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Projeto e construção de um equipamento biaxial para a caracterização mecânica de tecidos biológicos tubulares. / Project and manufacturing of a biaxial equipment for the mechanical characterization of tubulst-shaped biological tissues.Paulo Henrique Brossi Sabia 18 November 2014 (has links)
Com a evolução da medicina e o consequente envelhecimento da população, o aneurisma de aorta abdominal (AAA) se tornou uma doença cada vez mais presente, sobretudo em homens. A falta de conhecimento detalhado do comportamento mecânico do tecido aórtico abdominal é o principal gargalo no refinamento do critério para a recomendação de cirurgia corretiva, resultando, ainda hoje, no óbito decorrente da ruptura desses aneurismas. O entendimento do comportamento mecânico desse tecido permitirá o refinamento do critério atual, salvando mais vidas. Esse entendimento pode ser obtido através da Mecânica do Contínuo, utilizando dados experimentais de ensaios mecânicos para avaliar e descrever o comportamento do material. Para que isso ocorra, é necessário que o teste seja feito em dois eixos independentes. No presente trabalho, foram escolhidos os eixos longitudinal e circunferencial para a realização de testes mecânicos, levando em consideração aspectos de metodologias já utilizadas, seus pontos fortes e deficiências. São apresentados o projeto, a construção e e a calibração de um equipamento para ensaios biaxiais de tecidos biológicos tubulares, extraídos de cadáveres, e testados até a ruptura, com a possibilidade de realização de ensaios de pré-condicionamento. Tubos de látex foram utilizados na calibração do equipamento, de cuja utilização é esperada grande contribuição na ampliação do conhecimento da probabilidade de ruptura de AAAs e em uma melhor compreensão do comportamento do tecido da uretra peniana. / The evolution of Medicine has enabled humans to live longer. With that, the incidence of abdominal aortic aneurysms (AAAs) has grown, especially among males. The lack of detailed knowledge on the mechanical behavior of the abdominal aortic tissue is the main bottleneck in the improvement of the criterion for recommending corrective surgery. Therefore, many patients still die from the rupture of those aneurysms. Better understanding of the tissues mechanical behavior will allow the refinement of todays criterion, thus saving more lives. This understanding can be obtained from Continuum Mechanics, using mechanical test experimental data to evaluate and describe the behavior of the material. The data has to come from tests performed in two independet axes. This Masters thesis presents the project, manufacturing and calibration of an apparatus for the test of cylindrical biological tissues in two directions, longitudinal and circumferential. Aspects of pre-existent tests and methods and their positive and negative sides were taken into account. The specimens will come from cadavers, and it will be possible to pre-condition them, as well as to test them to the rupture. Latex tubes were used in the calibration of the apparatus, whose utilization is expected to improve the knowledge on AAA rupture probability, as well as to improve the comprehension of the penile urethral tissues behavior.
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Estudo do comportamento mecânico de cilindros de compósito epóxi/fibra de basalto em ensaios hidrostáticos / Study of mechanical behavior of epoxy/basalt fiber composite cylinders under hydrostatic testsMauro Henrique Lapena 26 January 2017 (has links)
O objetivo deste trabalho foi estudar o comportamento mecânico de cilindros de compósito polimérico reforçado com fibras. Para isso, foram produzidos cilindros com extremidades abertas reforçados com fibra de basalto e fibra de vidro, utilizando a técnica de enrolamento filamentar (filament winding). Estes cilindros foram submetidos a ensaio hidrostático com carregamento circunferencial, ensaio de ruptura de anel (split disk test) e ensaio de resistência ao cisalhamento interlaminar (ILSS). Uma placa do compósito de fibra de basalto foi produzida por enrolamento filamentar, para caracterização por ensaio de resistência à tração. Todos cilindros submetidos ao ensaio hidrostático apresentaram fratura localizada em uma faixa de altura do cilindro, com extensas delaminações das camadas circunferenciais. Os compósitos epóxi/fibra de basalto superaram ou igualaram os de compósito epóxi/fibra de vidro nas comparações entre resultados dos valores das propriedades mecânicas avaliadas, nas porcentagens: resistência à tração aparente de ruptura de anel em 45% e 43% em resistência específica; ILSS, em 11%; resistência/tensão de membrana de ruptura no ensaio hidrostático, em 55%. / The aim of this work was to study the mechanical behavior of fiber reinforced polymer composite cylinders. For this purpose, cylinders reinforced with basalt and glass fibers were produced, with open-ended geometry, using filament winding technique. These cylinders were submitted to hydrostatic test under circunferential loading, split disk (ring segment) test and interlaminar shear strength (ILSS). A basalt fiber composite plate was produced by filament winding for characterization by tensile strength test. All cylinders submitted to hydrostatic test presented fracture located in the height range of the cylinder, with extensive delamination of the circumferential layers. The epoxy/basalt fiber composites overcame or equated the epoxy/glass fiber composites in comparisons between results of the mechanical properties, tensile strength in split disk, in 45% and 43% in specific strength; ILSS in 11%; membrane tensile strength in the hydrostatic test, in 55%.
