500 resultados para Amortecedor metálico


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O principal mecanismo que confere resistência do fungo Venturia inaequalis aos inibidores de oxidação (quinol QoIs) é a ocorrência de mutações no gene citocromo b CYTB (G143A). O objetivo do trabalho foi a implementação da metodologia RFLP-PCR para caracterizar a reação de isolados de V. inaequalis à presença de Qols. Foram utilizados sete isolados monospóricos de V. inaequalis, coletados em pomares comerciais de Santa Catarina e cedidos pela Estação Experimental da EPAGRI de São Joaquim, Santa Catarina. Os isolados foram classificados como sensíveis ou resistentes após crescimento em meio BDA contendo 10 µg.mL-1 de cresoxim metílico. Para determinação da presença da mutação G143A foram utilizados os marcadores específicos ViCytB-5F e ViCytB-6071R. O DNA dos isolados foi amplificado em reação de PCR e separado em gel de agarose 1,5%. Os fragmentos foram então digeridos com a enzima de restrição Fnu4HI identificadora da mutação e os produtos da digestão foram analisados por eletroforese num gel de agarose 1,0%. Os genótipos revelados estavam associados ao fenótipo estabelecido pelo crescimento dos isolados em presença do fungicida, mostrando que 6 isolados já apresentavam o alelo de resistência. O uso de técnicas de RFLP-PCR permitiram uma avaliação rápida e confiável na detecção da resistência de V. inaequalisao cresoxim metílico.

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We report a rare cause of pyloric stenosis caused by migration of surgical clips into a duodenal ulcer following laparoscopic cholecystectomy. Even after endoscopic removal of the clips the inflammatory reaction during the healing process caused a stenosis of the pylorus that eventually required a truncal vagotomy and gastroenterostomy.

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Tesis (Maestría en Ciencias Químicas con Especialidad en Química Orgánica) UANL

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Resumen tomado de la publicación

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NIPO:210-97-058-7

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Esta dissertação apresenta uma contribuição à compreensão e quantificação do amortecimento em amortecedores, como uma base para o projeto e construção de um amortecedor viscoelástico e determinação experimental de suas propriedades, para aplicação na redução das amplitudes de vibração, em estruturas submetidas a excitações dinâmicas. Uma breve revisão histórica do uso de amortecedores viscoelásticos, na indústria de construções, é inicialmente apresentada. Modelos reológicos são então discutidos, com ênfase sobre a influência da temperatura, freqüência, amplitude de deslocamento, envelhecimento e pré-carga sobre os parâmetros de amortecimento. Modelos matemáticos disponíveis necessários para a descrição do fenômeno e métodos para a medida do amortecimento são, a seguir, descritos. Finalmente, um amortecedor viscoelástico é projetado e construído, utilizando-se recursos locais. Seu comportamento é experimentalmente determinado em uma máquina de teste servo-hidráulica MTS-810. A influência de vários fatores, tais como temperatura, freqüência e amplitude de vibração são avaliados, e conclusões são tiradas sobre a aplicação deste tipo de amortecedor, em construções e estruturas industriais.

