956 resultados para Hierro-Metalurgia
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Mode of access: Internet.
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Mode of access: Internet.
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Title, p. [1] Al ... don Luys Çapata. Soneto. p. [2]--Al ... don Francisco Çapata. Soneto. p. [3]--Al ... don Luys Çapata Gregorio Siluestre. Soneto. p. [4]--Muy yllustre señor (dedication in prose) p. [5-6]--Al ... don Aluaro de Baçan. Soneto. p. [7]--De Gregorio Syluestre al Auctor. Soneto. p. [8]--Canto primero--Canto sexto (in octavas with arguments in prose) p. [9-132]--Gregorio Syluestre. Soneto. p. [133]--Al señor Juan mnñoz [!] de Salazar, el Auctor. Soneto. p. [134]--Cancion del duque de Sesa (with "glosas" by Syluestre and by Don Juan de Borja) p. [135-140]--Cancion (with "glosa" by Baltasar del Hierro) p. [141-143]
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Estudos em ambiente laboral acerca do comportamento humano e saúde no trabalho, bem como a melhor forma de se aplicar as competências e habilidades do trabalhador, vêm ganhando maior corpo devido à crescente busca por melhores resultados organizacionais, ao aumento da competitividade no mercado e à necessidade empresarial de atingir melhor desempenho de suas equipes. Gestores procuram por recursos e inovações a fim de tornar possível o alcance das metas organizacionais. Empregados mais capacitados, satisfeitos e envolvidos com seu trabalho são também aqueles que têm maior comprometimento afetivo com a organização. Para a empresa, isto pode significar um aumento da produtividade, o rebaixamento do número de absenteísmo e turnover. A dimensão saúde no trabalho ganha relevância porque bem-estar no trabalho significa também empregado mais feliz, com menor probabilidade de adoecimento físico, psíquico ou moral, reduzindo custos relativos à restituição da saúde do trabalhador. Por outro lado, estudo realizado sobre a inteligência emocional em gestores sugere que pessoas com alto nível deste tipo de inteligência são capazes de ter relacionamentos mais profundos e constituir uma rede social mais segura, ajudar os outros de seu grupo, bem como desenvolver uma liderança onde se possa construir uma equipe coesa e uma comunicação mais efetiva com os outros e levar a cabo planos estratégicos empresariais com mais eficiência. Este estudo teve como objetivo geral analisar as relações entre as habilidades da inteligência emocional e as dimensões de bem-estar no trabalho. A pesquisa foi realizada em uma empresa do setor de plásticos e metalurgia, em uma amostra constituída por 386 participantes dos sexos masculino e feminino, com faixa etária entre 18 e 58 anos. Foi utilizado para a coleta de dados um questionário composto de quatro escalas que mediram os três componentes de bem-estar no trabalho e as habilidades da inteligência emocional. Os resultados do estudo revelaram que apenas três habilidades da inteligência emocional tiveram correlações significativas com as dimensões de bem-estar no trabalho: empatia, sociabilidade e automotivação. Foram observadas correlações mais significativas entre sociabilidade e bem-estar no trabalho. Portanto, o bem-estar no trabalho parece associar-se às habilidades intelectuais e emocionais dos trabalhadores de serem empáticos, manterem-se automotivados e, especialmente, de estabelecerem e conservarem suas amizades (sociabilidade)
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O presente estudo buscou a compreensão dos motivos que levam as empresas pesquisadas do setor automobilístico a gerir o conhecimento tácito, mediados pela gestão do conhecimento, na área de gestão de desenvolvimento de produtos. As questões de pesquisa que este estudo objetivou responder foram: Como empresas estudadas utilizam o conhecimento tácito para se tornarem mais eficientes e eficazes nas atividades/ operações? De que forma o conhecimento tácito é percebido na organização por parte dos funcionários e gestores? Para responder a estas perguntas houve a investigação de duas empresas do setor automobilístico, na área de desenvolvimento de produtos. Como base teórica para o desenvolvimento do presente estudo autores como Davenport e Prusak (1998), Nonaka e Takeuchi (1997) e Choo (2006) orientam esta pesquisa. A pesquisa abrange duas empresas do ramo automobilístico na região do ABC Paulista, com equivalência no número de funcionários e porte. Dentre os entrevistados há funcionários e gestores de áreas de gestão de projetos e produtos. A metodologia aplicada ao estudo foi de caráter qualitativo por meio de pesquisa exploratória-descritiva, sendo que o método de coleta de dados se deu a partir de entrevistas semiestruturadas. O estudo investigou quais as práticas usadas para a conversão do conhecimento, fatores facilitadores e fatores dificultadores para a conversão do conhecimento e as principais contribuições da aplicação das práticas e iniciativas voltadas gerir o conhecimento tácito, sob a ótica dos gestores e funcionários. Através do presente estudo pode-se verificar que existe a preocupação com a gestão do conhecimento nas empresas estudadas e que há práticas diversas relativas ao conhecimento tácito e que as formas de disseminação deste conhecimento são distintas. Algumas das práticas são os cursos de especialização, brainstorming e lesson learned e conversas informais. Nos fatores facilitadores há a troca de informação entre os pares, reuniões semanais, equipes multidisciplinares/ multifuncionais. Nos fatores dificultadores há a indicação de questões comportamentais, acúmulo de funções e tempo para partilhar informações.