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Estudo comparativo de propriedades mecânicas e textura de laminados da liga de alumínio 3104-H19.Martins, André Luís Teixeira 26 August 2014 (has links)
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Previous issue date: 2014-08-26 / The beverage metal packaging industry figures as one of the most important worldwide aluminum consumer. A detailed knowledge of the raw material used in the beverage can body
production is essential to maintain and improve the productivity levels imposed by the market. It is on this point that the present work focus, in the micro structural and mechanical
characterization of three different AA 3104-H19 rolled coils, to be able to compare them in search of similarities and discrepancies. Their chemical compositions were analyzed by energy dispersion (EDS), and atomic absorption (AA) spectrometry, their micro structures were identified by optical microscopy and scanning electron microscopy. Their mechanical properties were described by tensile tests, Erichsen tests, forming limit curves (FLC), micro
hardness Vickers tests, and surface roughness tests (Ra). The anisotropy coefficient R, also known as Lankford´s R, and the strain hardening exponent n were calculated using the results
and specimens of the tensile tests. In addition, their crystallographic textures were analyzed by orientation distribution functions and pole figures. The experiment s results showed a strong similarity among all three rolled sheets, their properties differing only subtly. On average the yield strength of all three was found to be 265 MPa, their ultimate tensile strength
285 MPa. Elongation was very similar for all three, around 4.7%. The strain hardening exponent n averaged 0.078, a value comparable to some found in literature. The normal (R)
and planar (UR) anisotropy values were found to be 0.77 and 0.22, respectively, indicating a slight tendency to form ears at 45o and good deep drawing formability. The microstructure
analysis of all three sheets revealed two kinds of intermetallic compounds with distinct morphology, Al6(Fe,Mn) and Al12(Fe,Mn)3Si, not scattered homogeneously, together with
well distributed dispersoids in the aluminum matrix. The crystallographic texture of the three sheets also exhibited similarities; all had the same dominant components with comparable intensities. On all three it was possible to notice that the typical strain hardening textures, Brass {110}<112> and Copper {112}<111>, together with Goss {110}<001>, were balanced by the Cube {001}<100> component, typical of recrystallization. The notable differences found could be summarized in slightly higher mechanical properties for one of the sheets and smaller and less widespread intermetallic compounds for another. / A indústria de embalagens metálicas para bebidas se destaca como uma das mais importantes no consumo mundial de alumínio. O conhecimento detalhado da matéria prima utilizada para
a produção de latas para bebidas é essencial para manter e melhorar os níveis de produtividade impostos pelo mercado. O foco do presente trabalho encontra-se na caracterização microestrutural e mecânica de três diferentes laminados da liga de alumínio 3104-H19, a fim de compará-los em busca de similaridades e discrepâncias. As suas composições químicas foram avaliadas através de espectroscopia de dispersão de energia (EDS-MEV) e de absorção atômica (AA). Suas microestruturas foram analisadas através de microscopia óptica e microscopia eletrônica de varredura. Suas propriedades mecânicas foram apuradas pelo uso de ensaios de tração uniaxiais, ensaios Erichsen, curvas limite de conformação (CLC), microdureza Vickers, e rugosidade (Ra). O coeficiente de anisotropia, R de Lankford, e o expoente de encruamento (n), foram calculados através dos resultados dos ensaios de caracterização mecânica.Em adição, uma análise da textura cristalográfica dos laminados foi realizada através do uso de funções de distribuição de orientação e figuras de polo. Os resultados demostraram semelhança entre os três laminados, suas propriedades e características diferindo apenas sutilmente. Na média o limite de escoamento dos três ficou em 265 MPa e o limite de resistência a tração em 285 MPa. Os alongamentos percentuais ficaram todos ao redor de 4,7%. O expoente de encruamento n ficou na média em 0,078, valor próximo a alguns encontrados na literatura. Os índices de anisotropia normal (R) e planar (UR) ficaram próximos a 0,77 e -0,22, respectivamente, indicando uma leve tendência ao orelhamento a 45º e boa conformabilidade em repuxo profundo. A análise microestrutural dos três laminados revelou dois tipos de compostos intermetálicos com morfologia distinta, Al6(Fe,Mn) e Al12(Fe,Mn)3Si, espalhados não homogeneamente, junto à dispersoides bem distribuídos na matriz de alumínio. A textura cristalográfica dos três laminados também exibiu similitudes, todas com as mesmas componentes dominantes em intensidades parecidas. Nos três notou-se que a textura típica de deformação para ligas de alumínio, latão {110}<112> e cobre {112}<111>, junto a textura Goss {110}<001>, estavam balanceadas
pela textura cubo {001}<100>, típica de recristalização. As diferenças encontradas resumiram-se a propriedades mecânicas sutilmente superiores em um dos laminados e compostos intermetálicos menores e em menor volume em outro.
