1000 resultados para Temperatura de usinagem
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As time passed, humanity needed the development of new materials used in various activities. High strength materials such as titanium and Inconel for example, had been studied because they are widely used for implants in biomedicine, as well as their use in aerospace and automotive industries. Because of its thermal and mechanical properties, these materials are considered difficult to machine, promoting a rapid wear of cutting tools, primarily caused by the high temperatures in machining. With the development of new materials has emerged the need of developing new manufacturing processes. One of today’s innovative processes is the micro-manufacturing. Being a process with a defined cutting tool geometry, burr formation is a constant and undesirable phenomenon formed during the machininig process. Being detrimental to the manufacturing process, overspending deburring operations are constantly employed leading to increase the aggregate cost to the manufactured material. Assembly components are also impaired if there is no control of the burr, with consequences including the disposal of components due to the occurence of this phenomenon. This paper presents the study of micro-milling Inconel 718, investigating influential parameters in the formation of burrs in order to minimize the occurrence of this phenome non. Different feed rates per tooth and cutting speed are evaluated, and different cutting fluids with different methods of applying the fluid. Adding graphene to cutting fluids was considered as a variable to be investigated, which is considered an excellent solid lubricant, in addition to increasing the thermal conductivity of the cooling solution (AZIMI; MOZAF FARI, 2015). The micro-milling temperature was evaluated in the present work. It was observed a new phenomenon that causes the machined surface temperature decreases below room temperature when using the solution water + oil. This phenomenon is explained in further chapters. In order to unravel this phenomenon, a new test was proposed and, from this test, it can be concluded, comparatively, which cutting fluid has a better cooling property.Using cutting fluid with different thermal properties has shown influence when analy zing burr formation and reducing machining temperature.
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In contrast to what happened in the past where it was possible to select which species had a lower degree of variation, it is now necessary to use fast-growing species with efficient processing. For that we use the wood of Eucalyptus sp and studies related to the machining processes and their parameters such as wear of cutting tools and roughness. The present work aims to analyze the influence of geometry of cutting tools of high speed steel and the influence of the diameter of the final pieces in the process of turning wood of Eucalyptus sp in relation to power consumption, roughness, temperature machining, chip formed and wear of cutting tools. It was observed that the smaller the diameter of the end parts and greater wear of the tools, the worse quality of the machined surfaces and the greater the power consumed in the process of machining
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Pós-graduação em Engenharia Mecânica - FEG
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A reciclagem de misturas asfálticas usando técnicas de misturas mornas atende às exigências da sustentabilidade, limitando o consumo de energia e de novos materiais. A reciclagem de revestimentos asfálticos fresados (RAP) é praticada há mais de 40 anos, por meio de usinagem a quente do RAP adicionado a agregados e ligante novos. Todavia, o uso de elevadas taxas de RAP (acima de 25% no total), é um grande desafio até o presente, pois limita a perda de durabilidade da mistura asfáltica final. O RAP contém ligante asfáltico envelhecido aderido aos agregados, porém uma parte desse ligante pode ser remobilizada durante a reciclagem pelo aumento da temperatura no processo de usinagem. Esta tese busca compreender o processo de remobilização do ligante envelhecido durante a reciclagem do RAP e as consequências da magnitude de temperatura empregada no processo de reaquecimento deste material envelhecido. Atualmente, tem-se buscado o uso da tecnologia de usinagem morna, permitindo a redução de temperatura total no processo de fabricação. Um dos problemas possíveis da combinação das técnicas reciclagem morna é a ocorrência do fenômeno de recobrimento duplo, que pode impactar na reologia do novo material: o ligante do RAP e o ligante novo não se misturariam totalmente, devido à redução das temperaturas de fabricação, formando camadas superpostas. Este fenômeno seria a causa de disfuncionamentos mecânicos da mistura asfáltica final. Questiona-se então a qualidade do recobrimento dos agregados do RAP, já recobertos, e a falta de um meio de caracterização para a observação da interface. Neste estudo, a qualidade do recobrimento do RAP foi avaliada em escala microscópica e macroscópica. No nível microscópico, foi proposto o uso de uma ferramenta de micro-espectroscopia infravermelha para avaliar a interface entre o RAP e o ligante novo, e seguir a distribuição espacial desses dois componentes na mistura asfáltica. Para tanto, foi realizado um desenvolvimento experimental detalhado que permitisse o uso de um acessório de imagem infravermelha em misturas asfálticas recicladas. Graças à indentificação prévia de marcadores internos, foi possível acompanhar a mobilização parcial do ligante envelhecido do RAP. Em paralelo, no nível macroscópico, foi desenvolvido um protocolo de ensaio com o objetivo de avaliar a durabilidade das misturas asfálticas recicladas com taxas elevadas de RAP (50%), com o objetivo princial de compreender se há benefícios nas propriedades mecânicas de misturas mornas recicladas. O ensaio de fadiga é um dos ensaios que permitem melhor avaliar e comparar diferentes misturas asfálticas para comporem uma camada de pavimento. Porém, este ensaio não pode ser diretamente transposto à previsibilidade de campo por ter restrições, tais como o ligante das amostras ensaiadas não teve tempo de envelhecer; e as misturas asfálticas, dependendo da quantidade de RAP e da temperatura de usinagem, podem envelhecer em velocidades diferentes em campo. No presente trabalho, foi proposta a adição de uma etapa de envelhecimento previamente aos ensaios mecânicos. Foi suposto que o comportamento real do material estaria situado entre o do material não envelhecido e do envelhecido. Os principais resultados mostram que uma mistura reciclada morna apresenta resultados satisfatórios de comportamento mecânico que atestam seu uso como camada de revestimento asfáltico, exceto que ela tem a tendência de ser mais sensível à fadiga que uma mistura com a mesma composição de agregados e de teor de ligante, fabricada a quente ou morna, mas sem a adição de RAP.
