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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.
451

Application of Computer Simulation in the Investigation of Photoelectric Materials

Yang, Hsiao-ching 25 July 2004 (has links)
In this thesis, we investigated several photoelectric material systems consisted of conjugated polymers by means of computer simulation. We combined several theory and simulation methods to meodeling different subjects from atomic to mesoscopic scale. We dealt with the problems such as quantum efficiency, structure characteristic, and the phase behavior in material. We hope to have better understanding of the relationship between structure characteristic and functional property in material. It will help an engineering designer to adjust the variables that optimize characteristics linking the synthesis of advanced materials with desired physical properties. This work can be divided into three parts. Long side chain substituted PPV polymers applied in light-emitting diode material : Molecular dynamics simulations were employed to investigate structure features and segment orientation of four poly(phenylene vinylene) (PPV)-like conjugated polymers with long flexible side chains at room temperature. In the simulations, the main chains of the polymers were found to be semi-rigid and to exhibit a tendency to coil into ellipsoidal helices or form zigzag conformations of only limited regularity. It was shown that continuous segments of a chain which are quasi-coplanar along the backbone are in a range of 2~4 repeat units. This implies that long-range electron transfer along same backbones of these polymers may not happen but may be mediated by interchain interactions. The ordered orientation and coupling distance of interchain aromatic rings are found to correlate with important optical properties of materials. Then we combined molecular dynamics simulation and density matrix methods modeling of amorphous light-emitting polymers. A simplified method combining molecular dynamics (MD) simulation and density matrix (DM) theory was developed for the prediction of optical properties of long side chain substituted poly(phenylene vinylene) (PPV) polymers. This MD+DM method takes account of the complexity of molecular packing of polymer chains. The method has been tested to simulate the absorption spectra of four model systems. The wavelengths of absorption maxima of the calculated spectra of these four conjugated polymers are in reasonable agreement with experimental data. The simulation also demonstrated that the importance of including interchain interactions in the calculation. Ion-conducting polymer sPBI-PS(Li+): To understand the mechanism of ionic migration in the amorphous matrixes of polymer electrolytes is crucial for their applications in modern technologies. Here, molecular dynamics (MD) simulation was carried out to investigate the ionic conduction mechanism of a particular conjugated rigid-rod polymer, sPBI-PS(Li+). The backbone of this polymer is poly[(1, 7- dihydrobenzo[1, 2-d:4,5-d¡¦]diimidazole- 2,6-diyl)-2-(2-sulfo)-p-phenylene]. The polymer has pendants of propane sulfonate Li+ ionomer. The MD simulations showed that the main chains of sPBI-PS(Li+) are in layer-like structure. The further detailed structure analysis suggested that the £k-electron of this polymer is not delocalized among aromatic rings. This agrees with the experimental result that sPBI-PS(Li+) shows no electronic conductivity and the conductivity of this polymer is mainly ionic. The calculated migration channels of lithium ions and electrostatic potential distributions indicated clearly that the polymer matrix is anisotropic for the migrations of ions. The migration of lithium ions along the longitudinal direction is more preferable than that along the transverse direction. The relaxations of the polymer host were found to play important roles in the transfer process of lithium ions. The hopping of lithium ion from one -SO3-1 group to another is correlated strongly with characteristic motions of -SO3-1 group on a time scale of about 10-13 s. Self-assembly functional material. Dissipative particle dynamics (DPD) simulations were carried out to investigate mixed ionic and non-ionic molecules, sodium tetradecyl sulfate (STS) and tetradecyl triethoxylated ether (C14E3) aqueous system. Different types of mixed micelles are formed depending on the concentrations of STS and C14E3. Our results are in good agreement to the early NMR measurements. From the investigation of surfactant aggregation, we understand the self-assembly mechanism and classical phase behavior in general diblock copolymer. Further, we investigated the self-assembly process on a particular mushroom-shaped supramolecular film material from molecular character to phase behavior. The miniaturized rod-coil triblock copolymers (PS-PI-RCBC) HEMME had been found to self-assemble into well-ordered nanostructures and unusual head to tail multilayer structure. The purpose of our study is to obtain fundamental understanding the connection of the inherent morphological characterization of single molecule and the mechanism of phase behavior of this polar self-assembly system. Dissipative particle dynamics simulation was carried out to study the mechanism of phase behavior of the solvent-copolymers system. We found that the solvent-induced polar effect under different temperature is important in the process of self-assembly of block copolymers. In different temperature the solvent induces hybrid structure aggregation. Our results are consistent with experimental observations and give evidence for a special mechanism governing the unusual phase behavior in thin films of modulated phases. The sizes and stabilization energies of mushroom-shaped supramolecular clusters were predicted by molecular modeling method. Clusters of sizes from 16 to 90 molecules were found to be stable. In combination of classical and simple quantum mechanical calculations, the band gaps of HEMME clusters with various sizes were estimated. The band gap was converged at 2.45 eV for cluster contains 90 molecules. Nonlinear optical properties of the material were investigated by the semi-empirical quantum mechanical calculations of molecular dipole moment and hyperpolarizabilities. Significant second-order nonlinear optical properties were shown from these calculated properties.
452

