210 resultados para Vitrificação (Ceramica)


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Dissertação mest., Engenharia Biológica, Universidade do Algarve, 2008

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A partir del conocimiento que se posee referente al desarrollo de las ladrilleras del sector de Nemocón y las herramientas y disciplinas aplicables al estudio de un plan de internacionalización, se determina desarrollar el siguiente proceso. En primer lugar, a partir de la necesidad de diagnosticar un análisis del sector ladrillero en Nemocón Cundinamarca, se hace indispensable utilizar herramientas de la línea de estrategia. Se requiere de un estudio matricial del comportamiento del sector con su respectivo análisis y para generar un mayor soporte técnico al análisis del sector, se requiere de un estudio de planeación estratégica por escenarios el cual proveerá a la investigación de diversas alternativas en la selección de variables fundamentales del sistema. Acerca del estudio de los mercados tanto nacional como internacional, se dispondrá de las habilidades básicas de la línea de mercadeo. Es importante que a partir del análisis del sector y de la obtención de algunas variables importantes, se indague a profundidad acerca de las variables más importantes para el desarrollo de una matriz de mercados. La idea de la aplicación de esta matriz, es generar unos filtros de países seleccionados a partir de variables anteriormente especificadas con el fin de determinar un único mercado que será el objetivo para el plan de internacionalización. Sobre el país seleccionado se aplica un estudio de mercado y un estudio de viabilidad financiera bajo los cuales se obtienen las conclusiones del plan de internacionalización, su viabilidad y sus recomendaciones.

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This paper reports the production of bismuth germanate ceramic scintillator (Bi4Ge3O12) by combustion synthesis (SHS) method, focusing on the influence of the synthesis parameters on the crystalline phases and agglomeration of the nanoparticles. The synthesis and sintering conditions were investigated through thermal analysis, X-ray diffraction as function of temperature, dilatometry and scanning electron microscopy. Well-dispersed Bi4Ge3O12 powder was accomplished by the combustion of the initial solution at pH 9, followed by low temperature calcination and milling. Sintered ceramics presented relative density of 98% and single crystalline Bi4Ge3O12 phase. The luminescent properties of the ceramics were investigated by photo- and radio- luminescence measurements and reproduced the typical Bi4Ge3O12 single-crystal spectra when excited with UV, beta and X-rays. The sintered ceramics presented light output of 4.4 x 10(3) photons/McV. (c) 2008 Published by Elsevier Ltd.

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Tendo em vista que a redução da geração de resíduos industriais é limitada, a reciclagem de resíduos tem sido praticada na tentativa de minimizar os danos causados pelos mesmos. Devido à grande quantidade de materiais consumidos, a indústria da construção civil mostrase promissora para reciclagem de resíduos. Assim como vem sendo praticado com as escórias de alto-forno, esta pesquisa propõe a utilização da escória granulada de fundição, resíduo gerado no processo de fusão de ferro fundido via cubilô, como um material cimentante em concretos na construção civil. Ensaios de caracterização da escória apresentaram bons resultados para aplicação deste resíduo como substituição ao cimento, em termos de índice de pozolanicidade, grau de vitrificação, entre outros. Em razão de um grande número de estruturas de concreto armado necessitarem de intervenções, por não apresentarem um desempenho satisfatório em pouco tempo de uso, que a durabilidade das estruturas de concreto vem sendo amplamente estudada. Sendo assim, esta pesquisa avalia a durabilidade dos concretos com escória granulada de fundição, em termos de absorção de água por sucção capilar e penetração de íons cloreto. Foram estudados concretos contendo diferentes teores de substituição de cimento por escória granulada de fundição (0% - 10% - 30% - 50%), em volume, e relações água/aglomerante (0,40 – 0,55 – 0,70).Os resultados mostram que, para a mesma relação água/aglomerante, a substituição de cimento por escória granulada de fundição aumenta significativamente a taxa de absorção de água e não prejudica significativamente a penetração de íons cloreto. Entretanto, para um mesmo valor de resistência à compressão, a incorporação de escória granulada de fundição é viável tecnicamente, pois diminui a taxa de absorção e a penetração de cloretos.

