846 resultados para CFRP COMPOSITES


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Comprendre ce qui amène un leader à émettre des comportements de leadership transformationnel fascine les chercheurs et praticiens depuis plusieurs années (Bommer, Rubin, & Baldwin, 2004; Bono & Judge, 2004; Shamir & Howell, 1999 ; Stogdill, 1948; Yukl, 1999). Or, jusqu’à présent, ces facteurs sont encore bien peu étudiés et compris comparativement aux conséquences de ce style de leadership. Dans cette lignée, la présente thèse répond à différents enjeux soulevés par les auteurs à ce sujet (Dinh & Lord, 2012; Zaccaro, 2007) en cherchant à préciser le rôle joué par différents antécédents individuels et contextuels du leadership transformationnel. Cet objectif sera poursuivi par l’adoption d’une perspective interactionniste qui intègre des antécédents de personnalité et de contexte ainsi par l’évaluation de la personnalité à l’aide d’une modélisation de la personnalité orientée vers le critère à prédire (variable composite). La présente thèse est composée de trois articles poursuivant les objectifs suivant : 1) Effectuer une synthèse de la littérature empirique portant sur les antécédents individuels et contextuels du leadership transformationnel; 2) Vérifier les liens empiriques entre la personnalité mesurée à l’aide de variables composites, plus précisément le modèle des Great Eight de Bartram (2005), et le leadership transformationnel; 3) Tester empiriquement l’effet d’interaction entre les variables de personnalité et les variables contextuelles pour prédire le leadership transformationnel. Le premier article vise d’abord à circonscrire et organiser les connaissances empiriques actuelles provenant d’une quarantaine d’articles concernant les antécédents du leadership transformationnel. L’article s’organise en trois thèmes principaux : les antécédents individuels de personnalité, les antécédents contextuels et l’étude des interactions entre le volet individuel et contextuel. Plusieurs constats et pistes de recherches sont discutés et mettent la table pour les deux articles subséquents. Ainsi, le second article s’intéresse au potentiel explicatif d’un modèle de personnalité orienté vers le critère pour prédire le leadership. Plus spécifiquement, le modèle des Great Eight proposé par Bartram (2005) est mis en relation avec les comportements de leadership transformationnel et de récompense contingente. Les résultats, obtenus auprès de 113 gestionnaires et de leurs 799 subordonnés, donnent peu d’appui à la valeur ajoutée du modèle utilisé, mais indiquent que certaines tendances de personnalité sont associées au leadership. Des analyses supplémentaires permettent de nuancer la compréhension des effets observés dans la documentation scientifique et offrent quelques pistes de groupements de traits pouvant prédire les différents comportements de leadership. Le troisième article s’inspire de la théorie de l’activation des traits (Tett & Burnett, 2003) pour vérifier l’effet combiné de la personnalité du gestionnaire et du contexte dans lequel il évolue en vue de prédire le leadership transformationnel. Les résultats (ngestionnaires = 89; nsubordonnés = 643) n’offrent qu’un appui modéré au rationnel sous-jacent du modèle de l’activation des traits. Toutefois, il en ressort que l’aspect relationnel du gestionnaire (opérationnalisé par le composite de personnalité « soutien et coopération ») est associé à l’émergence du leadership transformationnel uniquement lorsque les facteurs contextuels (considération organisationnelle, latitude décisionnelle) sont perçus positivement par le gestionnaire. L’étude permet donc d’éclaircir une part de la variabilité observée dans les études antérieures concernant la tendance relationnelle du gestionnaire, en soulignant sa sensibilité à des facteurs contextuels positifs.

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While the input of river-alkalinity into seawater is relatively well known, the complementary acidity production is poorly understood. Using the major-element budget of seafloor alteration of the upper 500 m of 120-Ma-old oceanic crust at DSDP/ODP Sites 417A, 417D and 418A in the central western Atlantic, we estimate the acidity flux associated with the low-temperature weathering of the upper oceanic crust. The acidity flux is calculated based on major-element fluxes and charge-balance considerations. The relevant chemical fluxes from seawater to the upper crust are 4.1+-0.1; 1.4+-1.4; 2.2+-0.6 and -12+-2 10**11 mol/yr for K, Mg, Na and silicate-Ca, respectively. The associated acidity flux is (3.5+-3)10**11 eq/y. Relative to continental weathering, these fluxes are significant for K and silicate-Ca, but are minor for Na, Mg and acidity. Thus, riverine fluxes of alkalinity are not significantly balanced by acidity fluxes from low-temperature upper ocean crust alteration.

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"AFML-TR-78-157."

