1000 resultados para misturas solo-escória de alto-forno granulada moída e resistência mecânica


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Esta dissertação apresenta resultados de um estudo laboratorial sobre o comportamento mecânico de um solo laterítico estabilizado com cal cálcica e com cal dolomítica. Este tipo de mistura foi empregado em um pavimento experimental construído na rodovia BR-377/RS, próximo à cidade de Cruz Alta, no final dos anos 60. O estudo incluiu a caracterização do solo (Latossolo Vermelho), além de ensaios de compactação, difratometria de raios-X, compressão simples, tração por compressão diametral, tração na flexão, módulo de resiliência e durabilidade, do solo e das misturas solo-cal. Determinaram-se as influências do teor e tipo de cal e do tempo de cura, nas resistências à compressão simples e à tração e no módulo de resiliência. Estudou-se também a durabilidade de algumas misturas a ciclos de molhagem e secagem, e o efeito da demora na compactação na resistência à compressão simples. Adotaram-se teores de 3%, 4% e 5% de cal, e tempos de cura de até 168 dias. Os resultados da dosagem mostraram que o solo é reativo à cal, sendo necessário um teor de 3% de cal para sua estabilização. A mistura de solo + 4% de cal cálcica, (a mesma empregada no pavimento experimental), após 28 dias de cura, apresentou elevadas resistências à compressão simples (1.519 kPa), à tração na compressão diametral (216 kPa), bem como elevados módulos de resiliência (10.772 MPa) Contudo, observou-se que após terem atingido valores máximos, a resistência e a rigidez das misturas solo-cal diminuíram com tempos de cura mais longos, possivelmente devido à formação de CaCO3 e/ou produtos expansivos (etringita e taumasita). Complementarmente, realizou-se uma análise paramétrica de pavimentos com camadas de base e/ou sub-base de solo-cal, determinando-se curvas que relacionam a vida de fadiga da camada cimentada com a sua espessura e módulo de resiliência. Observou-se que a adoção de bases e sub-bases estabilizadas faz com que os revestimentos asfálticos trabalhem apenas à compressão, não sofrendo ruptura por fadiga. No global, as misturas solo-cal estudadas apresentaram comportamento aceitável para utilização em camadas de base e/ou sub-base de pavimentos, constituindo-se em alternativa para pavimentação, especialmente em regiões carentes de agregados.

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The present work is to study the characteristics and technological properties of soil-cement bricks made from binary and ternary mixtures of Portland cement, sand, water, with or without addition of gravel from the drilling of oil wells, which could be used by industry, aiming to improve its performance and reduce cost by using the residue and, consequently, increasing its useful life. The soil-cement bricks are one of the alternatives to masonry construction. These elements, after a short curing period, provide compressive strength similar to that of solid bricks and ceramic blocks, and the higher the resistance the higher the amount of cement used. We used the soil from the city of São José do Mipibu / RN, the banks of the River Baldun, cement CPIIZ-32 and residue of drill cuttings from oil wells drilling onshore wells in the town of Mossley, RN, provided Petrobras. To determine the optimum mix, we studied the inclusion of different residues (100%, 80%, 70%, 60% and 50%) where 15 bodies were made of the test piece. The assessment was made of bricks made from simple compression tests, mass loss by immersion and water absorption. The experimental results proved the efficiency and high utilization of the waste from the drilling of oil wells, making the brick-cement-soil residue with a higher strength and lower water absorption. The best result in terms of mechanical strength and water absorption for the ternary mixture was 10% soil, 14% cement and 80% residue. In terms of binary mixtures, we obtained the best result for the mix-cement residue, which was 14% cement incorporated in the residue

