976 resultados para diâmetro de colmo
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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O trabalho objetivou comparar o ciclo cultural e a produção, além de avaliar atributos físico-químicos e sensoriais de frutos de bananeiras das cultivares Prata-Anã e Prata-Zulu, nas condições de Botucatu-SP. Foram avaliadas as seguintes características em campo: número de dias entre o plantio e o florescimento; número de dias entre o florescimento e a colheita; ciclo; peso do cacho; número de frutos por cacho; número de pencas por cacho; peso, número de frutos, comprimento e diâmetro dos frutos da 2ª penca. As análises físico-químicas foram realizadas no dia da colheita e a cada 3 dias, num período de 12 dias, sendo determinados: perda de massa, firmeza, relação polpa/casca, pH, acidez total titulável, e sólidos solúveis totais. Na análise sensorial, avaliou-se a aceitação dos atributos sabor, textura, aparência, aroma e apreciação geral dos frutos. Com os resultados obtidos, verificou-se que a cultivar Prata-Zulu apresentou produção bastante superior à 'Prata-Anã', o que indica ser uma cultivar com boas características agronômicas. Apesar de a cultivar Prata-Zulu apresentar maior perda de massa e menor firmeza, apresentou como vantagem frutos mais doces (maior SST); mesmo assim, a preferência do consumidor é pela 'Prata-Anã', que apresenta como principal vantagem as dimensões do fruto, que são menores, tornando-se assim mais práticos para o consumo.
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O experimento foi instalado com o objetivo de estudar o desempenho agronômico de cultivares de bananeira Prata-anã e Maçã, na região de São Manuel-SP. Foram avaliadas as seguintes características de desenvolvimento, no primeiro ciclo de produção: número de dias do plantio à floração e da mesma à colheita, número de rebentos (filhos) emitidos até o surgimento da inflorescência e na época da colheita, número de folhas ativas na época do aparecimento da inflorescência e da colheita, e características de rendimento, como peso médio do cacho, ráquis, penca e fruto, número médio de frutos por penca e cacho, comprimento e diâmetro médio dos frutos. Também foi avaliada a incidência de pragas e doenças. Foi empregado o delineamento inteiramente casualizado, com 2 tratamentos, 15 repetições e 5 plantas úteis por parcela experimental. As duas cultivares foram caracterizadas pelos valores das estatísticas descritivas, média e desvio-padrão, para as características de interesse no experimento. Foram estabelecidas possíveis correlações entre medidas de desenvolvimento e produção. As duas cultivares apresentaram ciclo do plantio até a colheita de 574 dias para 'Prata-anã' e 567 dias para 'Maçã', sendo que o ciclo produtivo foi maior na 'Prata-anã'. Não houve problemas de pragas e doenças em todo o ciclo de produção, nas duas cultivares avaliadas.
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O presente trabalho teve como objetivo avaliar as características de crescimento, produção e caracterizar alguns atributos de qualidade dos frutos do cultivar de bananeira-Figo-Cinza em dois ciclos de produção, nos anos de 2009 e 2010. Foram avaliadas características de crescimento, tais como altura da planta, circunferência do pseudocaule, número de folhas ativas, número de perfilhos e número de dias entre o florescimento e a colheita. Estas medidas foram feitas na emissão da inflorescência. Foram mensuradas também as características de produção, como peso do cacho, número de frutos, número de pencas, número, comprimento e diâmetro dos frutos da 2ª penca. em relação à qualidade dos frutos, foram analisados os atributos físicos e químicos: textura; pH; acidez titulável e sólidos solúveis. O delineamento adotado foi o inteiramente casualisado, com dois tratamentos (ciclos), cinco repetições e duas plantas úteis por parcela experimental. Foi utilizado o teste de Tukey (P< 0,05) para a comparação entre as médias. em geral, as características de crescimento e produção foram maiores no segundo ciclo, apresentando 134 dias do florescimento à colheita, circunferência do pseudocaule de 64,20 cm, altura de planta igual a 3,82 m e peso de cacho de 11,83 kg. Os atributos de qualidade não variaram entre os ciclos, exceto a textura, que foi maior no segundo ciclo, com valores médios de 993,31 gfcm-2.