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The Cu-Mo system is a composite used in the electrical industry as material for electrical contact and resistance welding electrode as well as the heat sink and microwave absorber in microelectronic devices. The use of this material in such applications is due to the excellent properties of thermal and electrical conductivity and the possibility of adjustment of its coefficient of thermal expansion to meet those of materials used as substrates in the semiconductor micoreletrônic industry. Powder metallurgy through the processes of milling, pressing shaping and sintering is a viable technique for consolidation of such material. However, the mutual insolubility of both phases and the low wettability of liquid Cu on Mo impede its densification. However, the mutual insolubility of both phases and the low wettability of liquid Cu on Mo impede its densification. The mechanical alloying is a technique for preparation of powders used to produce nanocrystalline composite powder with amorphous phase or extended solid solution, which increases the sinterability immiscible systems such as the Mo-Cu. This paper investigates the influence of ammonium heptamolybdate (HMA) and the mechanical alloying in the preparation of a composite powder HMA-20% Cu and the effect of this preparation on densification and structure of MoCu composite produced. HMA and Cu powders in the proportion of 20% by weight of Cu were prepared by the techniques of mechanical mixing and mechanical alloying in a planetary mill. These were milled for 50 hours. To observe the evolution of the characteristics of the particles, powder samples were taken after 2, 10, 15, 20, 30 and 40 hours of milling. Cylindrical samples 5 to 8 mm in diameter and 3 to 4 mm thickness were obtained by pressing at 200 MPa to the mixed powders so as to ground. These samples were sintered at 1200 ° C for 60 minutes under an atmosphere of H2. To determine the effect of heating rate on the structure of the material during the decomposition and reduction of HMA, rates of 2, 5 and 10 ° C / min were used .. The post and the structures of the sintered samples were characterized by SEM and EDS. The density of the green and sintered bodies was measured using the geometric method (weight / volume). Vickers microhardness with a load of 1 N for 15 s were performed on sintered structures. The density of the sintered structures 10 ° C / min. reached 99% of theoretical density, how the density of sintered structures to 2 ° C / min. reached only 90% of the theoretical density
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From an economic standpoint, the powder metallurgy (P/M) is a technique widely used for the production of small parts. It is possible, through the P/M and prior comminution of solid waste such as ferrous chips, produce highly dense sintered parts and of interest to the automotive, electronics and aerospace industries. However, without prior comminution the chip, the production of bodies with a density equal to theoretical density by conventional sintering techniques require the use of additives or significantly higher temperatures than 1250ºC. An alternative route to the production of sintered bodies with high density compaction from ferrous chips (≤ 850 microns) and solid phase sintering is a compression technique under high pressure (HP). In this work, different compaction pressures to produce a sintered chip of SAE 1050 carbon steel were used. Specifically, the objective was to investigate them, the effect of high pressure compression in the behavior of densification of the sintered samples. Therefore, samples of the chips from the SAE 1050 carbon steel were uniaxially cold compacted at 500 and 2000 MPa, respectively. The green compacts obtained were sintered under carbon atmosphere at 1100 and 1200°C for 90 minutes. The heating rate used was 20°C/min. The starting materials and the sintered bodies were characterized by optical microscopy, SEM, XRD, density measurements (geometric: mass/volume, and pycnometry) and microhardness measurements Vickers and Rockwell hardness. The results showed that the compact produced under 2000 MPa presented relative density values between 93% and 100% of theoretical density and microhardness between 150 HV and 180 HV, respectively. In contrast, compressed under 500 MPa showed a very heterogeneous microstructure, density value below 80% of theoretical density and structural conditions of inadequate specimens for carrying out the hardness and microhardness measurements. The results indicate that use of the high pressure of ferrous chips compression is a promising route to improve the sinterability conditions of this type of material, because in addition to promoting greater compression of the starting material, the external tension acts together with surface tension, functioning as the motive power for sintering process. Additionally, extremely high pressures allow plastic deformation of the material, providing an intimate and extended contact of the particles and eliminating cracks and pores. This tends to reduce the time and / or temperature required for good sintering, avoiding excessive grain growth without the use of additives. Moreover, higher pressures lead to fracture the grains in fragile or ductile materials highly hardened, which provides a starting powder for sintering, thinner, without the risk of contamination present when previous methods are used comminution of the powder.
