761 resultados para Dislocation Creep


Relevância:

10.00% 10.00%

Publicador:

Resumo:

Screw dislocations in bcc metals display non-planar cores at zero temperature which result in high lattice friction and thermally-activated strain rate behavior. In bcc W, electronic structure molecular statics calculations reveal a compact, non-degenerate core with an associated Peierls stress between 1.7 and 2.8 GPa. However, a full picture of the dynamic behavior of dislocations can only be gained by using more efficient atomistic simulations based on semiempirical interatomic potentials. In this paper we assess the suitability of five different potentials in terms of static properties relevant to screw dislocations in pure W. Moreover, we perform molecular dynamics simulations of stress-assisted glide using all five potentials to study the dynamic behavior of screw dislocations under shear stress. Dislocations are seen to display thermally-activated motion in most of the applied stress range, with a gradual transition to a viscous damping regime at high stresses. We find that one potential predicts a core transformation from compact to dissociated at finite temperature that affects the energetics of kink-pair production and impacts the mechanism of motion. We conclude that a modified embedded-atom potential achieves the best compromise in terms of static and dynamic screw dislocation properties, although at an expense of about ten-fold compared to central potentials.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Nanofibrillar Al2O3–Y3Al5O12–ZrO2 eutectic rods were manufactured by directional solidification from the melt at high growth rates in an inert atmosphere using the laser-heated floating zone method. Under conditions of cooperative growth, the ternary eutectic presented a homogeneous microstructure, formed by bundles of single-crystal c-oriented Al2O3 and Y3Al5O12 (YAG) whiskers of ≈100 nm in width with smaller Y2O3-doped ZrO2 (YSZ) whiskers between them. Owing to the anisotropic fibrillar microstructure, Al2O3–YAG–YSZ ternary eutectics present high strength and toughness at ambient temperature while they exhibit superplastic behavior at 1600 K and above. Careful examination of the deformed samples by transmission electron microscopy did not show any evidence of dislocation activity and superplastic deformation was attributed to mass-transport by diffusion within the nanometric domains. This combination of high strength and toughness at ambient temperature together with the ability to support large deformations without failure above 1600 K is unique and shows a large potential to develop new structural materials for very high temperature structural applications.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Growth and biomechanics of etiolated hypocotyls from Arabidopsis thaliana lines overexpressing xyloglucan endotransglucosylase/hydrolase AtXTH18, AtXTH19, AtXTH20, and PttXET16-34 were studied. Overexpression of AtXTH18, AtXTH19, and AtXTH20 stimulated growth of hypocotyls, while PttXET16-34 overexpression did not show this effect. In vitro extension of frozen/thawed hypocotyls measured by a constant-load extensiometer started from a high-amplitude initial deformation followed by a slow time-dependent creep. Creep of growing XTH-overexpressing (OE) hypocotyls was more linear in time compared with the wild type at pH 5.0, reflecting their higher potential for long-term extension. XTH-OE plants deposited 65?84% more cell wall material per hypocotyl cross-sectional area than wild-type plants. As a result, their wall stress under each external load was lower than in the wild-type. Growing XTH-OE hypocotyls had higher values of initial deformation·stress?1 compared with the wild type. Plotting creep rates for each line under different loads against the respective wall stress values gave straight lines. Their slopes and intercepts with the abscissa correspond to ? (in vitro cell wall extensibility) and y (in vitro cell wall yield threshold) values characterizing cell wall material properties. The wall material in XTH-OE lines was more pliant than in the wild type due to lower y values. In contrast, the acid-induced wall extension in vitro resulted from increasing ? values. Thus, three factors contributed to the XTH-OE-stimulated growth in Arabidopsis hypocotyls: their more linear creep, higher values of initial deformation·stress?1, and lower y values.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