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A substituição total de uma articulação de joelho é uma técnica amplamente usada para corrigir os danos irreversíveis na juntas originais, causadas por patologias como osteoartrite e artrite reumatóide. Com o aumento número de pacientes jovens e mais ativos, a evolução na técnica da substituição da articulação total de joelho visando desempenho de longo prazo passa a ser uma demanda crítica. Portanto, na tentativa de evitar as falhas prematuras e prolongar a vida em serviço como um todo, as modificações na bandeja tibial podem produzir erros fundamentais. O design da bandeja tibial é um importante fator, porque a sua fratura pode ocorrer em função de elementos geométricos da mesma, como raios de concordância e cantos vivos. A escolha do material e do processo de fabricação também são importantes. No tocante a rota de fabricação, pode ser visto que as ligas forjadas tem o maior limite de fadiga, se comparado com as obtidas pelo processo de fundição. Entretanto, a combinação das técnicas de desenho assistido por computador (CAD), engenharia assistida por computador (CAE) e manufatura assistida por computador (CAM) podem ser uma solução rápida e barata para alcançar melhores características das bandejas tibiais. Contudo, testes pré-clínicos devem ser executados para garantir que as bandejas tibiais não falharão prematuramente devido à fadiga. As técnicas de metalografia, microdureza e espectrometria foram empregadas neste trabalho com o objetivo de caracterizar metalurgicamente a liga de aço inoxidável atualmente empregada. A rugosidade superficial foi avaliada, assim como o número de ciclos para a iniciação das trincas. Com a utilização do método de elementos finitos, verificou-se o ponto de maior tensão e, aliado ao estudo de fractografia, foi determinado o modo de falha Os resultados indicaram que o material atualmente empregado não está em conformidade com todos os requisitos das normas vigentes, de forma que um material alternativo é sugerido. Com o objetivo de melhorar a resistência à fadiga sem apresentar problemas de ordem clínica, cinco geometrias foram propostas e os resultados da análise de tensões pelo método de elementos finitos indicaram um grande potencial de aumento da vida em fadiga.

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Nickel alloys are frequently used in applications that require resistance at high temperatures associated with resistance to corrosion. Alloys of Ni-Si-C can be obtained by means of powder metallurgy in which powder mixtures are made of metallic nickel powders with additions of various alloying carriers for such were used in this study SiC, Si3N4 or Si metal with graphite. Carbonyl Ni powder with mean particle size of 11 mM were mixed with 3 wt% of SiC powders with an average particle size of 15, 30 and 50 μm and further samples were obtained containing 4 to 5% by mass of SiC with average particle size of 15 μm. Samples were also obtained by varying the carrier alloy, these being Si3N4 powder with graphite, with average particle size of 1.5 and 5 μm, respectively. As a metallic Si graphite with average particle size of 12.5 and 5 μm, respectively. The reference material used was nickel carbonyl sintered without adding carriers. Microstructural characterization of the alloys was made by optical microscopy and scanning electron microscopy with semi-quantitative chemical analysis. We determined the densities of the samples and measurement of microhardness. We studied the dissociation of carriers alloy after sintering at 1200 ° C for 60 minutes. Was evaluated also in the same sintering conditions, the influence of the variation of average particle size of the SiC carrier to the proportion of 3% by mass. Finally, we studied the influence of variation of the temperatures of sintering at 950, 1080 and 1200 ° C without landing and also with heights of 30, 60, 120 and 240 minutes for sintering where the temperature was 950 °C. Dilatometry curves showed that the SiC sintered Ni favors more effectively than other carriers alloy analyzed. SiC with average particle size of 15 μm active sintering the alloy more effectively than other SiC used. However, with the chemical and morphological analyzes for all leagues, it was observed that there was dissociation of SiC and Si3N4, as well as diffusion of Si in Ni matrix and carbon cluster and dispersed in the matrix, which also occurred for the alloys with Si carriers and metallic graphite. So the league that was presented better results containing Si Ni with graphite metallic alloy as carriers, since this had dispersed graphite best in the league, reaching the microstructural model proposed, which is necessary for material characteristic of solid lubricant, so how we got the best results when the density and hardness of the alloy