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A combinação da Moldagem por Injeção de pós Metálicos (Metal Injection Moulding MIM) e o Método do Retentor Espacial (Space Holder Method - SHM) é uma técnica promissora para fabricação de peças porosas de titânio com porosidade bem definida como implantes biomédicos, uma vez que permite um alto grau de automatização e redução dos custos de produção em larga escala quando comparado a técnica tradicional (SHM e usinagem a verde). Contudo a aplicação desta técnica é limitada pelo fato que há o fechamento parcial da porosidade na superfície das amostras, levando ao deterioramento da fixação do implante ao osso. E além disso, até o presente momento não foi possível atingir condições de processamento estáveis quando a quantidade de retentor espacial excede 50 vol. %. Entretanto, a literatura descreve que a melhor faixa de porosidade para implantes de titânio para coluna vertebral está entre 60 - 65 vol. %. Portanto, no presente estudo, duas abordagens foram conduzidas visando a produção de amostras altamente porosas através da combinação de MIM e SHM com o valor constante de retentor espacial de 70 vol. % e uma porosidade aberta na superfície. Na primeira abordagem, a quantidade ótima de retentor espacial foi investigada, para tal foram melhorados a homogeneização do feedstock e os parâmetros de processo com o propósito de permitir a injeção do feedstock. Na segunda abordagem, tratamento por plasma foi aplicado nas amostras antes da etapa final de sinterização. Ambas rotas resultaram na melhoria da estabilidade dimensional das amostras durante a extração térmica do ligante e sinterização, permitindo a sinterização de amostras de titânio altamente porosas sem deformação da estrutura.
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It seeks to find an alternative to the current tantalum electrolytic capacitors in the market due to its high cost. Niobium is a potential replacement for be lighter and cheaper than tantalum. They belong to the same table group periodically and thus exhibit several physical and chemical properties similar. Niobium is used in many technologically important applications, and Brazil has the largest reserves, around 96%. These electrolytic capacitors have high specific capacitance, so they can store high energy in small volumes compared to other types of capacitors. This is the main attraction of this type of capacitor because is growing demand in the production of capacitors with capacitance specifies increasingly high, this because of the miniaturization of various devices such as GPS devices, televisions, computers, phones and many others. The production route of the capacitor was made by powder metallurgy. The initial niobium poder was first characterized by XRD, SEM and laser particle size to then be sieved into particle size 400mesh. The powder was then compacted at pressure of 150MPa and sintered at 1400, 1450 and 1500°C using two sintering time 30 and 60min. Sintering is an important part of the process as it affects properties as porosity and surface cleaning of the samples, which greatly affected the quality of the capacitor. After sintering the samples were underwent a process of anodic oxidation (anodizing), which created a thin film of niobium pentoxide over the whole surface of the sample, this film is the dielectric capacitor. The anodizing process variables influenced a lot in film formation and consequently the capacitor. The samples were characterized by electrical measurements of capacitance, loss factor and ESR (equivalent series resistance). The sintering has affected the porosity and in turn the specific area of the samples. The capacitor area is directly related to the capacitance, that is, the higher the specific area is the capacitance. Higher sintering temperatures decrease the surface area but eliminate as many impurities. The best results were obtained at a temperature of 1400°C with 60 minutes. The most interesting results were compared with the specific capacitance and ESR for all samples.
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It seeks to find an alternative to the current tantalum electrolytic capacitors in the market due to its high cost. Niobium is a potential replacement for be lighter and cheaper than tantalum. They belong to the same table group periodically and thus exhibit several physical and chemical properties similar. Niobium is used in many technologically important applications, and Brazil has the largest reserves, around 96%. These electrolytic capacitors have high specific capacitance, so they can store high energy in small volumes compared to other types of capacitors. This is the main attraction of this type of capacitor because is growing demand in the production of capacitors with capacitance specifies increasingly high, this because of the miniaturization of various devices such as GPS devices, televisions, computers, phones and many others. The production route of the capacitor was made by powder metallurgy. The initial niobium poder was first characterized by XRD, SEM and laser particle size to then be sieved into particle size 400mesh. The powder was then compacted at pressure of 150MPa and sintered at 1400, 1450 and 1500°C using two sintering time 30 and 60min. Sintering is an important part of the process as it affects properties as porosity and surface cleaning of the samples, which greatly affected the quality of the capacitor. After sintering the samples were underwent a process of anodic oxidation (anodizing), which created a thin film of niobium pentoxide over the whole surface of the sample, this film is the dielectric capacitor. The anodizing process variables influenced a lot in film formation and consequently the capacitor. The samples were characterized by electrical measurements of capacitance, loss factor and ESR (equivalent series resistance). The sintering has affected the porosity and in turn the specific area of the samples. The capacitor area is directly related to the capacitance, that is, the higher the specific area is the capacitance. Higher sintering temperatures decrease the surface area but eliminate as many impurities. The best results were obtained at a temperature of 1400°C with 60 minutes. The most interesting results were compared with the specific capacitance and ESR for all samples.