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Processamento e caracterização da liga 66%Co-28%Cr-6%Mo para implantes / Processing and Characterization of the 66Co-28Cr-6Mo (%weight) alloy for implantsLuiz Alberto dos Santos 27 February 2012 (has links)
Neste trabalho foram avaliadas as condições de processamento e caracterização da liga 66Co-28Cr-6Mo utilizada em implantes. Cada lingote foi produzido por meio de fusão a arco voltáico, sob atmosfera de argônio em um cadinho de cobre refrigerado à água. Os resultados foram comparados com aqueles de uma barra da liga 66Co-28Cr-6Mo comercial. A temperatura de forjamento a quente da liga é em torno de 1200º C, pois temperaturas menores levam a fraturas do material no decorrer do forjamento. Na análise química realizada na liga 66Co-28Cr-6Mo obteve-se uma concentração de 0,038%C, ou seja, esta concentração encontrada nos lingotes da liga 66Co-28Cr-6Mo produzida estão dentro das especificações da norma ASTM F1537 para a liga com baixo teor de carbono (0,14%C). Os lingotes apresentaram uma microestrutura policristalina, com presença de defeitos volumétricos (poros) possívelmente advindos do processo de solidificação. Foram realizados ensaios de oxidação nas temperaturas de 1200 oC, 1100 oC, 1000 oC e 900 oC por cerca de 30 minutos para avaliar o grau de oxidação da liga de 66Co-28Cr-6Mo em elevadas temperaturas, pois a conformação mecânica da liga é realizada a quente conforme descrito na norma ASTM F1537. O limite de escoamento à tração da liga 66Co-28Cr-6Mo na condição bruta é em média de 750 MPa e o módulo de elasticidade da mesma liga é, aproximadamente de 158 GPa. Notou-se na liga 66Co-28Cr-6Mo comercial uma microestrutura com grãos refinados, proveniente do processo de forjamento a quente. Além disso, observa-se a presença de maclas, porém não se pode afirmar se este defeito é devido à deformação plástica ou tratamento térmico. O limite de escoamento à tração da liga 66Co-28Cr-6Mo comercial foi de 975 MPa e módulo de elasticidade é, de aproximadamente de 203 GPa. A densidade de corrente de corrosão das ligas 66Co-28Cr-6Mo produzida e comercial são respectivamente 1,9x10-7 e 1,5x10-7 Acm-2. Estes valores indicam uma alta resistência à corrosão de ambas as ligas em solução de Ringer. As amostras das ligas 66Co-28Cr-6Mo comercial e produzida apresentaram uma curva de viabilidade celular acima da linha do índice de citotoxicidade (IC50%) = 50%, ou seja, as ligas são consideradas não tóxica. / In this study we evaluated the processing conditions and characterization alloy 28%Cr 66%Co-6%Mo used in implants. Each ingot was produced by through arc melting arcing under argon atmosphere in a water-cooled copper crucible. The results were compared with those of a commercial bar 66Co-28Cr-6Mo alloy. The temperature of hot forging 66Co-28Cr-6Mo alloy should be around 1200 º C because lower temperatures lead to fracture of the material during forging. In the chemical analysis performed on the alloy 66Co-28Cr-6Mo obtained a concentration 0,038 %C. Indeed the alloy 66Co-28Cr-6Mo produced are within the specifications of ASTM F1537 for the alloy with low carbon (0.14% C). The ingots had a polycrystalline microstructure with the presence of volumetric defects (pores) possibly arised from the solidification process. Oxidation tests were carried out at temperatures of 1200 oC, 1100 oC 1000 oC and 900 oC for about 30 minutes to evaluate the degree of oxidation of 66Co-28Cr -6Mo alloy at high temperatures because of the mechanical forming league will be held hot. The tensile yield strength of the 66Co-28Cre-6Mo alloy is provided and gross average of 750 MPa and elasticity of the same alloy is approximately 158 GPa. It was noted in the 66Co-28Cr-6Mo alloy commercial grain microstructure with a refined, from the hot forging process. Moreover, observed the presence of twinned, but one cannot say whether this defect is due to plastic deformation or heat treatment. The tensile yield strength of the 66%Co-28%Cr-6%Mo alloy trade was 975 MPa and modulus of elasticity is of approximately 203 GPa. The corrosion current density of the 66Co-28Cr-6Mo alloys and commercial produced are respectively 1,9.10-7 and 1,5.10-7 Acm-2. These values indicate a high corrosion resistence of both alloys in Ringer\'s solution. Samples of the commercial and produced 66Co-28Cr-6Mo alloys a curve above the cell viability index of citotoxicity (IC50%) = 50% the alloys are considered non-toxic.
