997 resultados para Polymeric material


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Magnetic resonance imaging (MRI) magnets have very stringent constraints on the homogeneity of the static magnetic field that they generate over desired imaging regions. The magnet system also preferably generates very little stray field external to its structure, so that ease of siting and safety are assured. This work concentrates on deriving, means of rapidly computing the effect of 'cold' and 'warm' ferromagnetic material in or around the superconducting magnet system, so as to facilitate the automated design of hybrid material MR magnets. A complete scheme for the direct calculation of the spherical harmonics of the magnetic field generated by a circular ring of ferromagnetic material is derived under the conditions of arbitrary external magnetizing fields. The magnetic field produced by the superconducting coils in the system is computed using previously developed methods. The final, hybrid algorithm is fast enough for use in large-scale optimization methods. The resultant fields from a practical example of a 4 T, clinical MRI magnet containing both superconducting coils and magnetic material are presented.

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Os Correios t??m como miss??o facilitar as rela????es pessoais e empresariais mediante a oferta de servi??os de correios com ??tica, competitividade, lucratividade e responsabilidade social. Fundamentada em objetivos estrat??gicos, como o de obter padr??es de qualidade e produtividade requeridos pelas partes interessadas e aumentar a percep????o da sociedade em rela????o ?? atua????o da ECT como empresa socialmente respons??vel, a Ag??ncia de Conchas/DR/SPI implantou a????o socioambiental e educacional com a comunidade: a instala????o de caixas receptoras de correspond??ncia em suas resid??ncias, utilizando materiais recicl??veis. O projeto proporcionou ganhos significativos para a Ag??ncia e para os mun??cipes na presta????o de um servi??o com maior qualidade e agilidade a partir da melhoria gradativa das condi????es de entrega nos novos bairros atendidos pelo servi??o, al??m da satisfa????o e do reconhecimento da sociedade com a a????o de inclus??o social

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O material abrange os seguintes t??picos: t??cnicas modernas de administra????o de materiais;estrutura; funcionamento e desenvolvimento do organismo de material da Administra????o P??blica Federal

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A Escola Nacional de Administra????o P??blica, ENAP, em parceria com a Canada School of Public Service, CSPS, vem implementando novas metodologias de abordagem de temas importantes para a melhoria da administra????o p??blica. Em 09 de novembro de 2004 foi instalada a primeira Mesa-redonda de Pesquisa-A????o, ferramenta de pesquisa que tem por objetivo reunir profissionais e especialistas para encontrar solu????es para os desafios enfrentados no servi??o p??blico. O resultado dos debates ?? a publica????o de um material que possa ser ??til a servidores e dirigentes no desempenho de tarefas ou na implementa????o de novas ferramentas de trabalho. A ENAP, cumprindo seu papel de auxiliar na difus??o de conhecimentos no setor p??blico federal, pretende realizar novas mesas periodicamente.

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A Escola Nacional de Administra????o P??blica, ENAP, em parceria com a Canada School of Public Service, CSPS, vem implementando novas metodologias de abordagem de temas importantes para a melhoria da administra????o p??blica. Em 09 de novembro de 2004 foi instalada a primeira Mesa-redonda de Pesquisa-A????o, ferramenta de pesquisa que tem por objetivo reunir profissionais e especialistas para encontrar solu????es para os desafios enfrentados no servi??o p??blico. O resultado dos debates ?? a publica????o de um material que possa ser ??til a servidores e dirigentes no desempenho de tarefas ou na implementa????o de novas ferramentas de trabalho. A ENAP, cumprindo seu papel de auxiliar na difus??o de conhecimentos no setor p??blico federal, pretende realizar novas mesas periodicamente.

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The thermal and hydrolytic degradation of electrospun gelatin membranes cross-linked with glutaraldehyde in vapor phase has been studied. In vitro degradation of gelatin membranes was evaluated in phosphate buffer saline solution at 37 ºC. After 15 days under these conditions, a weight loss of 68 % was observed, attributed to solvation and depolymerization of the main polymeric chains. Thermal degradation kinetics of the gelatin raw material and as-spun electrospun membranes showed that the electrospinning processing conditions do not influence polymer degradation. However, for cross-linked samples a decrease in the activation energy was observed, associated with the effect of glutaraldehyde cross-linking reaction in the inter- and intra-molecular hydrogen bonds of the protein. It is also shown that the electrospinning process does not affect the formation of the helical structure of gelatin chains.

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Purpose Achieving sustainability by rethinking products, services and strategies is an enormous challenge currently laid upon the economic sector, in which materials selection plays a critical role. In this context, the present work describes an environmental and economic life cycle analysis of a structural product, comparing two possible material alternatives. The product chosen is a storage tank, presently manufactured in stainless steel (SST) or in a glass fibre reinforced polymer composite (CST). The overall goal of the study is to identify environmental and economic strong and weak points related to the life cycle of the two material alternatives. The consequential win-win or trade-off situations will be identified via a Life Cycle Assessment/Life Cycle Costing (LCA/LCC) integrated model. Methods The LCA/LCC integrated model used consists in applying the LCA methodology to the product system, incorporating, in parallel, its results into the LCC study, namely those of the Life Cycle Inventory (LCI) and the Life Cycle Impact Assessment (LCIA). Results In both the SST and CST systems the most significant life cycle phase is the raw materials production, in which the most significant environmental burdens correspond to the Fossil fuels and Respiratory inorganics categories. The LCA/LCC integrated analysis shows that the CST has globally a preferable environmental and economic profile, as its impacts are lower than those of the SST in all life cycle stages. Both the internal and external costs are lower, the former resulting mainly from the composite material being significantly less expensive than stainless steel. This therefore represents a full win-win situation. As a consequence, the study clearly indicates that using a thermoset composite material to manufacture storage tanks is environmentally and economically desirable. However, it was also evident that the environmental performance of the CST could be improved by altering its End-of-Life stage. Conclusions The results of the present work provide enlightening insights into the synergies between the environmental and the economic performance of a structural product made with alternative materials. Further, they provide conclusive evidence to support the integration of environmental and economic life cycle analysis in the product development processes of a manufacturing company, or in some cases even in its procurement practices.

