178 resultados para Dendrocalamus giganteus


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Pós-graduação em Engenharia Mecânica - FEB

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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The focus of this research was to study the utilization of residues from bamboo (Dendrocalamus giganteus) lamination in the manufacturing of panels for structural purposes. Bamboo particleboards were produced under three conditions: pure boards, reinforced with bamboo laminas, and with treated particles. Castor oil-based polyurethane was the resin binder, in view of using lower toxicity materials. The mechanical tests were performed according to Brazilian Standard (NBR) 14810-3 (2006) and European Standard (EN) 310 (2000). The results were superior to those recommended by these and other standards for internal adhesion resistance, modulus of rupture, and elasticity in static bending, as well as to the results of other studies. Starch treatment was an unnecessary stage. According to the conditions of this process, the studied panels showed a good potential for construction use. Moreover, the bamboo particleboards are an economically viable, environmentally friendly, and sustainable alternative for the use of waste generated during the processing of Dendrocalamus giganteus bamboo species, allied with castor oil-based polyurethane resin. The reinforced particleboard and its production process are being licensed as an Innovation Patent in Brazil, (BR 1020130133919-1-2013).

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Despite countless use possibilities for bamboo, this material has two major disadvantages. One drawback is the low natural durability of most bamboo species due to presence of starch in their parenchyma cells. The other equally important drawback is the tendency bamboo has to present dimensional variations if subjected to environmental change conditions. In an attempt to minimize these inconveniences, strips (laths) of Dendrocalamus giganteus Munro were taken from different portions of the culm and subjected to several temperatures, namely 140 degrees C, 180 degrees C, 220 degrees C, 260 degrees C and 300 degrees C under laboratory conditions, at the ESALQ-USP college of agriculture. The thermal treatment process was conducted in noninert and inert atmospheres (with nitrogen), depending on temperature Specimens were then subjected to physicomechanical characterization tests in order to determine optimum thermal treatment conditions in which to preserve to the extent possible the original bamboo properties. Results revealed that there is an optimum temperature range, between 140 degrees and 220 degrees C, whereby thermally treated bamboo does not significantly lose its mechanical properties while at the same time showing greater dimensional stability in the presence of moisture.

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RESUMOO objetivo deste trabalho foi avaliar a resistência de bambus das espécies Bambusa vulgaris e Dendrocalamus giganteus após serem expostos a três métodos de tratamentos químicos preservativos, contra a ação dos fungos Postia placenta e Polyporus fumosus. Os métodos de tratamento empregados foram o de transpiração (diafragma íntegro e rompido), imersão prolongada e Boucherie modificado. As hastes de bambu foram transformadas em colmos de 2,0 m de comprimento e tratadas em solução de 1 ou 3% de ingredientes ativos (i.a.) de um produto comercial à base de cobre, cromo e boro (CCB). Nos métodos por transpiração e imersão prolongada, os colmos foram expostos nas soluções por períodos de 5, 10 ou 15 dias, enquanto no método de Boucherie modificado não houve segregação do tratamento entre tempos de tratamento. Para avaliar a eficiência dos tratamentos, foram empregados os fungos Postia placenta e Polyporus fumosus. A partir dos resultados, observou-se que, em média, em ambas as espécies de bambu tratadas e métodos empregados, a perda de massa das amostras de bambu, depois de submetidas ao ataque dos fungos, foi baixa, tendo variado de 2,44 a 14,26%.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Este trabalho faz parte das exigências relativas a obtenção do título de livre docente na Universidade Estadual Paulista-Unesp. O projeto foi iniciado em 1994 com a introdução de espécies de bambu no campus local da Unesp visando o fornecimento de matéria-prima/colmos conhecida para estudos. Num processo contínuo, o projeto vem se desenvolvendo tecnicamente através de várias atividades ligadas a cadeia produtiva desta planta, envolvendo o acompanhamento do desenvolvimento das espécies, seu manejo, colheita, produção de mudas, tratamento, processamento, caracterização e aplicações. Estabelecido na Faculdade de Engenharia, o projeto naturalmente se aproximou das áreas de design e arquitetura, sendo estabelecida numa relação com estes cursos nos níveis de graduação e pós-graduação, com a participação e formação de alunos. Com aspecto multidisciplinar o projeto também procurou atuar na extensão universitária e na inserção social procurando transferir os conhecimentos adquiridos para a sociedade. Justifico a extensão do trabalho e o grande número de tabelas (deslocadas para os Anexos) e figuras mostrados pois na verdade o projeto procura mostrar a atuação em várias atividades: plantio de espécies, produção, manejo e acompanhamento do desenvolvimento, caracterização, processamento e desenvolvimento de produtos e aplicações, relação com alunos de graduação, pós-graduação e atividades de extensão. Relativamente ao trabalho de campo, foram introduzidas diversas espécies de bambu, sendo mostrados os dados de desenvolvimento, manejo e produção para duas delas, as espécies Dendrocalamus giganteus e Guadua angustifólia, ambas prioritárias, de fácil cultivo e produção de mudas e largamente utilizadas. Relativamente ao trabalho de laboratório, os colmos foram processados...

