 ou 500 mg. As determinações executadas no extrato obtido com solução de HCl 1,0 N foram as seguintes: cobre, pelo método colorimétrico de dietilditiocarbamato; ferro, pelo método colori métrico da 1,10-fenantrolina; alumínio, pelo método colorimétrico do aluminon; manganês, pelo método colorimétrico do permanganato; e fósforo, pelo método colorimétrico do azul de molibdênio, empregando-se o acido ascorbico como redutor.

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No mundo globalizado em que vivemos, o betão é um material utilizado em larga escala no mundo inteiro. Observa-se que nas diversas estruturas que fazem parte do quotidiano da população, sejam nos grandes centros urbanos, no meio rural, indústrias, estruturas públicas, vias de comunicação, portos e aeroportos; deparamos com a grande maioria das construções executadas em betão armado em condições degradantes. Os consumidores da construção civil, públicos e privados têm sofrido com a ausência de durabilidade das estruturas de betão armado. Edifícios comerciais, industriais e residenciais, de pequeno e grande porte, obras hidráulicas, no país e em todo mundo, com alguns anos de vida, podem apresentar manifestações patológicas relacionadas com uma ou mais formas de deterioração do betão armado sendo a corrosão das armaduras a mais predominante e preocupante. Salienta-se que a maioria das empresas não possui um plano de inspecção e manutenção preventiva e correctiva, as atenções são voltadas para as estruturas em betão somente quando se encontram falhas graves, e que colocam vidas humanas em risco.

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The plasma etching of semiconductor surfaces with fluorine-containing compounds has technological interest. Presently, considerable effort is being devoted to understand the chemistry involved. In this work, a numerical modeling analysis of the gas-phase decomposition of CF4/O2 mixtures, in the presence of silicon, was performed. The relative importance of individual processes was determined as well as the effect of the parameters' uncertainties. The results were compared with experimental data. The main etching agent in the system is the fluorine atom. The concentration of the main species, SiF4, CO, CO2 and COF2 depend on the composition of the mixture.

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In this work, a numerical modeling analysis of the gas-phase decomposition of SF6 / O2 mixtures, in the presence of silicon, was performed. The relative importance of individual processes and the effect of the parameters' uncertainties were determined. The model was compared with experimental data for the plasma etching of silicon and with the calculated results for the CF4 / O2 system. In both systems the main etching agent is the fluorine atom and the concentration of the major species depends on the composition of the mixture. The etching rate is greater for SF6 / O2.

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Montmorillonite clay from Brazil was pillared with aluminium polyhydroxications. The influence of Al/Mont ratio and calcination temperature in the properties of the prepared materials was studied. Results showed that the pillarization process increases the basal spaces of the natural clay from 9,7 to 18,5Å and the superficial area from 41 to ~230m2/g. The calcination process at different temperatures showed that the pillared material was stable until 600oC but the adequate temperature for calcination was 450oC. Materials prepared with different Al/Mont ratios showed the maximum Al incorporation for ratios >10meq Al/g and a good distribution for rations >15meq Al/g.

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A simple device for glass plate drilling, which is an important step in microfabrication procedures, is described. A reservoir of concentrated hydrofluoric acid with a hole in its bottom is affixed against the glass plate. Leakage is prevented by using a neoprene O-ring. A plastic pipet tip inserted in the reservoir, close to the corrosion region, provides forced convection by pressure variations inside it. A device to make 5 simultaneous holes in a plate is also presented. For a 140 µm thickness alkaline glass lamina and 1/8" O-ring, 5 holes are drilled in 20 min.

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Very often hydrochloric acid is employed in acidification operations aiming to dissolve the mineral matrix in petroleum wheel operations, which always require intense use of corrosion inhibitors. This work presents an evaluation of common indicators, phenolfthaleine, fluorescein, methylene blue, alizarine S and methyl orange, as corrosion inhibitors for carbon steel in HCl 15% w/v at temperatures of 26, 40 and 60 ºC. Fluorescein and methyl orange show excelent corrosion inhibition efficiencies at 26 ºC; however at 60 ºC only fluorescein shows good corrosion inhibition when employed with alcohol and/or formaldehyde. For the fluorescein 1% w/v + formaldehyde 0.6% w/v mixture we present polarization and impedance curves and adsorption isotherms.