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

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The red ceramics and structural ceramics, as they are known, include ceramic materials made by blocks of seals and structures, bricks, tiles, smail flagstones manacles, rustic floors and ornamental materials. Their fabrication uses raw material such as clay and clay sites, with some content of impurity. It has good durability and mechanical strength to compression, low cost, making it one of the mainly used materials in civil engineering. The incorporation of many industrial activities residue to ceramic products is a technological alternative for reducing the environmental impact caused by its carefree disposal. This incorporation can promote chemical change and inertness of metals from residue, by fixation in the glassy phase of ceramic during the burning stage. The main aim of this project is to study the technical feasibility of the addition of ceramic oven ash into formulations of mass for structural ceramics. In this project two kinds of clay (plastic and non-plastic) were used, as well as the ash from firewood used in the process of burning of structural ceramics. A group of experiments was outlined, which permitted the evaluation of the influence of the burning cycle in different temperatures of the ash content in formulations for ceramic blocks through technological properties, mechanical behavior and microstructure. Five samples were processed of each one of the masses of plastic and non-plastic clay without addition of ash and with addition of ash on the percentages of 10 % and 20 %, for temperatures of 850 °C, 950 °C, 1050 °C and 1150 °C, obtained through sinterization process. Among the studied compositions, the one which presented best performance was the mass of clay with 10 % of ash, at temperature of 1150 °C, with the smallest absorption of water, the smallest apparent porosity, specific apparent mass a bit over the others and greatest mechanical resistance to flexion. The composition made confirmed the technical feasibility of the use of ash in the mass for structural ceramics with maintenance of its necessary characteristics for its purposes

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Since the early twenty-first century, the construction sector has been the second largest on the rise in the Brazilian industrial sector, with a growth of 1.4% in 2012, and is likely to remain at this level for a long time. However, unlike decades ago, the industry has been seeking in its manufacturing process, sustainable materials, encompassing in their works the concept of sustainability. Thus, the timber sector seeks to satisfy a market increasingly demanding, innovating techniques and utilization being less aggressive to the environment. The purpose of this study was to produce and evaluate the mechanical strength of the composite cement with the addition of wood residues and slag low oven. Therefore, it was made 42 specimen cement-slag-wood, carried out in two steps. Since at the first, it was varied only the slag particle size, and at the second, through the best result of the previous step, it was varied the wood particles granulometry. The mechanical performance of the composite was evaluated by the results obtained in the compression test and the physical test for determining the density of the material. In the first step of the process can be concluded that the best result was achieved with the use of slag particles retained on the 60 mesh sieve. In the second phase of the study concluded that the best results were achieved with wood particles with the large particles, i.e. particles retained on the 10 mesh sieve. Both in the first and in the second step it can be seen that there has been the influence of the particle size of the waste materials. With the obtained results, could be evaluated that the use of waste for the production of cement-slag-wood composite showed lower performance when compared to the results obtained in studies without the use of waste. However, some applications are feasible to be performed with the use of composite wood-cement-slag

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Pós-graduação em Engenharia Civil - FEIS

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The use of geophysical methods in the analysis and mapping of likely contamination plumes has shown a huge value in the development of researches related to environmental issues. Among the main geophysical methods applied to this purpose, the geoelectrical methods stand out, being based on the use of electric and electromagnetic fields. The electromagnetic method (EM) uses physical environment responses created by electromagnetic field propagation, consisting of an alternated electric output and a magnetization force, used to obtain the electric conductivity (σ) of the subsurface materials. It has a broad application in the mineral exploration and prospection, and its use has been also efficient in environmental researches. By the electromagnetic method, this work examined and mapped possible contaminations created by cemetery leachate in the Saudade's Cemetery, located in the city of Monte Alto, Sao Paulo, where sedimentary rocks of the Bauru Group are exposed. Cemetery leachate is a putrefactive liquid, generated from the decomposition of organic matter, which contains substances that can contaminate soil and groundwater. Results achieved in this work show that the use of the electromagnetic method is an important indirect tool in the investigation of environmental contaminations in areas with highly contrasting physical properties

