957 resultados para Expanded polystyrene


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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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In the last decades there was a concentrate effort of researchers in the search for options to the problem of the continuity of city development and environmental preservation. The recycling and reuse of materials in industry have been considerate as the best option to sustainable development. One of the relevant aspects in this case refers to the rational use of electrical energy. At this point, the role of engineering is to conceive new processes and materials, with the objective of reducing energy consumption and maintaining, at the same time the benefits of the technology. In this context, the objective of the present research is to analyze quantitatively the thermal behavior of walls constructed with concrete blocks which composition aggregates the expanded polystyrene (EPS) reused in the shape of flakes and in the shape of a board, resulting in a “light concrete”. Experiments were conducted, systematically, with a wall (considerate as a standard) constructed with blocks of ordinary concrete; two walls constructed with blocks of light concrete, distinct by the proportion of EPS/sand; a wall of ceramic bricks (“eight holes” type) and a wall with ordinary blocks of cement, in a way to obtain a comparative analysis of the thermal behavior of the systems. Others tests conducted with the blocks were: stress analysis and thermal properties analysis (ρ, cp e k). Based on the results, it was possible to establish quantitative relationship between the concentration (density) of EPS in the constructive elements and the decreasing of the heat transfer rate, that also changes the others thermal properties of the material, as was proved. It was observed that the walls of light concrete presents better thermal behavior compared with the other two constructive systems world wide used. Based in the results of the investigation, there was shown the viability of the use of EPS as aggregate (raw material) in the composition of the concrete, with the objective of the fabrication of blocks to non-structural masonry that works as a thermal insulation in buildings. A direct consequence of this result is the possibility of reduction of the consume of the electrical energy used to climatization of buildings. Other aspect of the investigation that must be pointed was the reuse of the EPS as a raw material to civil construction, with a clear benefit to reducing of environmental problems

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It presents a solar collector to be used in a system for heating water for bathing, whose main characteristics are its low cost and easy manufacturing and assembly. The absorbing surface of the collector is formed by an aluminum plate with eight flaps where they lodge PVC pipes. The catchment area of solar radiation corresponds to 1.3 meters. The collector box was made of wood, is covered by transparent glass and thermal insulation of tire chips and expanded polystyrene (EPS). Absorber tubes were connected in parallel through the use of PVC fittings and fixed to the plate by the use of metal poles and rivets. The entire absorber received paint flat black for better absorption of sunlight. The system worked on a thermosiphon assembly and absorber of the collector has been tested in two configurations: with the tubes facing up, directly exposed to the impact of sunlight and facing down, exchanging heat with the plate by conduction. It was determined the most efficient configuration for the correct purpose. The solar collector was connected to a thermal reservoir, also alternative, low-cost forming the system of solar water heating. We evaluated thermal parameters that proved the viability of the heating system studied

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New materials made from industrial wastes have been studied as an alternative to traditional fabrication processes in building and civil engineering. These materials are produced considering some issues like: cost, efficiency and reduction of nvironmental damage. Specifically in cases of materials destined to dwellings in low latitude regions, like Brazilian Northeast, efficiency is related to mechanical and thermal resistance. Thus, when thermal insulation and energetic efficiency are aimed, it s important to increase thermal resistance without depletion of mechanical properties. This research was conducted on a construction element made of two plates of cement mortar, interspersed with a plate of recycled expanded polystyrene (EPS). This component, widely known as sandwich-panel, is commonly manufactured with commercial EPS whose substitution was proposed in this study. For this purpose it was applied a detailed methodology that defines parameters to a rational batching of the elements that constitute the nucleus. Samples of recycled EPS were made in two different values of apparent specific mass (ρ = 65 kg/m³; ρ = 130 kg/m³) and submitted to the Quick-Line 30TM that is a thermophysical properties analyzer. Based on the results of thermal conductivity, thermal capacity and thermal diffusivity obtained, it was possible to assure that recycled EPS has thermal insulation characteristics that qualify it to replace commercial EPS in building and civil engineering industry

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Fresh cut cassava is an alternative to prolong roots commercialization period, adding value to the raw material and assisting the consumer's needs that seeks for products of easy preparation. The aim of this work was to evaluate the quality of fresh cut cassava subjected to gamma radiation. For processing cassava roots (IAC - 567-70) were used, after preparation were packed in expanded polystyrene (EPS) trays, covered by low density polyethylene (LDPE) plastic film, being subjected to gamma radiation in the doses 0 (control), 0.5; 1.0; 1.5; 2.0 KGy. Another treatment was also carried out in which roots were vacuum packed in nylon + polyethylene. Packed roots of all treatments were stored under refrigeration (5 +/- 1 degrees C) and evaluations were made after 0, 3, 6, 9 and 12 days. Evaluated analyses were: titrable acidity, pH, firmness, coloration, polyphenoloxidase activity, cooking time and roots hydration percentage. Evaluations just proceeded until the nine storage day, because after this period the roots already presented visually detectable physiologic and microbiological alterations. For titrable acidity, the vacuum packed roots had the lowest values, followed by the control packed in trays. For the other treatments, values of acidity increased and influenced the pH values. For the other appraised parameters there was no significant difference among treatments, but alterations were observed with the storage. The firmness decreased with the storage. Brightness values and yellow color component decreased with the storage and the b * (green) color values increased. Polyphenoloxidase activity was maximum in the day of elaboration of the product and it decreased with the storage. Cooking time and roots hydration percentage decreased with the roots storage.