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Caracterização microestrutural e mecânica de juntas soldadas a laser em um aço ARBL / Microstructural and mechanical characterization of laser welded joints on a HSLA steelHenrique Varella Ribeiro 14 October 2016 (has links)
Os aços de alta resistência e baixa liga (ARBL) são amplamente empregados nas indústrias automotiva, petrolífera e naval por apresentarem boas propriedades mecânicas e boa soldabilidade. A seleção do processo de soldagem utilizado para a fabricação de componentes depende de vários fatores, entre eles a qualidade do cordão de solda e a capacidade de produção, ambas obtidas ao se utilizar a soldagem a laser, processo que vem sendo cada vez mais utilizado nas indústrias. As propriedades dos cordões de solda são afetadas pelo processo de soldagem e pelos parâmetros do processo, e o conhecimento do desempenho mecânico do cordão de solda é essencial para garantir a confiabilidade da união soldada. A caracterização mecânica de cordões de solda é complexa devido aos diversos fatores que podem afetá-lo, como as alterações metalúrgicas, diferentes propriedades mecânicas nas regiões do cordão de solda, presença de descontinuidades, tensão residual e complexo estado de tensão devido à geometria da junta. O presente trabalho obteve uniões entre chapas de aço ARBL pelo processo a laser em duas condições diferentes: com alto aporte térmico e baixo aporte térmico. A utilização de diferentes aportes térmicos gerou cordões de solda com microestruturas distintas, e avaliou-se, deste modo, o comportamento mecânico associando-o à microestrutura gerada. Para a avaliação da microestrutura utilizou-se da microscopia óptica e eletrônica de varredura, e para a caracterização mecânica empregou-se a aferição da dureza, ensaio de tração, ensaio de tenacidade à fratura, avaliada pelo CTOD, e ensaio de propagação da trinca por fadiga. Devido às alterações metalúrgicas causadas pelos diferentes aportes térmicos verificou-se diferente comportamento mecânico entre os cordões de solda em função da microestrutura obtida. / High-strength low-alloy steels (HSLA) are widely used in the automotive and oil industries due to their good mechanical properties and good weldability. The selection of the welding process used to manufacture components depends on several factors, including the quality of the weld bead and the production capacity, both obtained when using laser welding, a process, which is being increasingly used in the industries. The weld beads properties are affected by the welding process and by its parameters, and the knowledge of the weld bead mechanical performance is essential to ensure the reliability of the welded joint. The weld beads mechanical characterization is complex due to various factors that may affect it, such as metallurgical changes, different mechanical properties in the regions of the weld bead, presence of discontinuities, residual stress and complex state of tension due to the geometry of the joint. The present work obtained the joining of HSLA steel sheets by laser process in two different conditions, with high heat input and low heat input. The use of different heat inputs produced weld beads with different microstructures; therefore, the welded joints were evaluated according to their mechanical behavior, relating it with the microstructural generated. For the microstructure evaluation, optical microscopy and scanning electron microscopy were used, and for the mechanical characterization hardness determination, tensile test, fracture toughness test (evaluated by CTOD) and fatigue crack propagation were performed. Due to the metallurgical changes caused by the different heat inputs, a different mechanical behavior was observed between the weld beads as a function of the microstructure obtained.