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Metal substrates were coated by thermal spraying plasma torch, they were positioned at a distance of 4 and 5 cm from the nozzle exit of the plasma jet. The starting materials were used for deposition of tantalum oxide powder and aluminium. These two materials were mixed and ground into high-energy mill, then immersed in the torch for the production of alumina coating infused with particles of tantalum with nano and micrometric size. The spraying equipment used is a plasma torch arc not transferred, which operating in the range of 250 A and 80 V, was able to produce enough heat to ignite aluminothermic between Ta2O5 and aluminum. Upon reaching the plasma jet, the mixing powders react with the heat of the blaze, which provides sufficient energy for melting aluminum particles. This energy is transferred through mechanisms of self-propagating to the oxide, beginning a reduction reaction, which then hits on the surface of the substrate and forms a coating on which a composite is formed by a junction metal - ceramic (Ta +Al2O3). The phases and quantification of each were obtained respectively by X-ray diffraction and the Rietveld method. Morphology by scanning electron microscopy and chemical analysis by energy dispersive spectroscopy EDS. It was also performed measurements of the substrate roughness, Vickers microhardness measurements in sprays and determination of the electron temperature of the plasma jet by optical emission spectroscopy EEO. The results confirmed the expectation generated around the end product of spraying the mixture Ta2O5 + Al, both in the formation of nano-sized particles and in their final form. The electron excitation temperature was consistent with the purpose of work, in addition, the thermodynamic temperature was efficient for the reduction process of Ta2O5. The electron excitation temperature showed values of 3000, 4500 and 8000 K for flows10, 20 and 30 l / min respectively, these values were taken at the nozzle exit of the plasma jet. The thermodynamic temperature around 1200 ° C, was effective in the reduction process of Ta2O5

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Metallic tantalum has a high commercial value due to intrinsic properties like excellent ductility, corrosion resistance, high melt and boiling points and good electrical and thermal conductivities. Nowadays, it is mostly used in the manufacture of capacitors, due to excellent dielectric properties of its oxides. In the nature, tantalum occurs in the form of oxide and it is extracted mainly from tantalite-columbite ores. The tantalum is usually produced by the reduction of its oxide, using reductants like carbon, silicon, calcium, magnesium and aluminum. Among these techniques, the aluminothermic reduction has been used as the industrial method to produce niobium, tantalum and their alloys, due to the easy removal of the Al and Al2O3 of the system, easing further refining. In conventional aluminothermic reduction an electrical resistance is used to trigger the reaction. This reaction self-propagates for all the volume of material. In this work, we have developed a novel technique of aluminothermic reduction that uses the hydrogen plasma to trigger the reaction. The results obtained by XRD, SEM and EDS show that is possible to obtain a compound rich in tantalum through this technique of aluminothermic reduction in the plasma reactor

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Doped lanthanum chromite ( LaCrO3 ) has been the most common material used as interconnect in solid oxide fuel cells for high temperature ( SOFC-HT ) that enabling the stack of SOFCs. The reduction of the operating temperature, to around 800 º C, of solid oxide fuel cells enabled the use of metallic interconnects as an alternative to ceramic LaCrO3, From the practical point of view, to be a strong candidate for interconnect the material must have good physical and mechanical properties such as resistance to oxidizing and reducing environments, easy manufacture and appropriate thermo-mechanical properties. Thus, a study on the physic-mechanical interconnects La0,8Sr0,2Cr0,92Co0,08O3 ceramics for SOFC -AT obtained by the method of combustion , as well as thermo-mechanical properties of metallic interconnects (AISI 444) covered with La0,8Ca0,2CrO3 by deposition technique by spray-pyrolysis fuel cells for intermediate temperature (IT-SOFCs). The La0,8Sr0,2Cr0,92Co0,08O3 was characterized by X -ray diffraction(XRD) , density and porosity , Vickers hardness (HV) , the flexural strength at room temperature and 900 °C and scanning electron microscopy (SEM). The X -ray diffraction confirmed the phase formation and LaCrO3 and CoCr2O4, in order 6 GPa hardness and mechanical strength at room temperature was 62 MPa ceramic Interconnector. The coated metal interconnects La0,8Ca0,2CrO3 passed the identification by XRD after deposition of the film after the oxidation test. The oxidative behavior showed increased resistance to oxidation of the metal substrate covered by La0,8Ca0,2CrO3 In flexural strength of the coated metal substrate, it was noticed only in the increased room temperature. The a SEM analysis proved the formation of Cr2O3 and (Cr,Mn)3O4 layers on metal substrate and confirmed the stability of the ceramic La0,8 Ca0,2CrO3 film after oxidative test