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Este trabalho teve como objetivo principal investigar o processo de imobilização do íon cromo, oriundo da cinza de incineração da serragem de couro curtido ao cromo (CSC), em corpos cerâmicos vitrificados. Para tanto, foram desenvolvidas formulações com adição de vidro sodocálcico a CSC, que foram submetidas a diferentes temperaturas de queima. Para o aprofundamento da investigação dos fenômenos atuantes no processo de imobilização do íon cromo, foram formuladas massas cerâmicas com a adição de óxidos puros de Na2O, TiO2, MgO e CaO, à composição CSC e vidro sodo-cálcido. As massas cerâmicas foram conformadas por prensagem uni-axial de duplo efeito e queimadas em forno elétrico tipo mufla, nas temperaturas de 750, 800, 950 e 1000ºC. Posteriormente, foram caracterizadas quanto às propriedades físicas e composição mineralógica, bem como, avaliadas quanto à imobilização do cromo através de ensaios de lixiviação, segundo a Norma NBR 10.005. O controle de fases formadas resultante do processamento cerâmico foi investigado com o auxílio de difração de raios X e mapeamento por microssonda EDS. Os resultados obtidos indicam que é possível obter a imobilização do íon cromo da CSC, de acordo com o limite máximo estabelecido pela NBR 10.004 (5mg/L), utilizando vidro e agentes de vitrificação/densificação, como o óxido de titânio e óxido de magnésio. Quanto mais elevada a temperatura de queima, mais efetiva foi a imobilização de cromo nos corpos cerâmicos investigados. O aumento da temperatura de queima diminui a porosidade aberta, via formação de fase vítrea, levando desse modo a uma diminuição da lixiviação do cromo. No entanto, a adição somente de vidro a CSC aumentou a lixiviação do cromo dos corpos cerâmicos, embora sempre menor para temperaturas de queima crescentes. Deve-se isso, ao aumento de fases lixiviáveis, como cromatos de sódio, a partir da reação do sódio, do vidro sodo-cálcico e do cromo da CSC. Os corpos cerâmicos que apresentaram a fase cromato de sódio, apresentaram deficiente imobilização do íon cromo, em todas as formulações investigadas.

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Dutra, R. P. S.; Varela,M. L.; Nascimento, R. M. ; Gomes, U. U. ; Martinelli1, A. E. ; Paskocimas, C. A. Estudo comparativo da queima rápida com a queima tradicional nas propriedades de materiais cerâmicos de base argilosa. Cerâmica [online]. 2009, vol.55, n.333, pp. 100-105. ISSN 0366-6913. doi:Disponivem em: . Acesso em: 04 out. 2010.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Tin oxide has wakened up great scientific and technological interest for its potential use in varistors production and as gas sensor. In order to improve the microstructural and electrical properties in SnO2 varistor ceramics, the influence of differents dopants used, like TiO2 and Al2O3, is under research. The effect of TiO2 and Al2O3 on the properties of Sn-Co-Nb varistor systems obtained by the Pechini method has been investigated in this work. Characterization of synthesized raw material was performed by X-Ray Diffraction (XRD) and Scanning Electronic Microscopy (SEM). The microstructural and electrical characterization of sintered samples show that the TiO2 favors the grain growth and the Al2O3 contributes to the decrease it, effect that is manifested in the Sn-Co-Nb varistor systems. Breakdown field increase up to 6300V/cm with increasing Al2O3 content and non-linear coefficients with alpha=22 were obtained.

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Lithium niobate (LiNbO3) thin films with 1/1 stoichiometry were prepared by a spin-coating from polymeric precursor method. The films deposited on silicon (100) substrates, were thermally treated from 400° to 600°C for 3 hours in order to study the influence of thermal treatment on the crystallinity, microstructure, grain size and roughness. X-ray diffraction (XRD) results showed that LiNbO3 phase crystallizes at low temperature (400°C). It was observed by scanning electron microscopy (SEM) that it is possible to obtain dense thin films at temperatures around 500°C. The atomic force microscopy (AFM) results showed that the grain size and roughness are strongly influenced by the annealing temperature.

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Barium titanate is used extensively as a dielectric in ceramic capacitors, particularly due to its high dielectric constant and low dielectric loss characteristics. It can be made semiconducting by addition of certain dopants and by proper modification of grains and grain boundary properties obtaining very interesting characteristics for various applications. The synthesis method and sintering regime have a strong influence on properties of obtained barium titanate ceramics. Doped barium titanate was prepared with Nb+5 and Y+3 ions as donor dopants, and with Mn+2 ions as acceptor dopant by polymeric precursors method. By this procedure nanosized powders were obtained after calcination. Sintering was performed in the temperature range of 1290°C to 1380°C The microstructure of doped BaTiO3 was performed using scanning electron microscopy. The influence of dopants and sintering temperature on grain size was analysed.