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Caractérisation mécanique de la paroi artérielle pathologique : approches expérimentales et numériques / Mechanical characterization of pathological arterial wall : experimental and numerical approachesMarais, Louise 15 December 2016 (has links)
Les pathologies vasculaires provoquent un remodelage de la paroi artérielle pouvant entraîner une modification de sa rigidité et de son comportement mécanique. L’objectif de cette thèse est de proposer des méthodes de caractérisation mécanique permettant d’identifier les changements de propriétés mécaniques artérielles dans le cadre de deux situations pathologiques : l’anévrysme de l’aorte abdominale (AAA) et l’hypertension artérielle (HTA). La première étude a consisté à évaluer in vitro les modifications de fonctionnalité de l’artère dans le cas d’un AAA obtenu par le modèle de xénogreffe chez le rat qui permet de reproduire certains aspects de la pathologie humaine et qui est utilisé pour la mise au point de thérapies cellulaires. Une analyse des variations régionales des propriétés mécaniques du tissu anévrysmal a d’abord été menée en effectuant des tests de traction sur anneaux d’AAA. Des tests d’extension-inflation ont ensuite été réalisés sur la structure vasculaire pour des conditions de chargement reproduisant celles observées in vivo. Dans chacun des cas, une méthode inverse couplée à un modèle numérique par éléments finis a été développée afin d’identifier les paramètres matériaux du tissu vasculaire. Dans la deuxième étude, la rigidité artérielle a été mesurée in vivo sur une population de patients atteints d’HTA et de sujets sains en utilisant deux méthodes non-invasives qui ont été développées et optimisées : l’imagerie ultrarapide de l’onde de pouls et l’élastographie par ondes de cisaillement de la paroi artérielle. Ces deux méthodes s’appuient sur un échographe ultrarapide. La vitesse de l’onde de pouls locale sur un segment de la carotide a ainsi pu être évaluée, ainsi que la vitesse de propagation d’ondes de cisaillement générées dans la paroi à plusieurs instants du cycle cardiaque. Les deux approches in vitro et in vivo ont ainsi permis d’évaluer certains changements de propriétés mécaniques de la paroi artérielle dans des cas pathologiques. Bien que tous les mécanismes biologiques de l’AAA et de l’HTA soient complexes, ce travail permet de contribuer à une meilleure compréhension des pathologies vasculaires pouvant ainsi aider au choix ou au développement de traitements adaptés, tant d’un point de vue pharmacologique que dans le cadre de nouvelles thérapies cellulaires. / Vascular pathologies are generally accompanied by a remodeling of the arterial wall that may lead to modifications of its stiffness and mechanical behavior. The goal of this thesis is to propose methods of mechanical characterization allowing to detect the changes in arterial mechanical properties in the case of two pathologies: abdominal aortic aneurysm (AAA) and arterial hypertension (HTA). The first study consisted in evaluating in vitro the arterial functional modifications in the case of an AAA obtained by the rat xenograft model which reproduces several biological features of the human pathology and is used to develop cell therapies. First, the assessment of regional variations in mechanical properties of aneurysmal tissue was conducted by carrying out traction tests on rings from AAAs. Then, extension-inflation tests were conducted on the vascular structure for loading conditions replicating those observed in vivo. In each case, an inverse method associated with a numerical finite element model was developed to identify the material parameters of vascular tissue. In the second study, arterial stiffness was measured in vivo for a population of hypertensive patients and healthy subjects using two non-invasive methods which were developed and optimized: ultrafast imaging of the pulse wave and shear wave elastography of the arterial wall. These two methods are based on an ultrafast ultrasound scanner. Thus the local pulse wave velocity on a segment of the carotid artery was assessed, as well as the propagation speed of shear waves created in the arterial wall at several moments during the cardiac cycle. Both in vitro and in vivo approaches enabled to evaluate some changes in mechanical properties of the arterial wall in pathological cases. Although all the biological mechanisms of AAA and HTA are complex, this work provides a contribution to a better understanding of vascular pathologies and can thereby assist in the choice or development of adapted treatments, from both a pharmacological point of view, and within the context of new cell therapies.
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Etude de l'endommagement lors du démasselotage à chaud de bielles en fonte GS ADI moulées forgées. / Study of damage during the hot-cutting of molded and forged austempered ductile iron automotive connecting rods.Martinez, Thomas 19 December 2016 (has links)
Les travaux de cette thèse ont été initiés par la volonté industrielle de lever le verrou technologique du démasselotage à chaud de bielles en fonte GS. Ces bielles sont obtenues par un procédé de fabrication hybride innovant mêlant forgeage et fonderie en moule métallique. Ce procédé exige que le démasselotage soit effectué dans la « chaude de coulée » lorsque la fonte GS est en phase austénitique. La découpe de la fonte dans ces conditions de température fait apparaître des défauts majeurs sur les surfaces découpées préjudiciables à la suite du process. Pour pouvoir répondre à cette problématique, une étude est menée sur la caractérisation du comportement et de l’endommagement de la fonte GS dans les conditions de température du process. Une attention particulière est portée sur l’influence de la microstructure nodulaire sur les mécanismes de la rupture. Afin de se doter d’outils de simulation pour mettre au point le processus de démasselotage à chaud, les paramètres du modèle de comportement et d’endommagement de Gurson-Tvergaard-Needleman appliqués à la fonte GS sont identifiés par méthode inverse. Enfin, un plan d’expérience est déployé sur un démonstrateur de découpe instrumenté afin d’obtenir la configuration optimale des paramètres process pour une découpe sans défaut. Cette dernière étude met en avant la présence d’une transition d’un mode de rupture ductile à fragile lors de l’apparition des défauts de démasselotage. / This work was initiated by the technological problematic of hot trimming of nodular cast iron connecting rods. These connecting rods are obtained by an innovative hybrid process that combines forging and metal mold casting. This process requires the trimming to be conducted at high temperatures in the is the austenitic phase of the cast iron. Hot trimming of cast iron brings up major defects on the cut surfaces which are detrimental to the continuing process. To address this problem, a study is conducted on the characterization of the mechanical behavior of nodular cast iron in the process temperature conditions. A particular attention is paid to the influence of the nodular microstructure on the failure mechanisms. To develop simulation tools for nodular cast iron hot trimming, the parameters of Gurson-Tvergaard-Needleman model are identified by inverse method for our material. Finally, a design of experiment is deployed using an instrumented demonstrator to obtain the optimum parameters configuration for a maximized cut surface quality. This latest study highlights the presence of a transition from ductile to brittle mode of failure leading to the hot trimming defects.
