998 resultados para Vigas - Ensaios mecânicos


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Wear mechanisms and thermal history of two non-conforming sliding surfaces was investigated in laboratory. A micro-abrasion testing setup was used but the traditional rotative sphere method was substituted by a cylindrical surface of revolution which included seven sharp angles varying between 15o to 180o. The micro-abrasion tests lead to the investigation on the polyurethane response at different contact pressures. For these turned counterfaces with and without heat treatment. Normal load and sliding speeds were changed. The sliding distance was fixed at 5 km in each test. The room and contact temperatures were measured during the tests. The polyurethane was characterized using tensile testing, hardness Shore A measurement, Thermogravimetric Analysis (TGA), Differential Scanning Calorimetry (DSC) and Thermomechanical Analyze (TMA). The Vickers micro-hardness of the steel was measured before and after the heat treatment and the metallographic characterization was also carried out. Worn surface of polyurethane was analysed using Scanning Electron Microscope (SEM) and EDS (Electron Diffraction Scanning) microanalyses. Single pass scratch testing in polyurethane using indenters with different contact angles was also carried out. The scar morphology of the wear, the wear mechanism and the thermal response were analyzed in order to correlate the conditions imposed by the pressure-velocity pair to the materials in contact. Eight different wear mechanisms were identified on the polyurethane surface. It was found correlation between the temperature variation and the wear scar morphology.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Pós-graduação em Agronomia (Energia na Agricultura) - FCA

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Vigas pré-formadas de concreto armado são elementos estruturais que apresentam fina camada superficial de concreto pré-moldado que define as suas formas geométricas. Esta camada superficial trabalha como forma que fica incorporada à viga após o lançamento do concreto moldado in loco, que consolidará a estrutura. Este sistema construtivo apresenta vantagem em relação ao sistema construtivo convencional por reduzir o consumo de madeira com formas e escoramento, e também em relação ao sistema pré-moldado por reduzir o custo de transporte e montagem da estrutura. Os elementos pré-formados apresentam menor peso em relação aos elementos pré-moldados, por apresentarem a seção parcialmente pré-moldada. Outra vantagem do sistema pré-formado em relação ao pré-moldado é a possibilidade de se obter maior rigidez nas ligações das vigas com o restante da estrutura com a colocação de armadura de engastamento ancorada no concreto moldado in loco. Este trabalho tem como objetivo analisar experimentalmente o comportamento das vigas pré-formadas à flexão e ao cisalhamento, através de ensaios de 9 vigas pré-formadas e 3 vigas maciças de referência. As vigas têm largura de 105 mm, altura de 340 mm e 2.500 mm de comprimento. Os resultados obtidos nos ensaios experimentais são comparados aos valores fornecidos pelas normas técnicas brasileiras e as principais normas internacionais. São apresentados e analisados os resultados observados para os deslocamentos verticais das vigas, deformações da armadura de flexão e da armadura de cisalhamento, deformações do concreto nas regiões de compressão e mapas de fissuração.

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Pós-graduação em Engenharia Civil - FEIS

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The objective of the present work was to evaluate Pinus’ glued laminated timber (glulam) beams and steel reinforced glulam beams, using PU mono-component adhesive in lamination step and epoxy adhesive to bond steel bars. The mechanical performance was verified through bending test, and the adopted method based on homogenized section, to considerate the differences between wood and steel mechanical properties. The homogenization section method proved itself effective in obtaining the stiffness of the parts in MLCA. The stiffness of reinforced beams increased 91% in comparison with glulam beams, differing only 5.5 % from value of stiffness calculated

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The aim of this research study was to evaluate the structural behaviour of the wood and concrete composite system for bridge decks with emphasis on the metal shear connectors. Experimental tests were performed on composite specimens and wood and concrete beams with a metallic connector system in an X position, using CS100900-type screws. All specimens and beams were submitted to static loads until failure in order to obtain the strength and stiffness of the connection system. The experimental results for the stiffness of the beams were compared with the analytical results obtained through the Mohler model, presenting good equivalence for service loads. The experimental results obtained demonstrate that the most significant damage in composite systems occurred in the connectors' areas.