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A study on optimization of bath parameters for electrodeposition of Fe-W-B alloys from plating baths containing ammonia and citrate is reported. A 2³ full factorial design was successfully employed for experimental design analysis of the results. The corrosion resistance and amorphous character were evaluated. The bath conditions obtained for depositing the alloy with good corrosion resistance were: 0.01 M iron sulfate, 0.10 M sodium tungstate and 0.60 M ammonium citrate. The alloy was deposited at 12% current efficiency. The alloy obtained had Ecorr -0.841 V and Rp 1.463 x 10(4) Ohm cm². The deposit obtained under these conditions had an amorphous character and no microcracks were observed on its surface. Besides this, the bath conditions obtained for depositing the alloy with the highest deposition efficiency were: 0.09 M iron sulfate, 0.30 M sodium tungstate and 0.50 M ammonium citrate. The alloy was deposited at 50% current efficiency, with an average composition of 34 wt% W, 66 wt% Fe and traces of boron. The alloy obtained had Ecorr -0.800 V and Rp 1.895 x 10³ Ohm cm². Electrochemical corrosion tests verified that the Fe-W-B alloy deposited under both conditions had better corrosion resistance than Fe-Mo-B.

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The effectiveness of microemulsions (ME) of saponified coconut oil (OCS-ME) and diphenylcarbazide (DC-ME) on a carbon steel corrosion inhibition process was evaluated using an electrochemical method of polarization resistance. The ME was prepared with OCS, butanol, kerosene and saline solutions. OCS-ME and DC-ME showed highest inhibitions effects (77% and 92%, respectively) at lower concentrations (0.5% and 0.48 - 0.50%, respectively). The surfactant OCS (in H2O) showed lower efficiency (63% at 0.20 - 0.25% concentration). The greatest inhibitory effect of DC-ME could be correlated with the chemical structure and the rich O/W ME system, which are very important for adsorption phenomena in interfacial ME systems.

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A commercial corrosion inhibitor used in petroleum production was characterized by means of infrared spectroscopy and energy dispersive spectroscopy (EDS). Predicting the adsorption behavior of corrosion inhibitor onto steel, sandstone and esmectite is the key to improve working conditions. In this study, the adsorption kinetics of inhibitor formulations in HCl 15% or in Mud Acid (HCl 13,5% and ammonium bifluoride) onto steel, sandstone and esmectite was determined by means of spectrophotometry. Kinetic parameters indicated that adsorption of inhibitor in the presence of bifluoride was favored. Moreover, the adsorption constant rate was the largest when the substrate was esmectite.

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Fuels and biofuels have a major importance in the transportation sector of any country, contributing to their economic development. The utilization of these fuels implies their closer contact to metallic materials, which comprise vehicle, storage, and transportation systems. Thus, metallic corrosion could be related to fuels and biofuels utilization. Specially, the corrosion associated to gasoline, ethanol, diesel, biodiesel, and their mixtures is discussed in this article. Briefly, the ethanol is the most corrosive and gasoline the least. Few investigations about the effect of biodiesel indicate that the corrosion is associated to their unsaturation degree and the corrosion of diesel is related to its acidity.

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The gravimetric and electrochemical tests are the most common techniques used in determining the corrosion rate. However, the use of electrochemical polarization is limited to electrolytes with sufficient conductivity for which Tafel curves are linear. In this study, we investigated a technique in which working microelectrodes of AISI 1020 steel were used to obtain the Tafel curves in diesel oil. The strategy was to reduce the electrode area and hence the ohmic drop. The diameter of the microelectrode was reduced to a value where the compensation of the Tafel curves became unnecessary. The results showed that for electrodes with diameters below 50 μm, the ohmic drop tends to a minimum and independent of the microelectrode diameter.

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In this paper it is proposed an indirect method to evaluate the corrosion rate of an aluminum and zinc alloy in alkaline solution by using a well-known device for collecting gases over water. The hydrogen gas formation, a corrosion product, is monitored at different time intervals and associated with the alloy mass loss. It has been suggested that the students should work in groups, which may make feasible the social interaction among them and that results discussion may be done collectively under a professor orientation. This proposal may propitiate the learning of terminology and involved concepts as well as contribute to a better understanding of corrosion phenomena that occur in their everyday life.