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Étude de l'influence de la vitesse de déformation sur la réponse à l'indentation des matériaux polymères / Study of the strain rate effect of polymeric material using indentation testRabemananjara, Liva 26 November 2015 (has links)
L'objectif de cette thèse est d'étudier l'influence de la vitesse de déformation sur la réponse par indentation des matériaux. Les matériaux polymères thermoplastiques, notamment le Polycarbonate (PC), le Polyméthylméthacrylate (PMMA), le Polyéthylène à Haute Densité (PEHD) et le Polyamide Nylon 6.6 renforcé à 30% de fibres de verres (PA 6.6-30% GFR), ont été choisis comme matériaux d'études en raison de leur forte sensibilité à la vitesse de déformation même à température ambiante. Les deux premières parties de ce travail sont focalisées sur l'étude du comportement thermomécanique des matériaux polymères. Une étude bibliographique sur des matériaux polymères thermoplastiques, amorphes et semi-cristallins, a été effectuée afin de comprendre leur microstructure et leur mécanisme de déformation. De plus, des essais de compression simple ont été réalisés sur les matériaux d'étude à différentes vitesses de traverse constantes puis dépouillés analytiquement. Les trois derniers chapitres de cette thèse sont consacrés à la caractérisation mécanique des matériaux par indentation. En premier lieu des simulations numériques de l'essai d'indentation conique ( =70,3°) à une vitesse de pénétration constante ( = 1 µm/s) ont été effectuées à partir des paramètres de la loi de G'sell modifiée et de la loi puissance identifiés par compression. L'identification par analyse inverse des paramètres de la loi de G'sell modifiée à 7 paramètres sur des courbes pseudo-expérimentales nous a permis de confirmer la non unicité de la solution. Ainsi, nous avons effectué l'étude théorique de l'indentation sur des matériaux pseudo-expérimentaux en utilisant la loi puissance. Un nouveau concept de déformation représentative et de vitesse de déformation représentative, basé sur l'analyse du domaine de solution regroupant l'ensemble des paramètres donnant les mêmes courbes d'indentation, a été proposé. La procédure d'identification des paramètres de la loi puissance par indentation utilisant ce concept de déformation représentative et de vitesse de déformation représentative, appliquée sur un matériau pseudo-expérimental donne des résultats très satisfaisants. Sur les matériaux d'étude en revanche la méthode n'a pu révéler son potentiel puisque la loi de comportement de ces matériaux n'est pas correctement modélisée par une loi puissance sur une large plage de déformation et de vitesse de déformation. Enfin, le concept de déformation représentative et de vitesse de déformation représentative proposé dans ce travail apporte de nouveaux outils d'analyse et d'exploitation des données de l'indentation et offre des perspectives très intéressantes. / The aim of this thesis is to study the strain rate effects through materials response from indentation test. Polymeric solid material, especially Polycarbonate (PC), Polymethyl methacrylate (PMMA), High Density Polyethylene (HDPE) and Polyamide Nylon 6.6 -30% glass fiber reinforced (PA 6.6-30% GFR), were selected as study materials due to their high strain rate sensitivity even at room temperature. The first two parts of this work were focused on the study of the thermomechanical behavior of polymer materials. Bibliographical studies of thermoplastic polymer materials, amorphous and semi-crystalline, was established in order to understand their microstructure and deformation mechanism. Moreover, compression tests were performed on study materials with several crosshead speeds values then the results was exploited analytically. The last three parts were focused on mechanical characterization using Instrumented Indentation Test (IIT). Firstly, numerical simulation of a conical indentation test ( =70.3°) with a constant rate displacement ( = 1 µm/s) was established using the identified G’sell behavior parameters and the power-law parameters from compression test. Parameter identification using Inverse Analysis from numerical material shows the non-uniqueness of G’sell parameters which gives the same indentation curve. Thus, theoretical study of conical indentation test was established considering power-law model. A new concept of the representative strain and the representative strain rate, based on solution domain which associate the set of parameters leading to the same indentation curves, was proposed. Very satisfactory results was obtained when identification process using this average representative strain rate is applied to a numerical material define by a power-law model. However, this method could not show its efficiency because the mechanical behavior of the real material is not correctly modeling with a power-law at a wide range of strain and strain rate. Finally, the new concept of the representative strain and the representative strain rate proposed on this work contributes to a new investigation tools to exploit the results form IIT and provide a very interesting perspectives.