Partiell geschützte Blockcopolymere zur Darstellung von Polymerfilmen mit strukturierbarer und modifizierbarer Morphologie

Messerschmidt, Martin 01 December 2006 (has links) (PDF)
Gemäß der Zielstellung der Dissertation wurden verschiedene partiell tert.-Butyl- (TBU) und tert.-Butyloxycarbonyl- (Boc) geschützte Blockcopolymere auf der Basis von Poly(4-hydroxystyrol) mit engen Molmassenverteilungen sowie mit verschiedenen Blockzusammensetzungen dargestellt. Die Synthese dieser partiell TBU- und Boc-geschützten Blockcopolymere umfasste drei wesentliche Schritte: 1) Darstellung von Makroinitiatoren mittels NMRP, 2) Synthese von orthogonal geschützten Precursor-Blockcopolymeren durch Reinitiierung der Makroinitiatoren in Gegenwart eines weiteren orthogonal geschützten Monomeren und 3) orthogonale und quantitative polymeranaloge Umsetzungen ausgehend von den orthogonal geschützten Precursor-Blockcopolymeren. Mit den partiell TBU- und Boc-geschützten Blockcopolymeren wurden dünne Polymerfilme mittels „dip-coating“ präpariert. Die Untersuchung der Topographie und Morphologie der Filme erfolgte mit dem AFM. Aus den erhaltenen Topographie- und Phasenverschiebungsbildern ging eindeutig hervor, dass die verschiedenen Blöcke der jeweiligen partiell TBU- und Boc-geschützten Blockcopolymere in allen Polymerfilmen phasensepariert vorlagen. Reguläre Mikrostrukturen konnten allerdings nur bei den Polymerfilmen erhalten werden, deren Blockcopolymere sich allesamt durch asymmetrische Blockzusammensetzungen auszeichnen. Auf der Grundlage des statistischen Modellpolymeren Poly(styrol-r-4-hydroxystyrol) konnte ferner gezeigt werden, dass sich die phenolischen Hydroxylgruppen durch die Umsetzung mit Propargylbromid quantitativ in Propargylether-Gruppen umwandeln lassen und diese dann ihrerseits mit Hilfe der Cu(I)-katalysierten 1,3-dipolaren Cycloaddition (Click-Chemie) weiter mit einer Reihe von verschiedenen Aziden funktionalisiert werden können.
453

Micelles polyioniques ternaires pour la libération intracellulaire d’oligonucleotides