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Pós-graduação em Engenharia Mecânica - FEIS
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A presente patente diz respeito a um dispositivo de refrigeração de fluidos de corte interligado em máquinas de usinagem, retificadoras e/ou de corte, visando reduzir a contaminação microbiana dos fluidos de corte, oferecendo, paralelamente, maior poder de refrigeração sobre a peça e a ferramenta de corte, composto por caixa de resfriamento (2) com serpentina em banho de gelo ou um refrigerador de líquidos (2A), depósito do fluido (3), sendo que a caixa de resfriamento e o depósito de fluido são revestidos com material isolante térmico (4) e devidamente interligados por tubos (5).
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Pós-graduação em Engenharia Mecânica - FEB
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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High-temperature liquid chromatography (HTLC) is a technique that presents a series of advantages in liquid phase separations, such as: reduced analysis time, reduced pressure drop, reduced asymmetry factors, modified retentions, controlled selectivities, better efficiencies and improved detectivities, as well as permitting green chromatography. The practical limitations that relate to instrumentation and to stationary phase instability are being resolved and this technique is now ready to be applied for routine determinations.
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Inulin is a functional food ingredient, generally employed as sugar or fat substitute in food systems. This ingredient can be found in several vegetal products, including chicory roots. As the solubility of inulin is susceptible to temperature changes, the product suffers a fractionalization resulting in two phases when cooled, originating a precipitated phase, more viscose, and a liquid phase, of lesser viscosity. The study of rheological properties of different phases of inulin extract is important for equipment designing, such as mixer and bombs. In this work, rheological behavior at three different temperatures (25; 40 and 50 ºC) was determined for liquid and precipitated phases of inulin liquid extract, extracted from chicory roots by hot water diffusion and cooled at two different temperatures (8 and -10 ºC), suffering phases separation. The precipitated phase was analyzed in two conditions: pure and with the addition of microencapsulating agents (maltodextrin and hydrolized starch). All of them presented a linear behavior, similar to that of the Plastics of Bingham. Some of them, however, were not an adequate fit to this model.
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This research studied the effect of low density polyethylene packaging and storage temperature on the preservation of fresh-cut (minimally processed) cabbage. The cabbages, previously cooled to a temperature of 10 ºC, were selected, washed, cut in four parts (with the central stalk removed), sanitized, cut in strips, rinsed, put in the centrifuge, weighed and stored in plastic packaging of low density polyethylene (70 µm), and then stored in cold chambers at temperatures of 1 and 10 ºC for 20 days. The following aspects were evaluated: carbon dioxide, oxygen and ethylene in the internal atmosphere of the package as well as, pH, titratable acidity, total soluble solids, vitamin C, loss of fresh mass and the total soluble solids/acidity in the fresh-cut cabbage ratio. The experimental design was entirely casual, with three repetitions. The analysis parameters, except for the vitamin C, loss of fresh mass and ethylene, presented significant variation between the temperatures and days of storage. The cabbage stored at a temperature of 1 ºC presented a shelf life of around 15 days, significantly higher than that stored at 10 ºC. At this temperature, on the 8th day of storage, the product was completely decayed, unfit for commercialization or consumption.