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O presente trabalho objetivou avaliar a influência da adubação orgânica durante cinco safras, nas características de crescimento e produtividade de plantas de bananeira-'Prata-anã'. O experimento foi instalado no município de Botucatu-SP, em novembro de 2002, com mudas convencionais, adotando-se o espaçamento de 2,5 x 2,5 m, sendo as plantas adubadas com composto orgânico produzido a partir de serragem de madeira e esterco bovino devidamente compostados, que constituíram os tratamentos: 0; 43; 86; 129 e 172 kg de composto por planta, sendo estas doses de composto calculadas de acordo com o teor de potássio presente no composto. No florescimento das plantas em cada ciclo (2003, 2004, 2005, 2006 e 2007), foram medidas a circunferência do pseudocaule, a altura de inserção da inflorescência e determinou-se o número de folhas úteis por planta. Na colheita, foram determinados a massa do cacho, o número de frutos por cacho, o número de pencas por cacho, a massa da 2ª penca, o número de frutos na 2ª penca, o comprimento e o diâmetro de frutos da 2ª penca. As doses de composto orgânico não causaram alterações nas características de crescimento das plantas; contudo, em função dos ciclos avaliados, foi possível observar queda no número de folhas a partir do segundo ciclo e alterações na altura de plantas e circunferência do pseudocaule. No presente trabalho, onde as doses de K2O oscilaram entre zero e 394 g por planta, os cachos com massa mais elevada foram obtidos com as duas maiores quantidades de compostos aplicadas, o que, economicamente, indica como a melhor dose a ser recomendada a de 129 kg de composto por planta, que fornece 290,5 g de K2O por planta.
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Fuel is a material used to produce heat or power by burning, and lubricity is the capacity for reducing friction. The aim of this work is evaluate the lubricity of eight fossil and renewable fuels used in Diesel engines, by means of a HFRR tester, following the ASTM D 6079-04 Standard. In this conception, a sphere of AISI 52100 steel (diameter of 6,000,05 mm, Ra 0,050,005 μm, E = 210 GPa, HRC 624, HV0,2 63147) is submitted to a reciprocating motion under a normal load of 2 N and 50 Hz frequency to promote a wear track length of 1.10.1mm in a plan disc of AISI 52100 steel (HV0,05 18410, Ra 0,020,005 μm). The testing extent time was 75 minutes, 225,000 cycles. Each one test was repeated six times to furnish the results, by means of intrinsic signatures from the signals of the lubricant film percentage, friction coefficient, contact heating, Sound Pressure Level, SPL [dB]. These signal signatures were obtained by two thermocouples and a portable decibelmeter coupled to a data acquisition system and to the HFRR system. The wettability of droplet of the diesel fuel in thermal equilibrium on a horizontal surface of a virgin plan disc of 52100 steel, Ra 0,02 0,005 μm, were measured by its contact angle of 7,0 3,5o, while the results obtained for the biodiesel B5, B20 and B100 blends originated by the ethylic transesterification of soybean oil were, respectively, 7,5 3,5o, 13,5 3,5o e 19,0 1,0o; for the distilled water, 78,0 6,0o; the biodiesel B5, B20 and B100 blends originated by the ethylic transesterification of sunflower oil were, respectively, 7,0 4,0o, 8,5 4,5o e 19,5 2,5o. Different thickness of lubricant film were formed and measured by their percentage by means of the contact resistance technique, suggesting several regimes, since the boundary until the hydrodynamic lubrication. All oils analyzed in this study promoted the ball wear scars with diameters smaller than 400 μm. The lowest values were observed in the scar balls lubricated by mixtures B100, B20 and B5 of sunflower and B20 and B5 of soybean oils (WSD < 215 μm)
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The growing demand in the use of hybrid composite materials makes it essential a better understanding of their behavior face of various design conditions, such as the presence of geometric discontinuities in the cross section of structural elements. This way, the purpose of this dissertation is a study of the mechanical response (strength and stiffness), modes (characteristics) of fracture and Residual Strength of an hybrid polymeric composite with and without a geometric discontinuity in its longitudinal section (with a reduction in the cross section) loaded by uniaxial tension. This geometric discontinuity is characterized by central holes of different diameters. The hybrid composite was fabricated as laminate (plate) and consisting of ortho-tereftalic polyester matrix reinforced by 04 outer layers of Jute fibers bidirectional fabrics and 01 central layer of E-glass bidirectional fabric. The laminate was industrially manufactured (Tecniplas Nordeste Indústria e Comércio Ltda.), obtained by the hand lay-up technique. Initially, a study of the volumetric density of the laminate was made in order to verify its use in lightweight structures. Also were performed comparative studies on the mechanical properties and fracture modes under the conditions of the specimens without the central hole and with the different holes. For evaluating the possible influence of the holes in the structural stability of the laminate, the Residual Strength of the composite was determined for each case of variation in hole diameter. As a complementary study, analyses of the macroscopic final fracture characteristic of the laminates were developed. The presence of the central hole of any sizes, negatively changed the ultimate tensile strength. Regarding the elastic modulus, moreover, the difference found between the specimens was within the range of tests displacement, showing the laminate stability related to the stiffness