Wazen, Nada 11 1900 (has links)
Les oligonucléotides (ONs) antisens présentent un fort potentiel en tant qu’agents thérapeutiques. Toutefois, leurs propriétés physicochimiques limitent leur utilisation en thérapie génique. Pour pallier aux divers obstacles, des systèmes de vectorisation, tels que les micelles polyioniques (PICMs), ont été développés. Grâce à leur structure unique, les micelles protégent l’ON contre une dégradation prématurée et le couplage d’un ligand à leur surface augmente leur spécificité et leur internalisation. Dans d’autres systèmes, un polymère adjuvant aux propriétés pH-sensibles peut être ajouté pour faciliter la sortie de l’endosome et augmenter l’efficacité de l’ON. L’objectif général de ce mémoire était de mettre au point des PICMs ternaires ciblées pour l’administration d’ONs. Ces micelles assureraient à la fois l’internalisation cellulaire de leur cargaison en interagissant avec des récepteurs cellulaires et sa fuite de l’endosome grâce à un mécanisme de déstabilisation de la membrane endosomale. Pour cela, des PICMs composées d’un copolymère cationique de type poly(éthylène glycol)-bloc-poly(méthacrylate d’(alkylamino)éthyle) et d’un copolymère d’acide méthacrylique ont été préparées. Les propriétés physicochimiques de ces vecteurs ont démontré qu’ils permettaient une condensation efficace de l’acide nucléique et ce, indépendamment de la nature du polymère cationique et de l’acide nucléique. Finalement, une approche de couplage par pont disulfure a été développée afin de greffer au copolymère un fragment d’anticorps dirigé contre les récepteurs de la transferrine. En conclusion, ces travaux démontrent la versatilité et le potentiel des PICMs ternaires en tant que vecteurs d’acide nucléique, et proposent une méthodologie de couplage d’un ligand afin de formuler des PICMs ciblées. / Antisens oligonucleotides (ONs) present great potential as therapeutic agents. However, their physicochemical properties hinder their use in gene therapy. Targeting systems, such as polyion complex micelles (PICMs), have been proposed to circumvent the main hurdles related to ON delivery. Their unique core/shell structure can protect the ON against premature degradation and the coupling of a ligand on their surface can increase their specificity and internalization. In other systems, a polymer with pH-sensitive properties can be added to facilitate the release of the ON from the endosome and increase its efficiency. The present work was aimed at optimizing ternary PICMs targeted for the delivery of antisens ON. Such systems would provide both cellular internalization of cargo by interaction with receptors on the surface of cell membranes and escape from the endosome through a mechanism of destabilization of the endosomal membrane. PICMs composed of cationic copolymers of poly(ethylene glycol)-bloc-poly((alkylamino)ethyl methacrylate) with a methacrylic acid copolymer adjuvant were prepared. Their physicochemical properties suggest that efficient complexation of nucleic acids was obtained, regardless of the nature of the cationic polymer and the nature of the nucleic acid. Finally, a synthetic approach was developed for the conjugation of an antibody fragment directed against the transferrin receptor via a labile disulfide bond at the end of the cationic copolymer. In conclusion, the work presented herein displays the versatility and potential of ternary PICMs as vehicles for the delivery of ONs and also provides a method for the conjugation of a ligand to generate targeted ternary PICMs.
454

Linear block copolymers of L–lactide and 2–dimethylaminoethyl methacrylate : synthesis and properties

