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Mémoire de Maîtrise
DOI
https://doi.org/10.11606/D.97.2011.tde-27082013-103658
Document
Auteur
Nom complet
Fabíola Silva Ottoboni
Adresse Mail
Unité de l'USP
Domain de Connaissance
Date de Soutenance
Editeur
Lorena, 2011
Directeur
Jury
Silva, Maria Lúcia Caetano Pinto da (Président)
Saron, Clodoaldo
Scuracchio, Carlos Henrique
Titre en portugais
Desenvolvimento de novos compósitos baseados em polietileno e híbridos gerados a partir de resíduos agrícolas modificados com óxido de nióbio
Mots-clés en portugais
celulose
compositos
hibridos
oxido de niobio hidratado
polietileno de baixa densidade
Resumé en portugais
As fibras naturais estao ganhando espaco no mercado como materia-prima por apresentarem caracteristicas desejaveis para aplicacoes industriais, por ser um material renovavel, biodegradavel e de baixo custo. Neste sentido, a exploracao da celulose vem crescendo, inclusive no estudo de compositos polimericos reforcados com fibras naturais. Este trabalho visa primeiramente a obtencao de hibridos celulose/oxido de niobio hidratado a partir do tratamento e modificacao do bagaco de cana-de-acucar, e posteriormente a geracao de compositos de matriz de polietileno de baixa densidade (PEBD) e carga de celulose modificada. O Nb2O5.nH2O foi gerado pelo metodo da precipitacao convencional, partindo-se de niobio metalico. Os hibridos foram produzidos nas proporcoes de 10, 20, 30 e 40% de oxido e caracterizados utilizando-se as seguintes tecnicas: difracao de raios X (DRX), espectroscopia de absorcao no infravermelho com transformada de Fourier (FTIR), termogravimetria (TG), calorimetria exploratoria diferencial (DSC) e microscopia eletronica de varredura (MEV). Os resultados indicam que houve boa interacao entre a fibra de celulose e o oxido de niobio hidratado em todas as proporcoes estudadas. Pelas curvas DSC em atmosfera oxidativa pode-se observar que o Nb2O5.nH2O agiu como um agente retardante a chamas. A proporcao do hibrido definida para a geracao dos compositos foi 90Cel/10Nb2O5.nH2O. Inicialmente foram fabricados os compositos reforcados apenas com celulose branqueada, (x)PEBD/(100-x)Cel, com x = 5, 10, 15 e 20, e realizado o estudo de suas propriedades fisico-quimicas: FTIR, TG, DSC, MEV; e dos testes mecanicos. A partir dos dados obtidos definiu-se a proporcao 5% de reforco para a geracao dos compositos reforcados com o hibrido, 95PEBD:5Cel/Nb2O5.nH2O, e tambem com a adicao do agente compatibilizante: polietileno modificado com anidrido maleico (PE-g-AM), 95PEBD:5Cel/Nb2O5.nH2O+5PE-g-AM. A insercao das fibras de celulose a matriz polimerica gera um material mais resistente e rigido e com menor deformacao, assim como a presenca do Nb2O5.nH2O. O PE-g-AM aumenta o valor do modulo elastico. A utilizacao de uma menor granulometria de carga promove uma maior dispersao e uniformidade da celulose da matriz. A dispersao das fibras na matriz dificulta o processo migracao das cadeias moleculares do PEBD, diminuindo o grau de cristalinidade. Os valores de ?Hf mostram que a adicao do inorganico enfraquece a interacao interfacial da matriz com o reforco, diminuindo a ?Hf e a XC. A presenca do Nb2O5.nH2O nos compositos gera um aumento da Tf.
Titre en anglais
Development of new composites based on polyethylene and hybrids generated from agricultural residues modified with niobium oxide
Mots-clés en anglais
cellulose
composites
hybrid
hydrated niobium oxide
low density polyethylene
Resumé en anglais
Natural fibers are in prominent position in the researches as raw material for presenting characteristics desirable for industrial applications; it is a renewable material, biodegradable and low cost. Thus, the exploration of cellulose has been growing, including the study of polymer composites reinforced with natural fibers. This study primarily aims to obtain hybrids cellulose/hydrous niobium oxide from the treatment and modification of sugarcane bagasse, and subsequently the generation of composites with matrix of low density polyethylene (LDPE) and modified cellulose as reinforcement. The Nb2O5.nH2O was generated by the conventional precipitation method, starting from niobium metal. The hybrids were produced in proportions of 10, 20, 30 and 40% of oxide and characterized using the following techniques: x-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), thermogravimetry (TG), differential scanning calorimetry (DSC) and scanning electron microscopy (SEM). The results indicated good interaction between the cellulose fiber and niobium oxide hydrate in all ratios studied. For the DSC curves in oxidative atmosphere can be observed that the Nb2O5.nH2O acted as an agent flame retardant. The proportion of the hybrid set for the generation of composites was 90Cel/10Nb2O5.nH2O. Initially were manufactured composites reinforced only with bleached cellulose, (x)LDPE/(100-x)Cel, with x = 5, 10, 15 and 20, and was conducted the study the physicochemical properties: FTIR, TGA, DSC, SEM; and mechanical properties by the tensile tests. According to this results was defined the percentage of 5% for the generation of composites reinforced with hybrid 95PEBD:5Cel/Nb2O5.nH2O, and also with the addition of compatibilizing, polyethylene modified with maleic anhydride (PE-g-MA), 95PEBD:5Cel/Nb2O5.nH2O+5PE-g-MA. The inclusion of cellulose fibers to the polymer matrix creates a material more resistant and rigid and with a smaller deformation, as well as the presence of Nb2O5.nH2O. The PE-g-MA increases the value of elastic modulus. The use of a smaller particle size of load promotes greater uniformity and dispersion of the cellulose in the matrix. The dispersion of fibers in the matrix hinders the migration process of the molecular chains of LDPE, reducing the degree of crystallinity. ZHf values show that the addition of inorganic weakens the interaction at the matrix with the reinforcement, decreasing ZHf and XC. The presence of the Nb2O5.nH2O in composites generates an increase in Tf.
 
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Date de Publication
2013-08-27
 
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