We aim at understanding the multislip behaviour of metals subject to irreversible deformations at small-scales. By focusing on the simple shear of a constrained single-crystal strip, we show that discrete Dislocation Dynamics (DD) simulations predict a strong latent hardening size effect, with smaller being stronger in the range [1.5 µm, 6 µm] for the strip height. We attempt to represent the DD pseudo-experimental results by developing a flow theory of Strain Gradient Crystal Plasticity (SGCP), involving both energetic and dissipative higher-order terms and, as a main novelty, a strain gradient extension of the conventional latent hardening. In order to discuss the capability of the SGCP theory proposed, we implement it into a Finite Element (FE) code and set its material parameters on the basis of the DD results. The SGCP FE code is specifically developed for the boundary value problem under study so that we can implement a fully implicit (Backward Euler) consistent algorithm. Special emphasis is placed on the discussion of the role of the material length scales involved in the SGCP model, from both the mechanical and numerical points of view.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

High-temperature nanoindentation was used to reveal nano-layer size effects on the hardness of two-dimensional metallic nanocomposites. We report the existence of a critical layer thickness at which strength achieves optimal thermal stability. Transmission electron microscopy and theoretical bicrystal calculations show that this optimum arises due to a transition from thermally activated glide within the layers to dislocation transmission across the layers. We demonstrate experimentally that the atomic-scale properties of the interfaces profoundly affect this critical transition. The strong implications are that interfaces can be tuned to achieve an optimum in high temperature strength in layered nanocomposite structures.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The effect of the applied stress on the deformation and crack nucleation and propagation mechanisms of a c-TiAl intermetallic alloy (Ti-45Al-2Nb-2Mn (at. pct)-0.8 vol. pct TiB2) was examined by means of in situ tensile (constant strain rate) and tensile-creep (constant load) experiments performed at 973 K (700 �C) using a scanning electron microscope. Colony boundary cracking developed during the secondary stage in creep tests at 300 and 400 MPa and during the tertiary stage of the creep tests performed at higher stresses. Colony boundary cracking was also observed in the constant strain rate tensile test. Interlamellar ledges were only found during the tensile-creep tests at high stresses (r>400 MPa) and during the constant strain rate tensile test. Quantitative measurements of the nature of the crack propagation path along secondary cracks and along the primary crack indicated that colony boundaries were preferential sites for crack propagation under all the conditions investigated. The frequency of interlamellar cracking increased with stress, but this fracture mechanism was always of secondary importance. Translamellar cracking was only observed along the primary crack.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

The mechanisms of growth of a circular void by plastic deformation were studied by means of molecular dynamics in two dimensions (2D). While previous molecular dynamics (MD) simulations in three dimensions (3D) have been limited to small voids (up to ≈10 nm in radius), this strategy allows us to study the behavior of voids of up to 100 nm in radius. MD simulations showed that plastic deformation was triggered by the nucleation of dislocations at the atomic steps of the void surface in the whole range of void sizes studied. The yield stress, defined as stress necessary to nucleate stable dislocations, decreased with temperature, but the void growth rate was not very sensitive to this parameter. Simulations under uniaxial tension, uniaxial deformation and biaxial deformation showed that the void growth rate increased very rapidly with multiaxiality but it did not depend on the initial void radius. These results were compared with previous 3D MD and 2D dislocation dynamics simulations to establish a map of mechanisms and size effects for plastic void growth in crystalline solids.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

We aim at understanding the multislip behaviour of metals subject to irreversible deformations at small-scales. By focusing on the simple shear of a constrained single-crystal strip, we show that discrete Dislocation Dynamics (DD) simulations predict a strong latent hardening size effect, with smaller being stronger in the range [1.5 µm, 6 µm] for the strip height. We attempt to represent the DD pseudo-experimental results by developing a flow theory of Strain Gradient Crystal Plasticity (SGCP), involving both energetic and dissipative higher-order terms and, as a main novelty, a strain gradient extension of the conventional latent hardening. In order to discuss the capability of the SGCP theory proposed, we implement it into a Finite Element (FE) code and set its material parameters on the basis of the DD results. The SGCP FE code is specifically developed for the boundary value problem under study so that we can implement a fully implicit (Backward Euler) consistent algorithm. Special emphasis is placed on the discussion of the role of the material length scales involved in the SGCP model, from both the mechanical and numerical points of view.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