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The objective of this study was to evaluate the density, density profile, water swelling and absorption, modulus of elasticity and rupture from static bending, and tensile strength of experimental medium-density fiberboards manufactured using Dendrocalamus giganteus (Munro bamboo). The fiber production was carried out through the chemo-thermo-mechanical pulping process with four different conditions. The panels were made with 10% urea formaldehyde resin based on dry weight of the fibers, 2.5% of a catalyzer (ammonium sulfate) and 2% paraffin. The results indicate that treatments with the highest alkali (NaOH) percentage, time and splinter heating temperature improved the physical properties of the panels. The root-fiber interface was evaluated through scanning electron microscopy in fracture zones, which revealed fibers with thick, inflexible walls. The panels' mechanical properties were affected due to the fiber wall characteristics and interaction with resin. Giant bamboo fiber has potential for MDF production, but other studies should be carried out.

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

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Bamboo has been studied because of its peculiar mechanical properties and numerous possibilities of use, besides being a fast-growing grass and short cutting cycle. This study aimed to analyze the mechanical characteristics of wood-bamboo composite material, where the samples were developed from the combination of layers of bamboo as a structural reinforcement in solid pieces of pine and EGP panel parts. The species of wood used was Pinus taeda, and the bamboo species Guadua angustifolia and Dendrocalamus giganteus. All work was conducted at the Universidade Estadual Paulista - UNESP in the laboratory of Physical and Mechanical Properties of Wood. Tests including the density and tension parallel to grain of the bamboo species used and the static bending of composites in order to use this in the furniture industry. For the tests have been used as a basis the requirements of the normative document NBR 7190/97. The values obtained in the tests showed a significant increase in strength and stiffness compared to unreinforced parts, where there was an increase in MOE and MOR in static bending in all specimens used in evidence. The results showed the possibility of reducing sections in furniture components and the possibility of improving the mechanical properties of parts with defects found in wood of Pinus Itapeva region of São Paulo

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The objective of this work was to evaluate the effect of the addition of bamboo laminas of the species Dendrocalamus giganteus to three-layer medium density particleboard (MDP). These laminas were glued onto both the top and the bottom of each panel. With the manufactured panels laminated with bamboo, mechanical tests based on the Brazilian Standard ABNT NBR 14810 were carried out to determine the modulus of rupture (MOR) in static bending and the tensile strength parallel-to-surface. These mechanical tests were realized in particleboards of eucalyptus and in reinforced particleboard, both produced in the laboratory. The modulus of rupture and tensile strength parallel-to-surface of the laminated MDP had values close to those that have been reported. The reinforcements increased the values of these studied properties. Nevertheless, this fact indicated the possibility to produce a stronger MDP using bamboo lamina as surface layers. These results show the possibility of using coatedbamboo MDP for utilization in large spans, for example, in flooring for mezzanines with finish on both sides, and for robust furniture as bookshelves, beds, tables, etc.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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A produção de produtos derivados de madeira e bambu vem crescendo nos últimos anos na busca de um aproveitamento mais racional dessas matériasprimas. Este trabalho tem por finalidade, o estudo da aplicação de resíduos do processamento do café em um painel MDP. Os painéis MDP foram produzidos com partículas de bambu da espécie Dendrocalamus giganteus e adição de partículas de casca de café na camada intermediária do painel, unidas por resina poliuretana à base de mamona. A caracterização físico-mecânica foi realizada baseando-se nas especificações da NBR 14810-3 (2006). Os resultados obtidos foram comparados com a norma brasileira NBR 14810-2 (2006), resultando em valores próximos aos comercialmente encontrados.

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The bamboo waste can be an alternative material to sustain the crescent demand for particleboards, also bringing ecological benefits as reduction of the pressure for raw materials and landfill space demands. In this context, this research aimed to manufacture and determine some physical and mechanical properties of particleboards with bamboo waste particles (Dendrocalamus giganteus), obtained from different sources, bonded with four different percentages of urea–formaldehyde (UF) based resin (6%, 8%, 10% and 12% related to dry material of particles). Response variables investigated were: density; moisture content; thickness swelling in 2 and 24 hours; water absorption in 2 and 24 hours; internal adhesion (STpe); strength in tension parallel to faces (STpa); modulus of elasticity (MOE) and modulus of rupture (MOR). Results permitted to conclude that particleboards as mentioned showed good performance only in the physical properties requirements imposed by Brazilian Standard NBR 14810, but this was not observed to mechanical properties considered. New researches are needed in order to optimize the producing process parameters.