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The current lubricants are getting better with advancing technology and more specific to each case of application. Its use is directly linked to the level of waste by friction generated between objects in direct contact and it is essential to promote greater durability of mechanical components. This study refers to behavioral assessment of some types of lubricants and rank among them which one presents the lowest friction between metal components. For this work, will be used the method of ring compression test (RCT), after performed tests and analyzed the results, will be possible to report which lubricant will bring the best reduction in friction. The need for this work was given initially by the observation that some mechanical projects developed at FEG does not conduct in-depth studies the lubricants used. Therefore this study aims to provide better support to these projects. In this work were used five different lubricants, three oils and two greases.

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The current lubricants are getting better with advancing technology and more specific to each case of application. Its use is directly linked to the level of waste by friction generated between objects in direct contact and it is essential to promote greater durability of mechanical components. This study refers to behavioral assessment of some types of lubricants and rank among them which one presents the lowest friction between metal components. For this work, will be used the method of ring compression test (RCT), after performed tests and analyzed the results, will be possible to report which lubricant will bring the best reduction in friction. The need for this work was given initially by the observation that some mechanical projects developed at FEG does not conduct in-depth studies the lubricants used. Therefore this study aims to provide better support to these projects. In this work were used five different lubricants, three oils and two greases.

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Surface defects on steel parts borne costs of smelting industries due to the need of rework. Sand molds are frequently used in foundry industries and largely responsible for providing surface defects. This study aims to optimize the levels of the molding process variables to minimize the occurrence of surface defects in steel castings in silica sand molds chemically linked by cold cure process. The methodology used the experimental design with split plot, being considered in the study the resin percentage factors in the mold formulation, addition of iron oxide, type of paint, the paint application method, amount of ink layers, use of hot air along the lines and waiting time of the mold before casting. They were analyzed as response variables erosion defects, sand inclusion, penetration, porosity and surface finish. Tensile strength tests were performed to evaluate the influence of factors on mechanical parameters and the microstructural parameters were carried out the analysis of X-ray diffraction, scanning electron microscopy (SEM) and thermal analysis (TG / DSC / dilatometry). The results elucidate that for the faulty erosion, the only significant factor with a 95% confidence level was the type of ink and the ink alumina-based superior results obtained. For the sand inclusion of defect, there were three significant factors, with best results obtained with alumina-based paint and spray applied using hot air in the mold before casting the metal. For the defect penetration, there were four significant factors, the best results being achieved with 0.8% of resin and addition of iron oxide in the molding formulation, the paint being applied by brush and standby time of 24 hours before leak. For the defect porosity with a 95% confidence level, no significant factors. For the defect surface finish, the best results were achieved with the 0.8% formulation of the resin in the mold and application of the paint brush. To obtain the levels of the factors that optimize all defects simultaneously, we performed a weighted average of the results of each type of fault, concluding that the best levels of the factors were: 0.8% resin and addition of iron oxide in the formulation of the template, application of two coats of paint applied with a brush or spray, using hot air in the mold before casting and 24 hours of waiting ready the mold before casting. These levels of the optimized factors were used in an experiment to confirm that ratified the results, helping to reduce rework and consequently reducing costs of cast steel parts.

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Reinforced concrete creep is a phenomenon of great importance. Despite being appointed as the main cause of several pathologies, its effects are yet considered in a simplified way by the structural designers. In addition to studying the phenomenon in reinforced concrete structures and its current account used in the structural analysis, this paper compares creep strains at simply supported reinforced concrete beams in analytical and in experimental forms with the finite element method (FEM) simulation results. The strains and deflections obtained through the analytical form were calculated with the Brazilian code NBR 6118 (2014) recommendations and the simplified method from CEB-FIP 90 and the experimental results were extracted from tests available in the literature. Finite element simulations are performed using ANSYS Workbench software, using its 3D SOLID 186 elements and the structure symmetry. Analyzes of convergence using 2D PLANE 183 elements are held as well. At the end, it is concluded that FEM analyses are quantitative and qualitative efficient for the estimation of this non-linearity and that the method utilized to obtain the creep coefficients values is sufficiently accurate.