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Inserted "report documentation page" designates Francesco A. Iannuzzi and H. Stuart Starrett as "authors."

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"The 29th meeting of the MFPG and these proceedings were sponsored by the Center for Materials Science of the National Bureau of Standards ... [et al.]"

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"Selection and Assignment Research Unit."

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Mode of access: Internet.

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"OTA-TM-E-32"--P. [4] of cover.

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Xyloglucan-acting enzymes are believed to have effects on type I primary plant cell wall mechanical properties. In order to get a better understanding of these effects, a range of enzymes with different in vitro modes of action were tested against cell wall analogues (bio-composite materials based on Acetobacter xylinus cellulose and xyloglucan). Tomato pericarp xyloglucan endo transglycosylase (tXET) and nasturtium seed xyloglucanase (nXGase) were produced heterologously in Pichia pastoris. Their action against the cell wall analogues was compared with that of a commercial preparation of Trichoderma endo-glucanase (EndoGase). Both 'hydrolytic' enzymes (nXGase and EndoGase) were able to depolymerise not only the cross-link xyloglucan fraction but also the surface-bound fraction. Consequent major changes in cellulose fibril architecture were observed. In mechanical terms, removal of xyloglucan cross-links from composites resulted in increased stiffness (at high strain) and decreased visco-elasticity with similar extensibility. On the other hand, true transglycosylase activity (tXET) did not affect the cellulose/xyloglucan ratio. No change in composite stiffness or extensibility resulted, but a significant increase in creep behaviour was observed in the presence of active tXET. These results provide direct in vitro evidence for the involvement of cell wall xyloglucan-specific enzymes in mechanical changes underlying plant cell wall re-modelling and growth processes. Mechanical consequences of tXET action are shown to be complimentary to those of cucumber expansin.

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A novel one pot process has been developed for the preparation of PbS nanocrystals in the conjugated polymer poly 2-methoxy,5-(2 ethyl-hexyloxy-p-phenylenevinylene) (MEH-PPV). Current techniques for making such composite materials rely upon synthesizing the nanocrystals and conducting polymer separately, and subsequently mixing them. This multi-step technique has two serious drawbacks: templating surfactant must be removed before mixing, and co-solvent incompatibility causes aggregation. In our method, we eliminate the need for an initial surfactant by using the conducting polymer to terminate and template nanocrystal growth. Additionally, the final product is soluble in a single solvent. We present materials analysis which shows PbS nanocrystals can be grown directly in a conducting polymer, the resulting composite is highly ordered and nanocrystal size can be controlled.

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Polyethylene (PE) multiwalled carbon nanotubes (MWCNTs) with weight fractions ranging from 0.1 to 10 wt% were prepared by melt blending using a mini-twin screw extruder. The morphology and degree of dispersion of the MWCNTs in the PE matrix at different length scales was investigated using scanning electron microscopy (SEM), transmission electron microscopy (TEM), atomic force microscopy (AFM) and wide-angle X-ray diffraction (WAXD). Both individual and agglomerations of MWCNTs were evident. An up-shift of 17 cm(-1) for the G band and the evolution of a shoulder to this peak were obtained in the Raman spectra of the nanocomposites, probably due to compressive forces exerted on the MWCNTs by PE chains and indicating intercalation of PE into the MWCNT bundles. The electrical conductivity and linear viscoelastic behaviour of these nanocomposites were investigated. A percolation threshold of about 7.5 wt% was obtained and the electrical conductivity of PE was increased significantly, by 16 orders of magnitude, from 10(-20) to 10(-4) S/cm. The storage modulus (G') versus frequency curves approached a plateau above the percolation threshold with the formation of an interconnected nanotube structure, indicative of 'pseudo-solid-like' behaviour. The ultimate tensile strength and elongation at break of the nanocomposites decreased with addition of MWCNTs. The diminution of mechanical proper-ties of the nanocomposites, though concomitant with a significant increase in electrical conductivity, implies the mechanism for mechanical reinforcement for PE/MWCNT composites is filler-matrix interfacial interactions and not filler percolation. The temperature of crystallisation (T.) and fraction of PE that was crystalline (F-c) were modified by incorporating MWCNTs. The thermal decomposition temperature of PE was enhanced by 20 K on addition of 10 wt% MWCNT. (c) 2005 Elsevier Ltd. All rights reserved.

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Cu-based bulk metallic glass matrix composites (BMGMCs) containing in-situ TiC particles were fabricated successfully. The yield and fracture strength increased from 1930 MPa, 2250 MPa to 2210 MPa, 2500 MPa, respectively. The ductility was improved and the hardness was also enhanced by 25%. The fracture mechanism was investigated in detail. (C) 2004 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.