Kryuchkov, Maksym 02 1900 (has links)
Les copolymères séquencés amphiphiles sont très prometteurs pour des applications de technologie de pointe en raison de leur capacité à s'auto-assembler dans des structures bien organisées à l'échelle du micro– et du nanométre, et de leur sensibilité à des stimulations de différentes natures. La formation des nanomotifs bien ordonnés dans les films et/ou en masse fournit un substitut à la nanolithographie et est utile pour le design et l'ingénierie de nanomembranes et de matériaux nanoporeux. L'auto–assemblage dans des solvants sélectifs, en incluant la sensibilité au pH et à la température, peut être ajusté pour correspondre aux besoins de différentes applications biomédicales, telles que l’encapsulation et/ou relargage de médicaments, l'ingénierie de tissus, etc. Dans ce contexte, des copolymères séquencés de type L–lactide (LLA) et méthacrylate 2–diméthylaminoéthyl (DMAEMA) sont d’un grand intérêt. Comme le contrôle sur l'auto–assemblage des copolymères séquencés est permis au niveau moléculaire, il est très important de préparer des copolymères bien définis avec des longueurs de bloc prévisibles et de faible polydispersité. Ainsi, une partie de cette étude a été consacrée au développement de procédures synthétiques optimales et à la caractérisation détaillée de copolymères di– et triblocs de LLA et de PDMAEMA. Un outil simple pour déterminer la présence d'homo–PLLA résiduel a été développée; cela a permis de déterminer et d'expliquer plusieurs voies de synthèse indésirables. La dernière inclut la participation possible de l'amorceur bifonctionnel utilisé, et nous avons alors proposé un système alternatif d'amorceur bifonctionnel/catalyseur. La racémisation du LLA par les unités amine de (P)DMAEMA a été observée pendant la polymérisation, limitant ainsi l'utilisation première du bloc PDMAEMA pour la préparation des copolymères PLLA–b–PDMAEMA. Les études thermiques et de cristallisation, en incluant les copolymères séquencés partiellement quaternisés, ont révélé un retard significatif de la vitesse de cristallisation, en présence du bloc de PDMAEMA. Nous avons constaté que les blocs sont miscibles pour de faibles masses molaires et que la miscibilité partielle est maintenue après quaternisation. Selon la longueur et le taux de quaternisation du bloc PDMAEMA, la cristallisation du PLLA a été étudiée dans un environnement restreint et confiné, faiblement ou fortement. La torsion des lamelles cristallines observée pour certains copolymères biséquencés a été accentuée dans les copolymères triséquencés, où la formation de sphérolites annelés a été observée dans toutes les conditions thermiques utilisées. / Multi–functional amphiphilic block copolymers have much promise for various high technology applications thanks to the controlled stimuli–responsive self–assembly into well–organized structures on the micro– and nanometer scales. The formation of well–ordered nanopatterns in films and/or in bulk provides a competitive substitute to nanolithography and is useful in the design and engineering of nanomembranes and nanoporous materials. Solution self–assembly in selective solvents, including pH and temperature sensitivity, can be tuned to match the needs of different biomedical applications, such as drug encapsulation/delivery, tissue engineering, etc. In this context, block copolymers of L–lactide (LLA) and 2–dimethylaminoethyl methacrylate (DMAEMA) are of great interest. Since the control over self–assembly of block copolymer systems is enabled on a molecular level, it is of great importance to prepare well–defined block copolymers with predictable block lengths and low polydispersity. Thus, a major part of the research in this study was devoted to developing optimal synthetic procedures with detailed characterization of linear di– and triblock copolymers of LLA and PDMAEMA. A simple tool to determine homo–PLLA impurity was developed, which helped to determine and explain several undesired routes. The latter includes possible involvement of the bifunctional initiator used, and an alternative bifunctional initiator/catalyst system was proposed. Racemization of LLA by (P)DMAEMA moieties was observed during LLA polymerization thus limiting the utilization of PDMAEMA–first approach for the preparation of PLLA–b–PDMAEMA. Thermal and crystallization studies, including on quaternized block copolymers, revealed a significant retardation effect of the PDMAEMA block on the crystallization kinetics. The blocks were found to be miscible in the melt at low molecular weights, and maintained partial miscibility after quaternization. Depending on the length and the quaternization degree of PDMAEMA, PLLA crystallization was studied in a templated, soft or hard confinement environment. Crystalline lamellae twisting observed in certain diblock copolymers was facilitated in triblock copolymers, where the formation of banded spherulites was observed in all thermal conditions used. / Part of the research described in this thesis is conducted in collaboration with Centre d' étude et de Recherche sur les Macromolécules (CERM), Université de Liège, Sart-Tilman, Belgium
455

Nanostructures de surface obtenues par dépôt de films minces à base d'assemblage supramoléculaire de copolymères blocs

David, Gaspard January 2008 (has links)
Mémoire numérisé par la Division de la gestion de documents et des archives de l'Université de Montréal
456

Preparation and application of cellular and nanoporous carbides

Borchardt, Lars, Hoffmann, Claudia, Oschatz, Martin, Mammitzsch, Lars, Petasch, Uwe, Herrmann, Mathias, Kaskel, Stefan 09 April 2014 (has links) (PDF)
A tutorial review on cellular as well as nanoporous carbides covering their structure, synthesis and potential applications. Especially new carbide materials with a hierarchical pore structure are in focus. As a central theme silicon carbide based materials are picked out, but also titanium, tungsten and boron carbides, as well as carbide-derived carbons, are part of this review. / Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich.
457