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Urban paving is of paramount importance for a city, both socioeconomic and in quality of life. The urban flooring not different so-called road surface are constituted by a set of horizontal layers, overlaid on the ground, which have the main function of supporting the actions induced by the vehicle redistributing the stresses transmitted to the ground. Soils are important materials for the execution of paving, mainly because they are part of the basic structure of the floor and mostly be available in abundance, with a very low cost, however, their properties usually do not meet the requirements necessary to perform the floor. The soil stabilization for the implementation of urban pavement bases and sub-bases is an increasingly important aspect in the current situation, because always there is the concern with the environment, and there is now the clear awareness that every effort should be made to minimize the effects caused by the exploitation of deposits and deposition of material. In this sense this work presents the effects of adding different proportions of lime to stabilize a sedimentary soil sample from the urban area of the city of Curitiba. It selected a sample quantity of soil in the region to study the stabilization insertion of hydrated lime type (CHIII) powder. The two variables in the study are related to the content of lime mixed with the soil at 0% percentages of 3%, 6%, 8% and 16%, and cure times at which these mixtures were subjected to (0, 7, 14, 28 and 56 days). The tested mixtures were prepared from dosages defined by two methods: one checking the chemical behavior of the samples by means of changes in pH values, and the second analyzing the mechanical behavior through the RCS values. It has been found that the chemical stability analyzed by addition of lime, provided an average increase of RCS in most soil samples studied, because of some physical and chemical characteristics thereof. For mixtures with 6%, 8% and 16% of lime after 28 days of curing, the average RCS was 0,57 MPa, 1,06 MPa and 2,37 MPa, respectively, for the normal proctor, and as for intermediate proctor, in the same curing time and on the same percentages RCS results were 0,54 MPa, 1,04 MPa and 2,71 MPa, respectively. In global terms, the soil-lime mixtures studied showed acceptable behavior by law to use as layers of sub-base. However, only the mixture with 16% of lime, at 28 days, is recommended for use on floors bases. Even so, the mixtures studied constitute a good alternative economic and socio-environmental.

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The present work is to study the characteristics and technological properties of soil-cement bricks made from binary and ternary mixtures of Portland cement, sand, water, with or without addition of gravel from the drilling of oil wells, which could be used by industry, aiming to improve its performance and reduce cost by using the residue and, consequently, increasing its useful life. The soil-cement bricks are one of the alternatives to masonry construction. These elements, after a short curing period, provide compressive strength similar to that of solid bricks and ceramic blocks, and the higher the resistance the higher the amount of cement used. We used the soil from the city of São José do Mipibu / RN, the banks of the River Baldun, cement CPIIZ-32 and residue of drill cuttings from oil wells drilling onshore wells in the town of Mossley, RN, provided Petrobras. To determine the optimum mix, we studied the inclusion of different residues (100%, 80%, 70%, 60% and 50%) where 15 bodies were made of the test piece. The assessment was made of bricks made from simple compression tests, mass loss by immersion and water absorption. The experimental results proved the efficiency and high utilization of the waste from the drilling of oil wells, making the brick-cement-soil residue with a higher strength and lower water absorption. The best result in terms of mechanical strength and water absorption for the ternary mixture was 10% soil, 14% cement and 80% residue. In terms of binary mixtures, we obtained the best result for the mix-cement residue, which was 14% cement incorporated in the residue

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O Brasil é um dos países que possuem as maiores jazidas de minério de ferro do mundo. Devido aos recursos financeiros envolvidos, mão-de-obra, arrecadação de impostos, envolvimento de atividades logísticas e comercialização exterior, a mineração é uma das principais atividades econômicas do país, envolvendo nesse contexto as plantas de pelotização de minério de ferro. As pelotas de minério de ferro são um dos insumos essenciais utilizados na produção mundial do aço. Compostas essencialmente de óxido de ferro (Fe2O3), são aglomerados com diâmetro que varia de 6,3 a 16 mm, cuja sua produção envolve a combustão para que obtenham a resistência mecânica necessária para serem utilizadas nos alto fornos siderúrgicos. Tal característica impede que as pelotas se quebrem e se transformem em finos, dificultando a permeação do ar através da carga do alto forno e consequentemente reduzindo a eficiência da queima e produção do ferro gusa, o qual é transformado em aço nas etapas posteriores de refino. Para garantir a produção de pelotas com a qualidade desejada, especialmente nos aspectos de composição e resistência mecânica, foi proposta queima controlada em reator de leito fixo simulando as características dos fornos utilizados na indústria. Com os resultados obtidos, foi possível correlacionar nível de temperatura, consumo de O2 e geração de CO2 e resistência à compressão, permitindo o aprimoramento do processo de combustão de pelotas, além de atestar a possibilidade de utilização de outros combustíveis sólidos como alternativas ao gás natural.

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Dissertação para obtenção do Grau de Mestre em Engenharia Civil – perfil construção