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The present work analyzed the tribological behavior of coatings/surface modifications traditionally used in cold rolling mill rolls and new coatings/surface modificationswith potential to replace the carcinogenic hard chrome. The study started with identification of wear mechanisms occurring in real coldrollingmill rolls. Due the high cost and dimensions of the rolls, thereplication technique was used. Replicas were obtained from 4 different rolling millBrazilian companies before and after a normal rolling campaign. Initial sliding tests were conducted using spherical and cylindrical counter bodies in order to verifywhichtribological conditions allowed to reproduce the wear mechanisms found in the replicas. These tests indicated the use of reciprocating sliding tests with cylindrical counter bodies (line contact), normal load of 100 N, and test times of and 1 h and 5 h. Different surface modifications were carried out on samples produced from a fragment of a rolling mill roll. The specimens were heat treated and ground on both sides. After, some specimens were surface textured by electrical discharge texturing (EDT). For both groups (ground and EDT), subsequent treatments of chromium plating, electroless NiP coating and plasma nitriding were carried out. The results of the reciprocating tests showed that specimens with electroless NiP coating presented the lowest friction coefficients, while plasma nitrided specimens showed the highest. In general, previous surface texturing before the coating/surface modification increased the wear of the counter bodies. Oneexceptionwas for EDT with subsequent electroless NiP coating, which presented the lowest counter bodies wear rate. The samples withelectroless NiP coating promoted a tribolayer consisting of Nickel, Phosphorus and Oxygen on both the specimens andthecounter bodies, which was apparently responsible for the reduction of friction coefficient and wear rate. The increase of the test time reduced the wear rate of the samples, apparently due the stability of the tribolayers formed, except for the nitrided samples. For the textured specimens, NiP coating showed the best performance in maintaining the surface topography of the specimens after the sliding tests.
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In a scenario of increasing competitiveness of the global industrial sector and with a consumer market increasingly demanding, there is an increased demand for new materials and, consequently, possibilities to explore new research and technological advances towards the development of new manufacturing methods or the improvement of existing technologies. In the case of cast irons, new grades of them have been developed so that their mechanical properties have been improved, making them more competitive with steel, expanding the applications and thus represents great economic gain for metallurgy and manufacturing sectors. This increases the interest and creates new opportunities to study these materials and identify how they respond in terms of the surface integrity, tool wear, cutting forces, among others, when machined by grinding operation. In this context, due to the lack of results from grinding of cast irons and studies comparing grindability among several grades of cast irons found in the literature, this work aims to generate scientific and technological contribution to the metallurgical and metal working sector through roughness results (Ra and Rz parameters) and evaluation and analysis of the subsurface integrity of three cast iron grades (gray, compacted graphite and nodular). The machining trials were performed on a surface grinding machine with silicon carbide grinding wheel at different cutting conditions. The input variables were the radial depth of cut (15 and 30 μm), worktable speed, vw (5 and 10 m/min) and the abrasive grain size of the grinding wheel. The results showed that surface roughness increased with the radial depth of cut for all materials tested; and the lowest values were obtained for gray cast iron. Also, roughness was sensitive to variation of worktable speed and the lowest values were obtained after machining with vw = 5 m/min. With respect to the abrasive grain size, as it decreased the roughness values increased to gray and nodular cast iron grades. Furthermore, grinding burns marks were observed on the surfaces of nodular cast iron and compacted graphite iron grades after grinding the smallest grain size, contrary to what is usually reported in literature. However, no evidence of severe thermal damages below the machined surfaces of all cast iron grades was observed after analyzing the results of hardness and the SEM micrograph images.