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Existe uma crescente preocupação com a sustentabilidade e com o impacto ambiental da atividade da construção que, desde o início do séc. XXI, com o avanço exponencial da nanotecnologia e do estudo das nanopartículas (para incorporação em argamassas e betões), tem vindo a ser atendida de uma forma inovadora. As nanopartículas, quando substituindo pequenas percentagens da massa de cimento, conferem características melhoradas às misturas: resistência, durabilidade, entre outras. Os potenciais benefícios no betão são variados e estão, genericamente, identificados. Todavia, existem ainda algumas lacunas (e.g. estudos que incluam ensaios estruturais). Tendo este aspeto em conta, foi formado um consórcio entre a empresa Smart Inovation, Lda e o Instituto Superior de Engenharia de Coimbra por forma a conduzir uma investigação com o intuito de estudar o efeito da incorporação das nanopartículas em argamassas e betões. Inserindo-se a presente dissertação no âmbito desse projeto de investigação, decidiu-se estudar o comportamento de vigas de betão incorporando nanopartículas (ou nanobetão) quando sujeitas a esforços de corte e de flexão, comparando-o com o de betões de referência. Foram, então, realizados dois tipos de ensaios, para as mesmas misturas (que incluem betões simples, com nanopartículas, com fibras e com nanopartículas e fibras em conjunto): (i) ao corte – em que se submeteram oito vigas, simplesmente apoiadas, à aplicação de uma carga concentrada a 0,85 m do apoio mais afastado; (ii) à flexão – em que se submeteram também oito vigas, simplesmente apoiadas, à aplicação de uma carga concentrada a meio vão. Com base nos dados recolhidos durante os ensaios experimentais, estudou-se: a relação carga-deslocamento, os valores teóricos e experimentais do esforço transverso e do momento, a curvatura, a rigidez, a fendilhação e o tipo de rotura. Da análise de resultados, foi possível observar que o comportamento estrutural de vigas de betão incorporando nanopartículas não evidencia, de forma clara, as previsões dos ensaios de caracterização dos betões. Porém, verificou-se que existe alguma potencialidade da incorporação das nanopartículas (principalmente as nanopartículas de Al2O3) beneficiarem a resistência ao corte e à flexão. Foi ainda possível observar que a interação entre nanopartículas e fibras de aço induz efeitos negativos na resistência ao corte e a resistência à flexão

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Dissertação (mestrado)—Universidade de Brasília, Faculdade de Tecnologia, Departamento de Engenharia Civil e Ambiental, 2015.

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This study had as objective the evaluation of mechanical damages occurred in banana Nanicão during the improvement process, packing and distribution, identifying the probable critical points. The mechanical damages caused by transport, first cleaning; cleanness and sorting; preservation in the packing, transport, and mature were evaluated. The studied packing had been: torito wooden packing (18 kg), wood type ½ box, (13 kg) and cardboard (18 kg). The stage of preservation and transport of the fruits to the distribution center duplicated the light defects and quintupled the serious defects, causing rottenness after the acclimatization. The cardboard packing did not support the piling up and presented deformations, that resulted in the kneading the fruits of the inferior packing, causing a significant increase of the serious defects. The fruits conditioned in the involved packing of plastic bubble had presented an inferior number of serious damages when compared with the others packing, without the plastic.

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Losses of horticulture product in Brazil are significant and among the main causes are the use of inappropriate boxes and the absence of a cold chain. A project for boxes is proposed, based on computer simulations, optimization and experimental validation, trying to minimize the amount of wood associated with structural and ergonomic aspects and the effective area of the openings. Three box prototypes were designed and built using straight laths with different configurations and areas of openings (54% and 36%). The cooling efficiency of Tommy Atkins mango (Mangifera Indica L.) was evaluated by determining the cooling time for fruit packed in the wood models and packed in the commercially used cardboard boxes, submitted to cooling in a forced-air system, at a temperature of 6ºC and average relative humidity of 85.4±2.1%. The Finite Element Method was applied, for the dimensioning and structural optimization of the model with the best behavior in relation to cooling. All wooden boxes with fruit underwent vibration testing for two hours (20 Hz). There was no significant difference in average cooling time in the wooden boxes (36.08±1.44 min); however, the difference was significant in comparison to the cardboard boxes (82.63±29.64 min). In the model chosen for structural optimization (36% effective area of openings and two side laths), the reduction in total volume of material was 60% and 83% in the cross section of the columns. There was no indication of mechanical damage in the fruit after undergoing the vibration test. Computer simulations and structural study may be used as a support tool for developing projects for boxes, with geometric, ergonomic and thermal criteria.