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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 comp?sito com PEAD reciclado e p? da casca da semente da planta Sombreiro (Clitoria fairchildiana)

Cabral, Isabel Cavalcanti 01 August 2016 (has links)
Submitted by Automa??o e Estat?stica (sst@bczm.ufrn.br) on 2017-02-20T22:32:00Z No. of bitstreams: 1 IsabelCavalcantiCabral_DISSERT.pdf: 3050113 bytes, checksum: 383bcdc049daf672f9e95cb2602b2eb2 (MD5) / Approved for entry into archive by Arlan Eloi Leite Silva (eloihistoriador@yahoo.com.br) on 2017-02-23T22:39:14Z (GMT) No. of bitstreams: 1 IsabelCavalcantiCabral_DISSERT.pdf: 3050113 bytes, checksum: 383bcdc049daf672f9e95cb2602b2eb2 (MD5) / Made available in DSpace on 2017-02-23T22:39:14Z (GMT). No. of bitstreams: 1 IsabelCavalcantiCabral_DISSERT.pdf: 3050113 bytes, checksum: 383bcdc049daf672f9e95cb2602b2eb2 (MD5) Previous issue date: 2016-08-01 / Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior (CAPES) / Atualmente vem crescendo a necessidade de aproveitamento dos res?duos gerados pela popula??o, como forma de criar materiais alternativos e de baixo custo, contribuindo assim para preserva??o do meio ambiente e aproveitamento dos recursos naturais. A fabrica??o de comp?sitos refor?ados com fibras vegetais e matriz polim?rica, tem sido uma alternativa para as ind?strias que buscam o aproveitamento de res?duos. O objetivo do presente trabalho foi desenvolver um comp?sito polim?rico com rejeito de polietileno como matriz e carga do p? da casca da semente da planta Sombreiro (Clitoria fairchildiana) nas propor??es de 2,5% e 5%, mostrando que pol?meros p?s consumo podem ser novamente aproveitados. As misturas pol?mero/carga foram produzidas atrav?s de uma extrusora, e em seguida os corpos de prova foram moldados por inje??o. Para caracterizar o comp?sito foram realizadas an?lises t?rmicas, medida do ?ndice de fluidez, determina??o da densidade, ensaio de dureza Shore D, resist?ncia ? tra??o, resist?ncia ao impacto Izod, microscopia eletr?nica de varredura (MEV) e absor??o de ?gua. Para os resultados reol?gicos, a viscosidade do comp?sito PE_rec A (Polietileno com adi??o de 2,5% de carga) diminuiu, j? o PE_rec B (Polietileno com adi??o de 5% de carga) aumentou. A massa especifica se manteve constante para todas as amostras e concentra??es. Como esperado a dureza do comp?sito foi proporcional ao percentual de carga que foi acrescentado, j? na resist?ncia m?xima a tra??o o comp?sito PE_rec A obteve um valor 2,3% menor comparado ao PE_rec Puro, o ensaio de impacto Izod mostrou que o comp?sito PE_rec A apresentou 444,30 J/m de energia absorvida durante o ensaio. Na an?lise por MEV foram observados a presen?a de vazios na microestrutura do material e a falta de ades?o matriz/carga em algumas regi?es do comp?sito polim?rico. O ensaio de absor??o de ?gua mostrou que para as duas concentra??es de carga natural o p? se mostrou n?o muito hidrof?lico. Com isso os resultados obtidos mostraram que o Polietileno reciclado pode ser processado novamente e o acr?scimo de carga ao comp?sito promoveu um ganho de economia de material sint?tico. / Currently it has increased the need for recovery of waste generated by the population as a way to create alternative and low-cost materials, thus contributing to preserving the environment and use of natural resources. The manufacture of composites reinforced with natural fibers and polymer matrix, has been an alternative for industries seeking the recovery of waste. The aim of this study was to develop a polymeric composite tailings as polyethylene matrix and load powder seed bark Sombreiro plant (Clitoria fairchildiana) in the proportions of 2.5% and 5%, showing that post-consumer polymers can be again used. Mixtures polymer / load were produced through an extruder, and then the samples were injection molded. To characterize the composite were performed thermal analysis, measurement of flow rate, density determination, hardness testing Shore D, tensile strength, Izod impact strength, scanning electron microscopy (SEM) and water absorption. For the rheological results, the viscosity of the composite PE_rec (polyethylene with addition of 2.5% load) has decreased since the PE_rec B (Polyethylene with addition of 5% load) has increased. The bulk density was kept constant for all samples and concentrations. As expected the hardness of the composite was proportional to the load percentage that has been added since the maximum tensile strength the PE_rec The composite obtained a 2.3% lower compared to PE_rec Pure, the Izod impact test showed that the composite PE_rec The presented 444.30 J/m energy absorbed during the test. In the analysis by SEM were observed the presence of voids in the microstructure of the material and the lack of adhesion matrix / load in some regions of the polymer composite. The water absorption test showed that for both natural load concentrations powder proved not very hydrophilic. Thus the results showed that the recycled polyethylene can be processed again and the composite load increase promoted a gain of synthetic material economy.

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