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Experimental scratch resistance testing provides two numbers: the penetration depth Rp and the healing depth Rh. In molecular dynamics computer simulations, we create a material consisting of N statistical chain segments by polymerization; a reinforcing phase can be included. Then we simulate the movement of an indenter and response of the segments during X time steps. Each segment at each time step has three Cartesian coordinates of position and three of momentum. We describe methods of visualization of results based on a record of 6NX coordinates. We obtain a continuous dependence on time t of positions of each of the segments on the path of the indenter. Scratch resistance at a given location can be connected to spatial structures of individual polymeric chains.

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Polymers have become the reference material for high reliability and performance applications. In this work, a multi-scale approach is proposed to investigate the mechanical properties of polymeric based material under strain. To achieve a better understanding of phenomena occurring at the smaller scales, a coupling of a Finite Element Method (FEM) and Molecular Dynamics (MD) modeling in an iterative procedure was employed, enabling the prediction of the macroscopic constitutive response. As the mechanical response can be related to the local microstructure, which in turn depends on the nano-scale structure, the previous described multi-scale method computes the stress-strain relationship at every analysis point of the macro-structure by detailed modeling of the underlying micro- and meso-scale deformation phenomena. The proposed multi-scale approach can enable prediction of properties at the macroscale while taking into consideration phenomena that occur at the mesoscale, thus offering an increased potential accuracy compared to traditional methods.

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We have employed molecular dynamics simulations to study the behavior of virtual polymeric materials under an applied uniaxial tensile load. Through computer simulations, one can obtain experimentally inaccessible information about phenomena taking place at the molecular and microscopic levels. Not only can the global material response be monitored and characterized along time, but the response of macromolecular chains can be followed independently if desired. The computer-generated materials were created by emulating the step-wise polymerization, resulting in self-avoiding chains in 3D with controlled degree of orientation along a certain axis. These materials represent a simplified model of the lamellar structure of semi-crystalline polymers,being comprised of an amorphous region surrounded by two crystalline lamellar regions. For the simulations, a series of materials were created, varying i) the lamella thickness, ii) the amorphous region thickness, iii) the preferential chain orientation, and iv) the degree of packing of the amorphous region. Simulation results indicate that the lamella thickness has the strongest influence on the mechanical properties of the lamella-amorphous structure, which is in agreement with experimental data. The other morphological parameters also affect the mechanical response, but to a smaller degree. This research follows previous simulation work on the crack formation and propagation phenomena, deformation mechanisms at the nanoscale, and the influence of the loading conditions on the material response. Computer simulations can improve the fundamental understanding about the phenomena responsible for the behavior of polymeric materials, and will eventually lead to the design of knowledge-based materials with improved properties.

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A numeric model has been proposed to investigate the mechanical and electrical properties of a polymeric/carbon nanotube (CNT) composite material subjected to a deformation force. The reinforcing phase affects the behavior of the polymeric matrix and depends on the nanofiber aspect ratio and preferential orientation. The simulations show that the mechanical behavior of a computer generated material (CGM) depends on fiber length and initial orientation in the polymeric matrix. It is also shown how the conductivity of the polymer/CNT composite can be calculated for each time step of applied stress, effectively providing the ability to simulate and predict strain-dependent electrical behavior of CNT nanocomposites.

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A maioria das explicações convencionais da rápida expansão das corporações transnacionais (CTNs) nos países em desenvolvimento atribui seu crescimento à eficiência superior das CTNs em relação a seus competidores domésticos. Uma interpretação alternativa focaliza as estruturas industriais do oligopólio que estão associadas ao investimento transnacional e o poder de mercado das CTNs. Este trabalho explora algumas táticas de mercado e extramercado empregadas pelas CTNs para protegerem sua vantagem monopolística nos países hospedeiros. Usando o exemplo da indústria de material elétrico do Brasil, o artigo considera as conseqüências econômicas de sete formas de conduta de CTN: diretorias entrosadas, indulgência mútua, controle de canais de suprimento, subsidiação mútua e predação, conluio formal e informal, vínculos políticos formais e comportamento de aquisição das CTNs. Conclui-se que nem as barreiras à entrada determinadas pela eficiência, nem as determinadas pela tecnologia são completamente satisfatórias para explicar o crescimento da participação do mercado transnacional; ao menos no caso da indústria de material elétrico do Brasil, o poder de mercado associado ao comportamento da CTN é igualmente, ou talvez mais, importante.