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This work determined the efficacy of the insecticide methyl parathion and the natural pesticide azadirachtin present in the aqueous extract of dry neem leaves (AEDNL) to Anacanthorus penilabiatus (Monogenoidea) control in pacu (Piaractus mesopotamicus). The efficacy of methyl parathion was evaluated in an experiment consisting of six treatments (0.0, 3.0, 4.0, 5.0, 6.0 and 7.0 mg methyl parathion/L water) and five exposure times (2, 4, 8, 16 and 24 h). The efficacy of azadirachtin present in AEDNL was assessed in an experiment consisting of seven treatments (0,0; 25; 50; 75; 100; 125; e 150 mL/L water) and five exposure times (24, 48, 72, 96 and 120 h). The efficacy of methyl parathion increased with increasing concentration and exposure time. The highest control efficacy was obtained with a concentration of 7 mg methyl parathion/L at all exposure times. In this treatment, the highest efficacies were observed at 16 and 24 h of exposure, with a control rate of 96.2 and 97.0%, respectively. For the AEDNL, the highest control efficacy (89.2%) was obtained with a concentration of 2.9 mg/L after 120 h of exposure. The efficacy in the treatments employing 1.47 and 1.18 mg/L was 83.9 and 82.5%, respectively, after 120 h of exposure. Methyl parathion presented a higher efficacy in the control of A. penilabiatus than the AEDNL. The AEDNL was moderately effective in the control of the parasite.

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Present work proposed to map and features the wear mechanisms of structural polymers of engineering derived of the sliding contact with a metallic cylindrical spindle submitted to eccentricity due to fluctuations in it is mass and geometric centers. For this it was projected and makes an experimental apparatus from balancing machine where the cylindrical counterbody was supported in two bearings and the polymeric coupon was situated in a holder with freedom of displacement along counterbody. Thus, the experimental tests were standardized using two position of the two bearings (Fixed or Free) and seven different positions along the counterbody, that permit print different conditions to the stiffness from system. Others parameters as applied normal load, sliding velocity and distance were fixed. In this investigation it was used as coupon two structural polymers of wide quotidian use, PTFE (polytetrafluroethylene) and PEEK (poly-ether-ether-ketone) and the AISI 4140 alloy steel as counterbody. Polymeric materials were characterized by thermal analysis (thermogravimetric, differential scanning calorimetry and dynamic-mechanical), hardness and rays-X diffractometry. While the metallic material was submitted at hardness, mechanical resistance tests and metallographic analysis. During the tribological tests were recorded the heating response with thermometers, yonder overall velocity vibration (VGV) and the acceleration using accelerometers. After tests the wear surface of the coupons were analyzed using a Scanning Electronic Microscopy (SEM) to morphological analysis and spectroscopy EDS to microanalysis. Moreover the roughness of the counterbody was characterized before and after the tribological tests. It was observed that the tribological response of the polymers were different in function of their distinct molecular structure. It were identified the predominant wear mechanisms in each polymer. The VGV of the PTFE was smaller than PEEK, in the condition of minimum stiffness, in function of the higher loss coefficient of that polymer. Wear rate of the PTFE was more of a magnitude order higher than PEEK. With the results was possible developed a correlation between the wear rate and parameter (E/ρ)1/2 (Young modulus, E, density, ρ), proportional at longitudinal elastic wave velocity in the material.

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Improving the adherence between oilwell metallic casing and cement sheath potentially decrease the number of corrective actions present/y necessary for Northeastern wells submitted to steam injection. In addition to the direct costs involved in the corrective operations, the economic impact of the failure of the primary cementing aIso includes the loss in the production of the well. The adherence between casing and cement is current/y evaluated by a simple shear tests non standardized by the American Petroleum Institute (API). Therefore, the objective of the present is to propose and evaluate a standardized method to assess the adherence of oilwell metallic casing to cement sheath. To that end, a section of a cemented oilwell was simulated and used to test the effect of different parameters on the shear stress of the system. Surface roughness and different cement compositions submitted or not to thermal cycling were evaluated. The results revealed that the test geometry and parameters proposed yielded different values for the shear stress of the system, corresponding to different adherent conditions between metallic casing and cement sheath