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Behavioral adjustments may occur fast and with less cost than the physiological adaptations. Considering the social behavior is suggestive that the frequency and the intensity of aggressive interactions, the total social cohesion and the extent of vicious attitudes may be used to evaluate welfare. This research presents an analysis of the interactions between the experimental factors such as temperature, genetic and time of the day in the behavior of female broiler breeders under controlled environment in a climatic chamber in order to enhance the different reaction of the birds facing distinct environmental conditions. The results showed significant differences between the behaviors expressed by the studied genetics presenting the need of monitoring them in real-time in order to predict their welfare in commercial housing, due to the complexity of the environmental variables that interfere in the well being process. The research also concluded that the welfare evaluation of female broiler breeders needs to consider the time of the day during the observation of the behaviors.
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In order to determine the energy needed to artificially dry an agricultural product the latent heat of vaporization of moisture in the product, H, must be known. Generally, the expressions for H reported in the literature are of the form H = h(T)f(M), where h(T) is the latent heat of vaporization of free water, and f(M) is a function of the equilibrium moisture content, M, which is a simplification. In this article, a more general expression for the latent heat of vaporization, namely H = g(M,T), is used to determine H for cowpea, always-green variety. For this purpose, a computer program was developed which automatically fits about 500 functions, with one or two independent variables, imbedded in its library to experimental data. The program uses nonlinear regression, and classifies the best functions according to the least reduced chi-squared. A set of executed statistical tests shows that the generalized expression for H used in this work produces better results of H for cowpea than other equations found in literature.
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Kohleria eriantha (Benth.) Hanst is a plant belonging to the family Gesneriaceae, with an underground organ, which is associated with vegetative reproduction. This organ is a rhizome, whose stem bears buds covered with modified leaves that store up starch. In small sections of this rhizome, containing six buds (1.5 to 2.0cm long), only one bud sprouted. The sprouted bud could be differentiated into two morphological pattern: aerial part or rhizome. Sprouting of the rhizome pattern occurred in sections kept on substrate with low water content (1mL of water), or lacking water, whereas sprouting of the aerial part pattern occurred in sections on substrate with high water content (12mL of water). Temperature at 20ºC also stimulated sprouting of the rhizome pattern, regardless of the water volume in the substrate. Sprouting of the rhizome pattern occurred still in sections on substrate to which polyethylene glycol 6000 (PEG) solution was added at the concentrations of 161.2, 235.2 and 340.0g/L, resulting in potentials of -3, -6 and -12 MPa, respectively. Sections kept on substrate with low water content (1 ml of water) showed a reduction in the dry matter content and high osmotic concentration in comparison with those on substrate with high water content. The results obtained revealed that forming of the rhizome pattern was influenced by water content and temperature. It is suggested that sprouting of the rhizome pattern was induced by the low water potential in the sections, when kept on substrate with low water content. Moreover, it was observed that the rhizome buds of Kohleria eriantha showed a high degree of plasticity.
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JUSTIFICATIVA E OBJETIVOS: Hipotermia intra-operatória é complicação frequente, favorecida por operação abdominal. A eficácia da associação dos métodos de aquecimento por condução e convecção na prevenção de hipotermia e seus efeitos no período de recuperação pós-operatória foram os objetivos deste estudo. MÉTODO: Quarenta e três pacientes de ambos os sexos de 18 a 88 anos de idade, submetidos à laparotomia xifopúbica sob anestesia geral e monitorização da temperatura esofágica, foram distribuídos de modo aleatório em dois grupos de aquecimento: COND (n = 24), com colchão de circulação de água a 37°C no dorso e COND + CONV (n = 19), com a mesma condição associada à manta de ar aquecido a 42°C sobre o tórax e membros superiores. Analisados peso, sexo, idade, duração da operação e anestesia, temperaturas na indução anestésica (Mi), horas consecutiva (M1, M2), final da operação (Mfo) e anestesia (Mfa), entrada (Me-REC) e saída (Ms-REC) da recuperação pós-anestésica (SRPA), além das incidências de tremores e queixas de frio no pós-operatório. RESULTADOS: Os grupos foram semelhantes em todas as variáveis analisadas, exceto nas temperaturas em M2, M3, M4, Mfo e Mfa. O grupo COND reduziu a temperatura a partir da segunda hora da indução anestésica, mas o grupo COND + CONV só na quarta hora. Em COND, observou-se hipotermia na entrada e saída da SRPA. CONCLUSÕES: Associar métodos de aquecimento retardou a instalação e diminui a intensidade da hipotermia intra-operatória, mas não reduziu a incidência das queixas de frio e tremores.