En los últimos años ha habido una fuerte tendencia a disminuir las emisiones de CO2 y su negativo impacto medioambiental. En la industria del transporte, reducir el peso de los vehículos aparece como la mejor opción para alcanzar este objetivo. Las aleaciones de Mg constituyen un material con gran potencial para el ahorro de peso. Durante la última década se han realizado muchos esfuerzos encaminados a entender los mecanismos de deformación que gobiernan la plasticidad de estos materiales y así, las aleaciones de Mg de colada inyectadas a alta presión y forjadas son todavía objeto de intensas campañas de investigación. Es ahora necesario desarrollar modelos que contemplen la complejidad inherente de los procesos de deformación de éstos. Esta tesis doctoral constituye un intento de entender mejor la relación entre la microestructura y el comportamiento mecánico de aleaciones de Mg, y dará como resultado modelos de policristales capaces de predecir propiedades macro- y microscópicas. La deformación plástica de las aleaciones de Mg está gobernada por una combinación de mecanismos de deformación característicos de la estructura cristalina hexagonal, que incluye el deslizamiento cristalográfico en planos basales, prismáticos y piramidales, así como el maclado. Las aleaciones de Mg de forja presentan texturas fuertes y por tanto los mecanismos de deformación activos dependen de la orientación de la carga aplicada. En este trabajo se ha desarrollado un modelo de plasticidad cristalina por elementos finitos con el objetivo de entender el comportamiento macro- y micromecánico de la aleación de Mg laminada AZ31 (Mg-3wt.%Al-1wt.%Zn). Este modelo, que incorpora el maclado y tiene en cuenta el endurecimiento por deformación debido a las interacciones dislocación-dislocación, dislocación-macla y macla-macla, predice exitosamente las actividades de los distintos mecanismos de deformación y la evolución de la textura con la deformación. Además, se ha llevado a cabo un estudio que combina difracción de electrones retrodispersados en tres dimensiones y modelización para investigar el efecto de los límites de grano en la propagación del maclado en el mismo material. Ambos, experimentos y simulaciones, confirman que el ángulo de desorientación tiene una influencia decisiva en la propagación del maclado. Se ha observado que los efectos no-Schmid, esto es, eventos de deformación plástica que no cumplen la ley de Schmid con respecto a la carga aplicada, no tienen lugar en la vecindad de los límites de baja desorientación y se hacen más frecuentes a medida que la desorientación aumenta. Esta investigación también prueba que la morfología de las maclas está altamente influenciada por su factor de Schmid. Es conocido que los procesos de colada suelen dar lugar a la formación de microestructuras con una microporosidad elevada, lo cuál afecta negativamente a sus propiedades mecánicas. La aplicación de presión hidrostática después de la colada puede reducir la porosidad y mejorar las propiedades aunque es poco conocido su efecto en el tamaño y morfología de los poros. En este trabajo se ha utilizado un enfoque mixto experimentalcomputacional, basado en tomografía de rayos X, análisis de imagen y análisis por elementos finitos, para la determinación de la distribución tridimensional (3D) de la porosidad y de la evolución de ésta con la presión hidrostática en la aleación de Mg AZ91 (Mg- 9wt.%Al-1wt.%Zn) colada por inyección a alta presión. La distribución real de los poros en 3D obtenida por tomografía se utilizó como input para las simulaciones por elementos finitos. Los resultados revelan que la aplicación de presión tiene una influencia significativa tanto en el cambio de volumen como en el cambio de forma de los poros que han sido cuantificados con precisión. Se ha observado que la reducción del tamaño de éstos está íntimamente ligada con su volumen inicial. En conclusión, el modelo de plasticidad cristalina propuesto en este trabajo describe con éxito los mecanismos intrínsecos de la deformación de las aleaciones de Mg a escalas meso- y microscópica. Más especificamente, es capaz de capturar las activadades