De l'élaboration de nanoparticules ferromagnétiques en alliage FePt à leur organisation médiée par autoassemblage de copolymères à blocs / From elaboration of ferromagnetic nanoparticles made of FePt alloy to their organization mediated by block copolymers self-assembly

Alnasser, Thomas 21 October 2013 (has links)
En raison de leur constante d’anisotropie magnétocristalline particulièrement élevée,les nanoparticules de FePt cristallisant dans la phase « chimiquement » ordonnée L10présentent un grand intérêt pour la réalisation de média magnétiques discrets à très hautedensité (>1 Tb/in2) jusqu’à un diamètre limite de 3,5 nm. Nos travaux portent sur la synthèsepar voie chimique (thermolyse) de nanoparticules de FePt-ɣ, calibrées en taille (4 ≤ Ø ≤ 8 nm)et de composition chimique proche de Fe50Pt50. Par la suite, leur transition vers la variété L10est réalisée afin de leur assurer un comportement ferromagnétique fort à 300 K. En dépitd’une composition non homogène en fer au sein de chaque nanoparticule (coeur riche enplatine et surface davantage riche en fer), la phase L10 est obtenue après un recuit sousatmosphère réductrice (Ar/H2 5%) à des températures supérieures à 650°C. Par ailleurs, afinde prévenir la coalescence des nanoparticules lors du recuit, trois méthodes de protectionsdistinctes ont montré leur efficacité : une matrice de NaCl, des écorces de silice amorphe etde MgO cristallisé. Cette dernière méthode de protection a permis, une fois les recuitsréalisés, de redisperser les nanoparticules de FePt-L10 par le biais d’une modification de leursurface par des chaînes de Polyoxyde d’éthylène-thiol (Mn =2000 g.mol-1). Une encremagnétique est obtenue une fois ces nanoparticules mises en solution avec desmacromolécules de copolymères à blocs Polystyrène-b-Polyoxyde d’éthylène. Le dépôt decette encre sur un substrat permet de former, après auto-assemblage supramoléculaire desmacromolécules, un film hybride contenant les nanoparticules ferromagnétiques FePt-L10localisées sélectivement dans les domaines cylindriques de POE. / Nanoparticles made of FePt alloy in a face-centered-tetragonal (fct) structure have agreat interest for the enhancement of data density (> 1 Tbit/in²) in magnetic recordingmedia due to their high magneto-crystalline anisotropy and low critical diameters (3.5 nm).Our works lie in the synthesis of ɣ-FePt nanoparticles controlled in size (4 ≤ Ø ≤ 8 nm) andchemical composition (≈ Fe50Pt50) by thermal decomposition of organometallic precursors.Following ɣ-FePt NPs synthesis, annealing at high temperature is required for a completetransition from fcc to fct structure (L10) that ensure a ferromagnetic behavior at ambient.Despite a non-homogenous chemical composition on each nanoparticles (platinum-rich coreand iron-rich surface), L10 structure has been obtained after annealing under atmosphereAr/H2 (5%), at temperature up to 650°C. To prevent coalescence of FePt NPs duringannealing, tree distinct protection routes have shown their effectiveness: an inert NaClmatrix, an amorphous silica shell or a crystalline MgO shell. This last method shows bestresults in redispersion of L10-FePt nanoparticles after annealing via surface modification ofnanoparticles by PEO-thiol chains (Mn =2000 g.mol-1). A magnetic ink is then formulated inpresence of PS-b-PEO macromolecules. At least, this as-made ink is deposited on a substrateto obtain, after copolymer self-assembly, a hybrid film containing ferromagnetic L10-FePtnanoparticles selectively located into PEO cylindrical domains.
458

Effets de taille sur la rhéologie et la microstructure d'objets en polymères amorphes pour la compréhension du procédé de micro-injection / Size effects on the rheological properties and the microstructure of amorphous polymer parts, for the understanding of the process of micro-injection

