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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

Obten??o e caracteriza??o de um comp?sito de matriz polim?rica com carga de res?duos vegetal proveniente do sabugo de milho

Oliveira, Mariana Lima de 29 December 2015 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2016-07-22T15:34:02Z No. of bitstreams: 1 MarianaLimaDeOliveira_DISSERT.pdf: 1436779 bytes, checksum: b40fe8dddf1d23473972fa9553244479 (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2016-07-27T22:37:51Z (GMT) No. of bitstreams: 1 MarianaLimaDeOliveira_DISSERT.pdf: 1436779 bytes, checksum: b40fe8dddf1d23473972fa9553244479 (MD5) / Made available in DSpace on 2016-07-27T22:37:51Z (GMT). No. of bitstreams: 1 MarianaLimaDeOliveira_DISSERT.pdf: 1436779 bytes, checksum: b40fe8dddf1d23473972fa9553244479 (MD5) Previous issue date: 2015-12-29 / Foi estudada a viabilidade do uso do farelo do sabugo de milho para a obten??o de um comp?sito de matriz polim?rica. Foram utilizadas tr?s granulometrias e algumas formula??es entre os elementos constituintes do comp?sito, resina poli?ster e farelo do sabugo de milho e determinada qual a formula??o mais adequada levando-se em conta par?metros mec?nicos e t?rmicos. Para a obten??o do farelo, o sabugo passou pelo processo de secagem em secador solar e posteriormente foi triturado numa forrageira, obtendo-se diferentes granulometria atrav?s de peneiramento. Para a caracteriza??o do comp?sito ser?o determinadas propriedades t?rmicas e mec?nicas. A principal vantagem do comp?sito proposto foi sua baixa densidade, abaixo da relativa a resina, em torno de 1,06 Kg/m? para a formula??o com P? Grosso. O comp?sito apresentou comportamento mec?nico inferior ao da resina para todas as granulometrias e formula??es estudadas. Apresentou resultados melhores para a flex?o, alcan?ando 25,3 MPa para o P? Grosso. O comp?sito tamb?m se demonstrou vi?vel para aplica??es t?rmicas, com condutividade t?rmica inferior a 0,21 W/m, classificando-se como isolante t?rmico. Em termos de homogeneidade da mistura a granulometria mais vi?vel ? a PF 20%, que tamb?m apresentou melhor est?tica e uma melhor processabilidade. Tal comp?sito pode ser utilizado para a fabrica??o de estruturas que n?o requeiram significativa resist?ncia mec?nica, como por exemplo, mesas, cadeiras, pranchas, e prot?tipos solares e e?licos, como fornos e fog?es solares e p?s de aero geradores. / The feasibility of using the corn cob to obtain a polymer matrix composite was studied. To obtain the bran, corncob passed the drying process in a solar dryer, and was subsequently triturated in forage and to obtain the different particle sizes, by sieving. Three different grain sizes were used: fine particles (FP) size between 0,10 and 2mm; sized particles (PM) with sizes between 2,10 and 3,35 mm; large particles (PG) sizes between 3,45 and 4,10 mm. Using 20% of residue relative to the resin, the test samples were constructed for characterization of the composite, taking into account thermal and mechanical parameters. The main advantage of the proposed composite is that it has a low density, below the relative resin, about 1.06 kg / m? for the PG. The composite showed a mechanical behavior less than of the resin to the grain sizes and for all formulations studied. Showed better results for the bending, reaching 25.3 MPa for the PG. The composite also showed be feasible for thermal applications, with thermal conductivity less than 0.21 W / m, ranking as insulation. In terms of homogeneity of the mixture, the most viable grain size is the PF, which also showed improved aesthetics and better processability. This composite can be used to make structures that do not require significant mechanical strength, such as tables, chairs, planks, and solar and wind prototypes, such as ovens and cookers and turbines blades.

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