del deslizamiento cristalográfico y maclado, sus interacciones, así como los efectos en la porosidad derivados de los procesos de colada. ---ABSTRACT--- The last few years have seen a growing effort to reduce CO2 emissions and their negative environmental impact. In the transport industry more specifically, vehicle weight reduction appears as the most straightforward option to achieve this objective. To this end, Mg alloys constitute a significant weight saving material alternative. Many efforts have been devoted over the last decade to understand the main mechanisms governing the plasticity of these materials and, despite being already widely used, high pressure die-casting and wrought Mg alloys are still the subject of intense research campaigns. Developing models that can contemplate the complexity inherent to the deformation of Mg alloys is now timely. This PhD thesis constitutes an attempt to better understand the relationship between the microstructure and the mechanical behavior of Mg alloys, as it will result in the design of polycrystalline models that successfully predict macro- and microscopic properties. Plastic deformation of Mg alloys is driven by a combination of deformation mechanisms specific to their hexagonal crystal structure, namely, basal, prismatic and pyramidal dislocation slip as well as twinning. Wrought Mg alloys present strong textures and thus specific deformation mechanisms are preferentially activated depending on the orientation of the applied load. In this work a crystal plasticity finite element model has been developed in order to understand the macro- and micromechanical behavior of a rolled Mg AZ31 alloy (Mg-3wt.%Al-1wt.%Zn). The model includes twinning and accounts for slip-slip, slip-twin and twin-twin hardening interactions. Upon calibration and validation against experiments, the model successfully predicts the activity of the various deformation mechanisms and the evolution of the texture at different deformation stages. Furthermore, a combined three-dimensional electron backscatter diffraction and modeling approach has been adopted to investigate the effect of grain boundaries on twin propagation in the same material. Both experiments and simulations confirm that the misorientation angle has a critical influence on twin propagation. Non-Schmid effects, i.e. plastic deformation events that do not comply with the Schmid law with respect to the applied stress, are absent in the vicinity of low misorientation boundaries and become more abundant as misorientation angle increases. This research also proves that twin morphology is highly influenced by the Schmid factor. Finally, casting processes usually lead to the formation of significant amounts of gas and shrinkage microporosity, which adversely affect the mechanical properties. The application of hydrostatic pressure after casting can reduce the porosity and improve the properties but little is known about the effects on the casting’s pores size and morphology. In this work, an experimental-computational approach based on X-ray computed tomography, image analysis and finite element analysis is utilized for the determination of the 3D porosity distribution and its evolution with hydrostatic pressure in a high pressure diecast Mg AZ91 alloy (Mg-9wt.%Al-1wt.%Zn). The real 3D pore distribution obtained by tomography is used as input for the finite element simulations using an isotropic hardening law. The model is calibrated and validated against experimental stress-strain curves. The results reveal that the pressure treatment has a significant influence both on the volume and shape changes of individuals pores, which have been precisely quantified, and which are found to be related to the initial pore volume. In conclusion, the crystal plasticity model proposed in this work successfully describes the intrinsic deformation mechanisms of Mg alloys both at the mesoscale and the microscale. More specifically, it can capture slip and twin activities, their interactions, as well as the potential porosity effects arising from casting processes.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