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Caractérisation mécanique des matériaux élastiques à l'échelle locale par microscopie à pointe vibrante : Approche multimodale et mesure de champs / Mechanical characterization of elastic materials at local scale using vibrating tip acoustic microscopy : Multimodal approach and full-field measurementTravaillot, Thomas 14 May 2014 (has links)
Ces travaux de thèse proposent une amélioration du Scanning Microdeformation Microscope (SMM),un microscope à sonde locale, pour la caractérisation mécanique élastique des matériaux à l’échellelocale. Il est montré qu’en utilisant n > 2 modes de résonance du SMM, il est possible de découplerles mesures du module de Young et du coefficient de Poisson d’un matériau isotrope.Une étude des modes du résonateur a permis d’enrichir son modèle afin qu’il puisse modélisern > 2 modes. Des procédures ont été développées pour identifier les paramètres de ce modèle etles constantes élastiques des matériaux à partir de n > 2 fréquences de résonance. Enfin, ces procéduresont été appliquées à des exemples de caractérisation à l’échelle locale afin de valider laméthode et d’en exhiber les possibilités et les limites.Pour gagner en robustesse et se diriger vers la caractérisation des matériaux anisotropes, un systèmed’imagerie interférométrique en lumière polarisée, permettant la mesure du champ de rotationde surfaces réfléchissantes dans une direction particulière, a été développé pour être intégré auSMM. Son prisme biréfringent à gradient uniaxial d’indice lui confère sa sensibilité à la rotation. Cesystème est capable de mesurer un champ de rotation localisé comme c’est le cas au voisinage dela pointe du SMM. Il a aussi montré son intérêt dans les cas où l’effet d’échelle rend particulièrementintéressante la mesure de la rotation. / This work proposes an improvement of the Scanning Microdeformation Microscope (SMM), a scanningprobe microscope, for the mechanical elastic characterization of materials at local scale. It demonstratesthat using n > 2 SMM resonance frequencies allows to decouple Young’s modulus andPoisson’s ratio values for an isotropic material.The mechanical description of the resonator has been enriched in order to allow for an accuratemodeling over a wide frequency range. Procedures have been developed to identify the modellingparameters and the elastic constants of the materials from n > 2 resonant frequencies. Finally, theseprocedures have been applied to the characterization of various materials at local scale in order tovalidate the method and to present possibilities and limits.To improve robustness and move towards the characterization of anisotropic materials, a polarizedlightimaging interferometer was developed to measure the rotation field of reflecting surfaces in aparticular direction. The sensitivity to the rotation originates from a homemade birefringent prism withuniaxial gradient of refractive index. This system is able to measure a localized rotation field as it isinduced in the vicinity of the tip of the SMM. Its interest is also demonstrated in cases in which scaleeffects make the rotation measurement preferable to the out-of-plane displacement measurement.
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Comportement mécanique et durabilité de structures en béton renforcées par des armatures composites internes / Mechanical behaviour and durability of concrete structures reinforced by internal composite rebarsRolland, Arnaud 27 March 2015 (has links)
La corrosion des armatures constitue la principale cause de dégradation des ouvrages en béton armé, et occasionne des coûts élevés de maintenance/réparation. Pour prévenir ce problème sur ouvrages neufs, une solution consiste à renforcer les structures en béton par des armatures non-métalliques de type Polymère Renforcé de Fibres (PRF), généralement à base de fibres de verre, de carbone ou d'aramide. Il existe aujourd'hui plusieurs textes réglementaires consacrés aux armatures PRF, notamment aux USA, au Canada et au Japon, et de nombreux ouvrages en béton armé par barres en PRF ont d'ailleurs été construits dans ces pays. Cependant, si l'utilisation de ces nouvelles armatures semble à priori prometteuse, elle suscite encore des réserves de la part des maîtres d'ouvrages, notamment en France. Il subsiste en effet des incertitudes sur le comportement à long terme des structures renforcées par PRF, et plus particulièrement sur la durabilité en milieu alcalin des armatures à matrice vinylester ou époxy renforcée par des fibres de verre (PRFV), qui sont actuellement les plus utilisées, ou encore sur le vieillissement de l'interface PRF/béton. Dans ce contexte, la présente étude vise à développer pour la première fois en France, un ensemble de méthodologies permettant, d'une part, de caractériser les principales propriétés physiques, mécaniques et d'interface des différentes armatures en PRF disponibles sur le marché, mais également d'évaluer la durabilité d'armatures en PRFV (les plus représentatives du marché) et de l'interface PRFV/béton à travers des procédures pertinentes de vieillissements accélérés. La première partie de l'étude a donc été consacrée à la caractérisation physique et mécanique d'une sélection d'armatures du commerce, confectionnées à base de fibres de verre, de carbone ou d'aramide, et au comportement mécanique de l'interface entre ces PRF et le béton. Outre la caractérisation microstructurale des PRF par techniques de microscopie et d'analyse thermique, la mise en place de dispositifs d'essais de traction et de flexion 3 points à appuis rapprochés (Short-beam test) a permis d'accéder respectivement aux propriétés mécaniques en traction (module d'élasticité, résistance) et à la résistance au cisaillement inter-laminaire des armatures. Des essais spécifiques d'arrachement (Pull-out) ont ensuite permis d'évaluer l'influence de différents paramètres (type de fibre, diamètre et géométrie de surface des barres) sur le mécanisme de transfert d'effort à l'interface armature/béton. Une grande originalité de l'approche proposée réside dans l'instrumentation d'une partie des corps d'épreuve par des capteurs de déformation à fibre optique disposés au niveau de l'interface armature/béton ; ce dispositif de mesures réparties permet d'accéder à des informations locales comme le profil des déformations de traction de l'armature, et d'en déduire la longueur d'ancrage des différentes armatures dans le béton. En complément de l'étude expérimentale précédente, un travail de modélisation analytique et numérique a été initié en vue de simuler les essais d'arrachement et d'appréhender plus finement les mécanismes d'interface mis en jeu entre l'armature et le béton lors de ces essais. Dans cette optique, un modèle analytique d'interface a tout d'abord été proposé, puis introduit dans un modèle aux éléments finis (modèle d'endommagement de zones cohésives). Enfin, un protocole de vieillissement accéléré a été appliqué à des barres en PRFV seules ou noyées dans un milieu cimentaire. Les caractéristiques résiduelles des armatures et des interfaces ont été évaluées à différentes échéances de vieillissement (jusqu'à 240 jours). Hormis une diminution des propriétés mécaniques des barres soumises à une immersion directe en solution alcaline, cette condition pouvant être considérée comme très sévère par rapport aux conditions de service, il n'a pas été observé de dégradation des propriétés d'adhérence PRF/béton par rapport à l'état initial / Corrosion of the steel reinforcing bars (rebars) is the main process involved in the degradation of reinforced concrete (RC) structures, and has large repercussions on the maintenance/reparation expenses. To prevent such degradations on new infrastructures, the use of corrosion-free reinforcements, such as Fiber Reinforced Polymer (FRP) bars based on glass, carbon or aramid fibers, is gaining interest. Specific guidelines are already available in several countries (USA, Canada or Japan for instance), that define the design principles and good practices for this type of internal rebars; beside, many FRP RC structures have been built and are in service in these countries. Although the development of these new reinforcing bars is quite promising, infrastructures owners are still reluctant for their wide-scale use, especially in France. There are still major concerns regarding the long term behavior of FRP RC structures, and more particularly, the durability of glass fibers reinforced polymers (GFRP) when subjected to an alkaline environment, and the ageing behavior of the GFRP/concrete bonding as well. In this context, the present study aims at developing for the first time in France, a set of methodologies that allows : to characterize the main physical/mechanical properties of different types of FRP bars from the marketto assess the durability of GFRP bars (the most common type of bar) and their interface with concrete through relevant accelerated ageing procedures. The first part of this study was thus devoted to the physical/mechanical characterization of a selection of commercially available FRP rebars, based on glass, carbon or aramid fibers, and to the mechanical behavior of corresponding FRP/concrete interfaces. Beside the microstructural characterization of the various FRP materials by microscopy and thermal analysis techniques, tensile and short beam tests were developed in order to determine the tensile properties (Young's modulus and strength) and the interlaminar shear strength (ILSS) of the bars. Specific pull-out tests then made it possible to evaluate the influence of several parameters (type of fibers, diameter and surface geometry of the bars) on the mechanism of load transfer at the bar/concrete interface. A main originality of the proposed approach relied on the instrumentation of several test bodies by optical fiber strain sensors, which were installed along the bar/concrete interface. Such a distributed measurement system provided local information in the form of tensile strain profiles of the bars along the interface, and made it possible to determine the effective transfer length of the various types of FRP bars. As a complement to the previous experimental study, an analytical and numerical modeling work was initiated to simulate the pull-out tests and investigate more closely the interfacial mechanisms involved in the FRP bar/concrete bond behavior. In this line, an improved interface model was first proposed, which was then implemented in a finite element model (cohesive zone model formulated in the context of damage mechanics).Finally, an accelerated ageing protocol was developed and applied to the GFRP bars, either alone or embedded in a concrete medium. The retention properties of both bars and interfaces were determined after various periods of exposure (up to 240 days). Except a drop of tensile properties observed for GFRP bars that were directly immersed in an alkaline solution, which is considered as a very severe environment compared to actual service conditions, no significant loss of interfacial properties was detected on aged specimens compared to the initial state
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