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Concern for the environment and the exploitation of natural resources has motivated the development of research in lignocellulosic materials, mainly from plant fibers. The major attraction of these materials include the fact that the fibers are biodegradable, they are a renewable natural resource, low cost and they usually produce less wear on equipment manufacturing when compared with synthetic fibers. Its applications are focused on the areas of technology, including automotive, aerospace, marine, civil, among others, due to the advantageous use in economic and ecological terms. Therefore, this study aims to characterize and analyze the properties of plant fiber macambira (bromelia laciniosa), which were obtained in the municipality of Ielmo Marino, in the state of Rio Grande do Norte, located in the region of the Wasteland Potiguar. The characterization of the fiber is given by SEM analysis, tensile test, TG, FTIR, chemical analysis, in addition to obtaining his title and density. The results showed that the extraction of the fibers, only 0.5% of the material is converted into fibers. The results for title and density were satisfactory when compared with other fibers of the same nature. Its structure is composed of microfibrils and its surface is roughened. The cross section has a non-uniform geometry, therefore, it is understood that its diameter is variable along the entire fiber. Values for tensile strength were lower than those of sisal fibers and curauá. The degradation temperature remained equivalent to the degradation temperatures of other vegetable fibers. In FTIR analysis showed that the heat treatment may be an alternative to making the fiber hydrophobic, since, at high temperature can remove the hemicellulose layer, responsible for moisture absorption. Its chemical constitution is endowed with elements of polar nature, so their moisture is around 8.5% which is equivalent to the percentage of moisture content of hydrophilic fibers. It can be concluded that the fiber macambira stands as an alternative materials from renewable sources and depending on the actual application and purpose, it may achieve satisfactory results
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Avaliou-se a patogenicidade do isolado IBCB 473 de Verticillium lecanii no pulgão-do-pinus Cinara atlantica (Hemiptera, Aphididae), inseto-praga em plantios de Pinus spp. O delineamento experimental utilizado foi o inteiramente casualizado, com cinco repetições por tratamento e cada repetição constituída de uma placa de Petri (9 cm de diâmetro) contendo 10 ninfas. Foram testadas suspensões de inóculo nas concentrações de 1,0 ' 10(6); 0,5 ' 10(7); 1,0 ' 10(7); 0,5 ' 10(8); e 1,0 ' 10(8) conídios/mL, pulverizando-se 1 mL sobre as ninfas. Como tratamento-testemunha, utilizou-se água esterilizada. As placas de Petri foram mantidas em câmara climatizada a 25 ± 1 °C, 70 ± 10% de UR e fotofase de 12 horas. As avaliações foram realizadas diariamente, anotando-se a mortalidade dos indivíduos de cada tratamento. A dose mais eficiente foi de 1,0 x 10(8) conídios/mL, causando mortalidade de 86,0% após cinco dias da pulverização. Os valores de TL50 das concentrações utilizadas foram de 5,82; 5,24; 4,60; 4,34; e 3,83 dias, respectivamente.
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Com o objetivo de avaliar o efeito do manejo do solo na estabilidade de agregados de um Nitossolo Vermelho distroférrico, localizado na Fazenda Experimental Lageado da FCA/UNESP, em Botucatu - SP, amostraram-se, em outubro de 2001, três sistemas de manejo de solo: (i) mata (MA), (ii) preparo convencional por 10 anos seguido de semeadura direta por 12 anos (PC/SD) e (iii) preparo convencional por 22 anos (PC), em quatro camadas: 0,0-0,10; 0,10-0,20; 0,20-0,30 e 0,30-0,40 m. O delineamento experimental empregado foi o inteiramente casualizado, com três repetições. As amostragens foram feitas após a cultura do milho (safra 2000-2001). As amostras foram submetidas às análises físicas e químicas, e as médias, comparadas pelo teste de Tukey. O diâmetro médio ponderado dos agregados (DMP), o índice de estabilidade dos agregados (IEA) e a percentagem de agregados em classes de diâmetro médio foram obtidos com os resultados do peneiramento obtidos pelo método por via úmida. O diâmetro médio ponderado e o índice de estabilidade dos agregados foram menores para o preparo convencional do solo. Os três sistemas de manejo apresentaram maior percentagem de agregados com diâmetro entre 7,93 e 2,00 mm. A substituição do preparo convencional pela semeadura direta favoreceu a estabilidade dos agregados do solo. O diâmetro médio ponderado, o índice de estabilidade de agregados e a percentagem de agregados por classe de diâmetro médio evidenciaram diferenças entre os sistemas de manejo do solo.