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Portuguese chestnut (Castanea sativa) is used for forest products, raw nuts and processed flour, paste, and candy. We studied the influence on germination efficiency of seed with and without partial tegument removal combined with different substrate composition (coconut fiber, pine compost and vermiculite) at São Paulo State University, Campus of Botucatu, São Paulo, Brazil. Randomized blocks were used in a factorial scheme 3x2 (three substrates x two seed types) consisting of six treatments with five replications (twelve seeds). Seeds were sowed in expanded polystyrene trays, with 72 cells, and maintained at 25 C under controlled environment. Rate, time elapsed and speed of seed germination was submitted to ANOVA and the average compared using Tukey's 5% test of probability and curves adjusted based on Gompertz regression. Coconut fiber or vermiculite associated with seed without partial tegument removal showed the highest germination rate, and coconut fiber with or without partial tegument removal displayed the fastest speed of seed germination.

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Objetivando-se avaliar o desempenho de dois genótipos de soja-hortaliça de ciclo precoce [Glycine max (L.) Merril], em diferentes densidades, foi instalado um ensaio, em área experimental do Setor de Olericultura e Plantas Aromático-Medicinais, pertencente ao Departamento de Produção Vegetal, nas dependências da Faculdade de Ciências Agrárias e Veterinárias (FCAV-UNESP), Campus de Jaboticabal-SP. O delineamento experimental foi o de parcelas subdivididas, adotando-se nas parcelas os genótipos e nas subparcelas as densidades, com quatro repetições por tratamento. Cada parcela experimental foi constituída por quatro linhas de 4,5m de plantio, com densidades de 20, 10 e 7 plantas por metro e 0,60m nas entrelinhas, sendo consideradas para avaliação 20 plantas por parcela, das duas linhas centrais. As sementes foram semeadas em bandejas de poliestireno expandido de 128 células, contendo substrato Plantmax Hortaliças®. O transplantio ocorreu dez dias após a semeadura, em solo devidamente preparado, conforme recomendações para a cultura. A colheita foi realizada quando os legumes estavam em estádio reprodutivo R6. Avaliaram-se os genótipos JLM010 e CNPSOI quanto às características: número médio de legumes por planta, número médio de sementes por legume, massa fresca de 100 sementes e produtividade estimada de grãos imaturos. Com base nos resultados obtidos concluiu-se que o genótipo JLM010 é o mais recomendado e deve ser plantado na densidade de 7 plantas por metro.

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This research work develops new methods to produce biodegradable starch-based trays for the purpose of replacing expanded polystyrene in the food packaging market. The starch based biopolymers present several drawbacks like poor mechanical properties and very high density. In order to overcome these drawbacks two research lines have been set up: blending thermoplastic starch with biobased reinforcements from agricultural wastes like barley straw and grape wastes, and testing the foamability of these materials with a Microwave-foaming method.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Lajes lisas nervuradas bidirecionais são elementos estruturais de concreto armado apoiados diretamente sobre pilares, sujeitas a solicitações importantes nas duas direções, possibilitam maior velocidade na execução da obra e economia considerável de formas e concreto e, conseqüentemente, mão-de-obra. Este trabalho visa contribuir para o estudo do comportamento deste tipo de laje, quanto a resistência ao cisalhamento nas nervuras e à punção na região maciça das lajes, através de ensaios de 8 lajes lisas nervuradas bidirecionais de concreto armado. Foram realizadas análises comparativas entre os resultados obtidos experimentalmente e os fornecidos por normas técnicas nacionais e internacionais. As lajes eram quadradas de lado igual a 1.800 mm de comprimento e altura total de 140 mm. A seção transversal das lajes foi formada por nervuras de 50 mm de largura na base menor e 100 mm na base maior e os vazios entre as nervuras foram preenchidos com blocos de EPS (poliestireno expandido). As principais variáveis consideradas foram o tipo de armadura de cisalhamento nas nervuras (treliça, estribo vertical fechado e estribo aberto inclinado a 45) e a utilização de estribo aberto inclinado a 45 como armadura de punção na região maciça. Foram apresentados e analisados os resultados observados para os deslocamentos verticais, deformação nas armaduras de cisalhamento e de flexão, e a propagação das fissuras. Os valores observados para cargas últimas foram comparados com os resultados estimados. Observou-se que as armaduras de cisalhamento nas nervuras não ocasionaram ganhos significativos na resistência última e que a armadura de punção elevou significativamente a resistência das lajes.

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Pós-graduação em Engenharia Mecânica - FEG

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In this work polymeric composites reinforced with cotton fibers, from the textile industry, were developed in order to manufacture printed circuit boards. It was used expanded polystyrene (EPS) as a thermoplastic matrix by melting it. For the obtention of 10% and 15% of fiber volume fraction in cotton fibers composites, it was used wasted cotton fibers as an incentive of recycling and reusing of the domestic and industrial wastes as well as for Expanded Polystyrene(EPS). The mechanical properties of the composites were evaluated by tensile and flexural strength from standardized test methods. Composites were characterized by a Scanning Electron Microscopy (SEM), Thermogravimetry (TG/DTG), Differential Scanning Calorimetry (DSC) and dielectric analysis. The analysis of the results showed that fiber in the composite directly influenced in the thermal and mechanical properties