Goncalves, Olabissi 16 July 2014 (has links)
Ce travail de thèse, inscrit dans le cadre du projet FUI ConProMi, se propose d'étudier les mécanismes intervenant durant la phase de réplication par micro-injection de pièces en polymères amorphes. Dans ce but, un outil spécifique dénommé « La Rotonde » a été développé, pour réaliser des pièces d'épaisseurs variables, tout en suivant les conditions de pressions et températures locales. Les mesures de ces conditions ont montré que les écoulements de polymère à l'état fondu, dont d'un copolymère d'oléfines cycliques (COC), variaient en fonction de l'épaisseur de la cavité. L'analyse de ces résultats a permis de proposer une nouvelle loi de comportement reliant les pertes de charge dP à l'épaisseur de la cavité, selon une loi Puissance: dP~1/e^a. L'extrapolation de cette loi à des épaisseurs décroissantes nous a permis de prédire la limite physique de fabrication d'objets par micro-injection, connue de façon empirique dans l'industrie de la plasturgie ; la fabrication de pièces d'épaisseurs inférieures à 0.19 mm (ou de facteur de forme supérieur à 45) est en effet impossible du fait des pertes de charges trop importantes lors de l'écoulement du polymère dans la cavité. Il a ainsi été démontré que La Rotonde est un véritable rhéomètre interne, mesurant les viscosités du COC dans la cavité lors de son écoulement, en intégrant l'influence de la compressibilité de la matière. Une attention particulière a enfin été portée sur l'échantillon de plus faible épaisseur injectable (0.27 mm), afin de mieux appréhender les mécanismes s'opposant à l'écoulement du polymère fondu. Ces travaux ont révélé des viscosités élevées et des contraintes de cisaillement supérieures aux valeurs seuils rapportées dans la littérature pour expliquer le phénomène de glissement des chaînes macromoléculaires à l'interface paroi/polymère. Une analyse morphologique fine a été entreprise afin d'observer et identifier les mécanismes impliqués lors du remplissage des pièces. Cette étude spécifique a permis de révéler la présence de multiples écoulements secondaires, localisés à proximité du seuil et dont le nombre croit fortement avec la réduction d'épaisseur. Ces défauts ont tendance à disparaitre le long de l'écoulement et à former des lignes de recollement. Ce résultat original montre que le modèle d'écoulement Fontaine relatif au remplissage des cavités en injection a été mis en défaut dans le cas de la micro-injection. La dernière partie de cette étude a été consacrée à l'analyse des conséquences de ces écoulements secondaires sur les propriétés physiques des pièces en COC. Les mesures de biréfringence ont permis de mettre en évidence des niveaux de contraintes internes particulièrement élevés à proximité du seuil, qui sont favorisées par la phase de maintien. Ces contraintes ont été par ailleurs directement corrélées avec la réduction d'épaisseur. Les variations des propriétés physiques et en particulier mécaniques dynamiques des micro-pièces ont été reliées à l'histoire thermomécanique subie par les échantillons, avec notamment des augmentations des propriétés élastiques et de densité liées aux cinétiques de refroidissement croissantes avec la réduction d'épaisseur. Les variations de mobilité moléculaire à grande distance des chaînes macromoléculaires du polymère considéré ont été corrélées au phénomène de vieillissement physique, ou à la présence de défauts structurels générés lors de l'écoulement. D'un point de vue industriel, une telle étude a permis de proposer des préconisations sur l'optimisation des conditions de mise en œuvre en micro-injection d'objets de tailles réduites, en expliquant l'origine du verrou technologique relevé industriellement. A la lumière de ces résultats, des solutions technologiques pourront être proposées, pour reculer les limites de fabrication de micro-objets en favorisant le glissement des chaines macromoléculaires à l'interface paroi/polymère ou formuler de nouveaux polymères spécifiques pour ce secteur d'activité. / This work, done within the framework of a FUI project (ConProMi), endeavoured to study the mechanisms involved within amorphous polymers during the replication of micro-parts by microinjection moulding. A specific mould called “La Rotonde” has been developed to realise parts with variable thicknesses, and to follow the local pressure and temperature conditions during the moulding phase. The in-situ measurements show that the polymer flow is greatly affected by the cavity thickness, in the particular case of cyclic olefin copolymer (COC). Indeed, the pressure drops dP increases with the thickness e and respect a power law, through the expression dP~e^a. The extrapolation to lower thicknesses gives a physical limit for the manufacturing of micro-parts by injection moulding, known empirically in the plastic industry. The moulding of a 0,19mm thick part (or aspect ratio upper than 45) is impossible due to the pressure drops involved. Therefore, “La Rotonde”, as an internal rheometer, allows measuring the COC viscosity under real process conditions, integrating the material compressibility. A focus has been made for the smaller parts (0,27mm thick) to study the mechanisms involved within the polymer flow. Higher viscosities and shear stresses are found for this cavity, and close to the values corresponding to the appearance of wall-slip phenomenon at the interface between the polymer and the cavity. A morphological analysis of short-shots reveals the presence of multiple secondary flows close to the injection gate, creating weld-lines. This phenomenon is clearly broadened with decreasing thicknesses, but it seems to disappear away from the injection gate. Therefore, this original result show that the classical fountain flow, used to describe the polymer flow behaviour, is not sufficient in the case of polymer flows within micro-cavities. As a consequence, each sample's morphology has been studied and related to the physical properties of COC. A specific analysis of the local birefringence has been developed in order to quantify the residual internal stresses. The internal stresses profiles normal to the flow direction are parabolic for all the samples, and the levels of maximum stresses reached increases with reducing thickness. The dynamic mechanical properties are history-dependent according to the former thermomechanical conditions. The elastic properties tend to increase together with the density when the thickness decreases, partly explained by the enhancement of the cooling rates. The differences observed for the molecular mobility of the macromolecular chains have been correlated to physical ageing and/or at the presence of structural defects during the moulding phase. With regards to the results observed, some recommendations are drawn regarding the optimization of the process conditions for the manufacturing of parts by micro-injection moulding. At last, different solutions are given to overcome the physical limitation to produce micro-parts, like controlling the wall-slip phenomenon at the interface between polymer and cavity or compounding new polymers with specific rheological behaviours.
459