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La etapa infantil tiene una gran importancia desde el punto de vista nutricional, para el presente y futuro de los individuos. La alimentación equilibrada desempeña un papel fundamental en el crecimiento y desarrollo del niño, permitiendo mantener un estado de salud óptimo y mejorando su calidad de vida. Además, en la edad infantil se establecen gran parte de los hábitos y estilos de vida que persistirán a lo largo de toda la vida, entre ellos se establecen y conforman los hábitos alimentarios y las bases de la educación nutricional. En un metabolismo aeróbico, como el que caracteriza al cuerpo humano, se precisa del oxígeno para la mayoría de los procesos biológicos cuyo fin último es obtener energía, es decir, se produce la oxidación de los diferentes sustratos para obtener dicha energía a través de diferentes rutas metabólicas. Esta utilización de oxígeno en los procesos metabólicos, implica inevitablemente la formación de especies reactivas de oxígeno (ERO) o radicales libres, que favorecen los procesos de oxidación. Para compensar estos procesos, existen en el cuerpo humano una serie de sistemas de protección antioxidante que permiten la eliminación o transformación de las ERO en moléculas estables. Los sistemas biológicos están, por lo tanto, en un estado de equilibrio entre sustancias prooxidantes y su capacidad antioxidante. El desequilibrio a favor de la acción prooxidante es lo que se conoce como "estrés oxidativo", que puede conducir al daño celular y tisular, y finalmente al desarrollo de diferentes enfermedades: cáncer, arteriosclerosis, infarto de miocardio, procesos de isquemia/reperfusión, diabetes mellitus, asfixia neonatal, enfermedades inflamatorias, trastornos del sistema nervioso central, envejecimiento, ... Dentro de la alimentación encontramos nutrientes que median en este equilibrio oxidante-antioxidante, habiendo nutrientes que participan en el sistema de defensa antioxidante (vitamina C y E, carotenoides, flavonoides, melanoidinas, selenio, zinc..) y también sustancias que pueden actuar como prooxidantes (exceso de lípidos, proteínas, hierro o cobre)...
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El conocimiento acerca de la relación dieta-salud y el enorme impacto que su difusión provoca sobre la opinión pública constituye uno de los elementos que más está condicionando el interés por llevar a cabo una correcta alimentación, sobre todo en los países desarrollados. Desde hace unos años se ha empezado a considerar la importancia que tiene un estado nutricional óptimo para el mantenimiento de la salud y para la prevención de la enfermedad. Estos dos aspectos junto con los cambios socioeconómicos que han tenido lugar y que influyen en las formas de alimentarnos, han potenciado el uso de los productos llamados “complementos alimenticios”. Dichos productos son considerados como un recurso accesorio que permite fácilmente mejorar el estado nutricional o fisiológico, y están destinados a quienes deseen completar de forma puntual su alimentación para contrarrestar una deficiencia o satisfacer una necesidad específica. Los complementos alimenticios se utilizan con la idea de alcanzar un buen estado de salud, además de protegerse frente a las posibles agresiones al organismo. La población asocia éstos a la idea de “tratamiento natural” sin efectos adversos. Sin embargo, recientes estudios muestran cómo la ingesta de determinados complementos alimenticios, a base de multivitaminas y minerales (ácido fólico, vitamina E, vitamina A, betacaroteno, hierro, cobre,…), podrían producir efectos negativos para la salud, puesto que el exceso de nutrientes puede ser dañino. La frontera entre un medicamento y un complemento alimenticio, no está siempre clara (a menudo poseen los mismos componentes y en las mismas formas de dosificación), y según establece la legislación, estará en función de sus ingredientes, de la proporción de éstos presentes en el preparado, de la indicación que se le asigne y de los efectos que pudiera tener para la salud de las personas, ejerciendo un efecto fisiológico para los complementos alimenticios, y famacológico para los medicamentos...
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A principios del S.XX; en el año 1911, en la ciudad de Orense sólo existían ocho farmacias, las de Luis Fábrega Coello, en el Progreso; la de Ramón Aldemira en Hernán Cortés; la de José Fernández Martínez en el Progreso; la de Emilio Meruéndano Pérez en la Plaza Mayor; la de José Francisco Salgado en la calle Bailén; la de Serafín Temes en la Plaza del Hierro y la de Aurelio Fernández Román en el barrio del Puente Mayor, entonces Municipio de Canedo. Con el transcurso de los años, se dieron dos acontecimientos importantes; el represamiento de los cauces de los ríos, aprovechado para la generación de electricidad, y la gran inversión en líneas de ferrocarril que servían de comunicación de Galicia con la Península; esto provocó la expansión de la ciudad y con ella una mayor actividad que, junto a la creación del Colegio Oficial de Farmacéuticos de Ourense provocó un incremento de las farmacias en la provincia, pasando de 56 en 1918 a 126 en 1949...