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Many applications require that the plasma discharge is produced apart from the surface to be processed, thus preventing damage caused by bombardment and/or plasma radiation. In the post-discharge regime in various applications thermally sensitive materials can be used. In this work, active species produced by discharge and post-discharge hollow cathode were diagnosed by optical emission spectroscopy and mass spectrometry. The discharge was produced with the gases Ar and Ar - N2 gas flow ranging from 1 to 6 cm3/min and electric current between 150 to 600 mA. It was estimated that the ion density inside the hollow cathode, with 2 mm diameter ranged between 7.71 and 14.1 x 1015 cm-3. It was observed that the gas flow and the electric current changes the emission intensity of Ar and N2 species. The major ionic species detected by quadrupole mass spectrometry were Ar+ and N2+. The ratio of optical emission intensities of N2(1 +)/Ar(811 nm) was related to the partial pressure of N2 after the hollow cathode discharge at low pressure
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The technique of ion nitriding, despite being fully consolidated in the industry, has great limitations when applied to the treatment of small parts. This is because effects that occur due to non-uniformity of the electric field, generate localized heating in parts, damaging the uniformity of nitrided layer. In addition, because the samples are treated static parts thereof are untreated. To expand the use of plasma nitriding, this work presents the development, assembly and testing of a prototype plasma reactor with rotatory cathodic cage [patent pending], able to meet these needs, giving the material a uniform treatment and opening doors to industrial scale production. The samples tested with hexagonal nuts are 6.0 mm in diameter, made of stainless steel AISI 304 nitrided at a pressure of 1 mbar in an atmosphere of 20% H2 + 80% N2 for 1 h. After treatment, testing visual inspection, optical microscopy and microhardness were carried out to check the effectiveness of the process for uniformity and hardness of the parts. All samples exhibited uniform color, and matte brownish, unlike the untreated samples, silver color and gloss. The hardness of the surface (top and sides) was 65% and even higher than the original hardness. The nitrided layer showed great uniformity in microstructure and thickness. It is concluded, therefore, that the unit was effective constructed for the purposes for which it was designed
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Some fibrous materials, for having properties such as biocompatibility, strength and flexibility, are of great interest for medical and pharmaceutical applications. Among these materials, the fabric made from polylactic acid (PLA) has received special attention, and beside to present these features, is derived from biological source, antimicrobial and bioabsorbable. One of the limitations of PLA is its low wettability and capillarity. Due to this, it is necessary to perform surface modification of the knitted fabric, increasing its hydrophilicity. This work aims to realize the plasma treatment at low pressure in order to increase the surface energy of the polymer. The work was divided into three steps: i) Influence of the gas ratio (oxygen and nitrogen) in the surface modification of PLA fabric after the plasma treatment, ii) physical characterization and physicochemical surface tissue; iii) Evaluation of the effect from current and gas ratio in the capillary rise of tissues and iv) Study of capillarity in yarns and fabrics. The results showed that better gas ratios were the atmospheres: 100% oxygen; 100% nitrogen and 50% oxygen and 50% nitrogen. The surface characterization showed changes in topography and introduction of polar groups which increased the wettability of the fabric. In another part of this study, it was found that the atmosphere containing only nitrogen gas showed the most capillary rise to a current of 0.15 A. The results in capillary yarns and fabrics showed that the thread reached equilibrium in a time much less than the fabric to an atmosphere of 100% nitrogen and 0.15 A. Current Plasma technology was effective to increase the hydrophilicity of PLA fabric, providing surface characteristics favorable for future application in the biomedical field
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In machining of internal threads, dedicated tools, known as taps, are needed for each profile type, diameter, and low cutting speed values are used when compared to main machining processes. This restriction in the cutting speed is associated with the difficulty of synchronizing the tool s rotation speed and feed velocity in the process. This fact restricts the flexibility and makes machining lead times longer when manufacturing of components with threads is required. An alternative to the constraints imposed by the tap is the thread milling with helical interpolation technique. The technique is the fusion of two movements: rotation and helical interpolation. The tools may have different configurations: a single edge or multiple edges (axial, radial or both). However, thread milling with helical interpolation technique is relatively new and there are limited studies on the subject, a fact which promotes challenges to its wide application in the manufacturing shop floor. The objective of this research is determine the performance of different types of tools in the thread milling with helical interpolation technique using hardened steel workpieces. In this sense, four tool configurations were used for threading milling in AISI 4340 quenched and tempered steel (40 HRC). The results showed that climb cut promoted a greater number of machined threads, regardless of tool configuration. The upcut milling causes chippings in cutting edge, while the climb cutting promotes abrasive wear. Another important point is that increase in hole diameter by tool diameter ratio increases tool lifetime