Morfologia e propriedades térmicas de compósitos de HDPE/EVA com POSS

Scapini, Patrícia 24 September 2008 (has links)
Neste trabalho foram estudados compósitos que apresentam como matriz polimérica uma blenda composta por polietileno de alta densidade (HDPE) e copolímero etileno acetato de vinila (EVA) e como nanocarga, silsesquioxano poliédrico oligomérico (POSS). Os compósitos foram processados em câmara de mistura fechada e caracterizados quanto às propriedades térmicas e morfológicas. Para a preparação dos compósitos foram variadas as concentrações dos componentes da blenda (0, 25, 50, 75 e 100%) e da nanocarga (0, 0,5, 1, 1,5, 2, 5 e 10%). Os resultados de processamento mostraram que o aumento da concentração de POSS na matriz polimérica provocou a agregação do mesmo na matriz polimérica. As análises de calorimetria diferencial de varredura e termogravimetria indicaram que o POSS não afetou as temperaturas de fusão, cristalização e degradação da matriz polimérica. Os resultados de raios X indicaram que a presença do EVA no compósito promoveu o aparecimento de domínios cristalinos em concentrações menores de POSS. A microscopia eletrônica de varredura indicou que as amostras com 1% de POSS apresentam distribuição homogênea na matriz polimérica. Por outro lado, ocorreu a formação de agregados nas amostras com 5% de POSS. Os valores de Tg obtidos por análise térmica dinâmico-mecânica indicaram que o POSS causou um efeito plastificante na fase HDPE e uma redução da mobilidade na fase EVA. Ocorreu um aumento nos valores de módulo de armazenamento com a incorporação de POSS na matriz polimérica. / Submitted by Marcelo Teixeira (mvteixeira@ucs.br) on 2014-05-22T19:03:21Z No. of bitstreams: 1 Dissertacao Patricia Scapini.pdf: 2020883 bytes, checksum: 2c7249d3915135dd5f3cba151cf459db (MD5) / Made available in DSpace on 2014-05-22T19:03:21Z (GMT). No. of bitstreams: 1 Dissertacao Patricia Scapini.pdf: 2020883 bytes, checksum: 2c7249d3915135dd5f3cba151cf459db (MD5) / In this study composites with a polymeric matrix comprising a blend of high density polyethylene (HDPE) and the copolymer ethylene vinyl acetate (EVA), and with polyhedral oligomeric silsesquioxane (POSS) as the nanoclay, were processed and characterized. The composites were processed in a closed mixing chamber and characterized in terms of their thermal and morphological properties. For the preparation of the composites the concentrations of the blend components (0, 25, 50, 75 and 100%) and of the nanoclay (0, 0.5, 1, 1.5, 2, 5 and 10%) were varied. The results of the processing showed that an increase in the POSS concentration in the polymeric matrix caused the aggregation of the system. The differential scanning calorimetry and thermogravimetry analyses indicated that the POSS did not affect the melt, crystallization and degradation temperatures of the polymeric matrix. The X-ray results indicated that the presence of EVA in the composite led to the appearance of crystalline domains at lower POSS concentrations. Scanning electron microscopy indicated that the samples with 1% of POSS have a homogeneous distribution in the polymeric matrix. However, the formation of aggregates occurred in samples with 5% of POSS. The Tg values obtained from the thermo dynamic mechanical analysis indicated that the POSS had a plasticizing effect on the HDPE phase and caused a reduction in the mobility of the EVA phase. There was an increase in the storage modulus values with the incorporation of POSS into the polymeric matrix.
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Morfologia e propriedades térmicas de compósitos de HDPE/EVA com POSS