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The work describes actions carried out in colaboration among the National Steel Company - (CSN)-Brazil and the Interdisciplinary Laboratory of Electrochemistry and Ceramic - LIEC of the Federal University of Sao Carlos Brazil (UFSCar-Brazil), in the area of I&D, for integral management and improvement of the quality and performance of the refractory linings in the sintering areas, blast furnace, hot air pipe lines transferency to the blast furnace, pig-iron ladles, running channels, blast furnaces hearths, torpedo car, etc., as well as, the economic impact generated by the installation of the adopted measures.

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PMN belongs to a special class of materials named relaxor ferroelectrics. It has high volumetric efficiency due to its high dielectric constant, which makes it in a perfect material for application in multilayer capacitors. When prepared the columbite route its preparation has many advantages. In this work, the preparations of columbite and PMN were done by Pechini and Partial Oxalate methods, respectively. The effects of the KNbO3 and LiNbO3 dopants added in various concentrations. The idea is founded on the correlations that they have with BaTiO3 y PbTiO3, respectively. The whole process was supervised by TG/DTA, XRD, SEM and determination of the specific surface area of the powders. LiNbO3 carries out the pre-sinterization of the particles, observed by a reduction in the surface area. There are not particle grow, but occur its lengthening. However, for KNbO3 these particle growth, but the agglomerates are softer. The effect produced by the doping during the synthesis of the PMN powder is different from the one produced in the columbite precursor. Pure precursor shows an average particle size of 0,2μm, but the addition of 5,0mol% of dopants carries out the formation of agglomerates close to 4μm. LiNbO 3 addition carries out spherical particles and pre-sinterization, while KNbO3 addition does not change the particles shape.

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PMN ceramic relaxor has been investigated by several researchers and many aspects of this material, like powder morphology, phase decomposition, weight loss during sintering process, densification, between others, still are investigated. PMN powder preparation has been shown more efficient when synthesized by columbite route, however lead addition stage for the PMN powder synthesis remains problematical. Therefore, this work proposes a new association of methodologies, using columbite route and the hydroxide precipitation method. Through use of the powder mixture technique, which permitted to obtain good green and sintered densities, was possible to observe K+ y Li + dopants reduce weight loss in sintering process and change significantly the dielectric properties. Addition of LiNbO3 seeds in conformation stage, which react in a distinct way as a function of the particle size, promotes the formation of differenced grains in the ceramic bulk. Consequently, very different dielectrics properties from conventional PMN ceramic were obtained.

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The (Sn,Ti)O2, system has a great interest due to its technological applications such as gas sensor and varistor. Although the thermodynamic properties and the kinetics of spinoidal decomposition in this system have been extensively studied, the general properties and applications of SnO2 - TiO2 binary compositions have been not investigated yet in depth. On the other hand, little work has been done to optimize the synthesis methods to obtain (Sn,Ti)O2 cerallmic powders, with pre - determinate physical and chemical characteristics. In this work the ceramic powders has been obtained by coprecipitation and polymeric precursor (Pechini) methods. The different physical chemistry phenomena that occurred during the synthesis were discussed. The (Sn,Ti)O2, ceramic powders were characterized with X- ray diffraction (XRD), thermal analysis (DTA/TG) and scanning electron microscopy (SEM). The knowledge about of steps and variables of synthesis process acquired with development of this work, we permited to obtain (Sn, Ti)O2, nanometers particles to low temperatures: to 450°C for coprecipitation method and to 600°C for Pechini method. The spinodal decomposition that ocurr to 900°C was discussed also.

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In the present work it was studied the main aspect that influences on degradation and physical-chemical properties at grain-boundary region of metal oxide varistors and its consequences on microstructure and nonohmic electric properties. Based on the comprehension of the degradation aspects it was proposed some methodologies to recover the varistors nonohmic properties after being failed with long (2000 μs) and short current pulses (8/20 μs). Our analysis shown that one of the cause of degradation process is related to the lowering of oxygen species amount at grain-boundary region. Therefore, it is possible to re-promote oxygen enrichment of such regions by specific thermal treatments in rich oxygen atmospheres (the best condition found in the present work was temperatures around 900°C for 2 h at an oxygen flux of 15 1/h). The proposed nonohmic properties recovering procedure appear to be valid for all kind metal oxide varistors studied and is very important from technological point of view.