Scapini, Patrícia 24 September 2008 (has links)
Neste trabalho foram estudados compósitos que apresentam como matriz polimérica uma blenda composta por polietileno de alta densidade (HDPE) e copolímero etileno acetato de vinila (EVA) e como nanocarga, silsesquioxano poliédrico oligomérico (POSS). Os compósitos foram processados em câmara de mistura fechada e caracterizados quanto às propriedades térmicas e morfológicas. Para a preparação dos compósitos foram variadas as concentrações dos componentes da blenda (0, 25, 50, 75 e 100%) e da nanocarga (0, 0,5, 1, 1,5, 2, 5 e 10%). Os resultados de processamento mostraram que o aumento da concentração de POSS na matriz polimérica provocou a agregação do mesmo na matriz polimérica. As análises de calorimetria diferencial de varredura e termogravimetria indicaram que o POSS não afetou as temperaturas de fusão, cristalização e degradação da matriz polimérica. Os resultados de raios X indicaram que a presença do EVA no compósito promoveu o aparecimento de domínios cristalinos em concentrações menores de POSS. A microscopia eletrônica de varredura indicou que as amostras com 1% de POSS apresentam distribuição homogênea na matriz polimérica. Por outro lado, ocorreu a formação de agregados nas amostras com 5% de POSS. Os valores de Tg obtidos por análise térmica dinâmico-mecânica indicaram que o POSS causou um efeito plastificante na fase HDPE e uma redução da mobilidade na fase EVA. Ocorreu um aumento nos valores de módulo de armazenamento com a incorporação de POSS na matriz polimérica. / In this study composites with a polymeric matrix comprising a blend of high density polyethylene (HDPE) and the copolymer ethylene vinyl acetate (EVA), and with polyhedral oligomeric silsesquioxane (POSS) as the nanoclay, were processed and characterized. The composites were processed in a closed mixing chamber and characterized in terms of their thermal and morphological properties. For the preparation of the composites the concentrations of the blend components (0, 25, 50, 75 and 100%) and of the nanoclay (0, 0.5, 1, 1.5, 2, 5 and 10%) were varied. The results of the processing showed that an increase in the POSS concentration in the polymeric matrix caused the aggregation of the system. The differential scanning calorimetry and thermogravimetry analyses indicated that the POSS did not affect the melt, crystallization and degradation temperatures of the polymeric matrix. The X-ray results indicated that the presence of EVA in the composite led to the appearance of crystalline domains at lower POSS concentrations. Scanning electron microscopy indicated that the samples with 1% of POSS have a homogeneous distribution in the polymeric matrix. However, the formation of aggregates occurred in samples with 5% of POSS. The Tg values obtained from the thermo dynamic mechanical analysis indicated that the POSS had a plasticizing effect on the HDPE phase and caused a reduction in the mobility of the EVA phase. There was an increase in the storage modulus values with the incorporation of POSS into the polymeric matrix.

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