El presente ensayo pretende aportar una reflexión sobre el amplio territorio de la imagen en la arquitectura hoy. Para ello un buen ejemplo es el proyecto del Rascacielos de la Friedrichstrasse, realizado por Mies van der Rohe en el periodo de entre guerras de 1921/22. Muchas son las razones que han hecho de esta obra la elegida, pero una más actual sobresale del resto: que de los cientos de ensayos vertidos sobre esta obra solo se haya comentado -salvo alguna excepción- las características objetuales de lo directamente descrito por las vistas -como si fuera un fiel reflejo de la realidad- sin entrar a analizar la verdadera naturaleza física y simbólica de lo representado como expresión subjetiva –espacial- de una arquitectura. Si su importancia como punto de inflexión en el desarrollo inicial de una obra plenamente moderna es un motivo más que suficiente para dedicarle un estudio pormenorizado, ya que puede resultar crucial para comprender los inicios del autor en el Movimiento Moderno. Su presencia como un reducido conjunto de cuatro vistas perspectivas, mezcla de una fotografía del lugar y de un dibujo realizado sobre la misma, acarrea en nuestra opinión significaciones igual de importantes para la comprensión de esta arquitectura que todas aquellas ideas descritas sobre las mismas. Creadas en una época seminal, cuando el lenguaje de la fotografía y el cine están en pleno desarrollo, se puede afirmar que el conjunto de representaciones del Rascacielos de la Friedrichstrasse forman parte como referente histórico de una de las primeras arquitecturas virtuales que pertenecen de pleno derecho al Movimiento Moderno. Paradigma de las más absoluta actualidad, por encontrarse en esa frontera de lo nunca realizado, pero sí asumible espacialmente como realidad fotográfica, las imágenes del rascacielos se pueden considerar así como una de las primeras reflexiones sobre la naturaleza virtual del proyecto arquitectónico postindustrial. No siendo novedoso que la descripción fotográfica de una obra absorba y comunique por sí misma las múltiples propiedades que esta posee, como tampoco lo es que la mayoría de arquitecturas se den por conocidas actualmente a través de los medios. Sorprende que hasta hoy no se hayan analizado con la misma intensidad las múltiples razones que dieron lugar a unas imágenes cuya poética da forma por igual a la arquitectura que representan. Si la intención es reflexionar así sobre este hecho contemporáneo mediante un ejemplo paradigmático, certificado por la historia, nos veremos obligados a emplear una metodología acorde a la condición dual que toda imagen mediatizada produce en su lectura como mezcla fluctuante entre lo que se interpreta de manera autónoma a través de lo representado y de los significados que la imagen adquiere a lo largo de su recorrido como referente histórico. Esta ambivalencia interpretativa llevará a organizar este ensayo mediante dos bloques claramente diferenciados que, complementarios entre sí, siguen el orden de lectura que toda imagen de una arquitectura ofrece a través de los medios. Así, una primera parte, titulada La imagen de una arquitectura, analiza la interpretación que la historia y el autor han dado al rascacielos por medio de su uso en las diferentes exposiciones, revistas, tratados de estilos y monografías de las que ha formado parte. Este recorrido, que es el verdadero espacio donde estas arquitecturas residen, limitado -por una cuestión de poner orden- al estudio a los países que acogieron en vida al autor, servirá para establecer una primera narrativa que expone las diferentes posiciones que la crítica ha producido a lo largo del tiempo. La presencia del primer rascacielos junto al segundo, en la publicación que el arquitecto realiza de manera temprana en Frühlicht, obligará a incorporar esta segunda solución como una parte más del estudio. Cargada de las citas obligadas, de las diferentes personalidades que se han enfrentado a dichos proyectos, este primer análisis historiográfico establece un primer estado de la cuestión donde se revela una lectura ambivalente de los rascacielos. Si la interpretación directa de sus imágenes ha permitido profundizar en las características del vidrio y sus reflejos y en la desnudez de una estructura metálica como claros ejemplos de una expresión moderna y tecnológica de vidrio y el acero. Las particulares formas triangulares del primero y las formas sinuosas del segundo han dado lugar a una multitud de calificaciones, de ser ejemplo tanto de un Expresionismo como de un dadaísmo o constructivismo, que con el tiempo han ido creciendo hacia una admiración artística con una fuerte carga poética. Este lectura histórica, que remata con un breve periodo más actual donde se inicia el cuestionamiento de su carácter utópico y se recupera puntualmente su naturaleza como proyecto, servirá para plantear finalmente una serie de dudas que, sin respuesta aparente, exigen revisar la lectura de sus imágenes como parte de lo que realmente son: expresión de una nueva arquitectura que a partir de ese preciso momento entra de pleno derecho en el Movimiento Moderno. Por otro lado, la existencia en el discurso posterior del arquitecto de un proceso de formalizacion altamente valorado por su autor y la presencia de igual a igual de un lugar en las representaciones y planos de los rascacielos, que la historia parece haber obviado, servirán como razón más que suficiente para la revisión de unas relaciones iniciales con la vanguardia -todavía hoy poco definidas- así como para proponer la lectura renovada de dichas propuestas en altura por lo que también son: proyectos que responden a unas necesidades espaciales de un lugar y tiempo muy determinados. Esta segunda parte, denominada La arquitectura de una imagen, se plantea así más como una inmersión total en el mundo del proyecto que una simple descripción nominal del mismo. Conscientemente simétrica y opuesta a un primer bloque histórico, esta segunda parte -mucho más extensa y parte central de esta tesis- se concentra en el análisis de las imágenes como: aquel conjunto de eventos históricos que aplicados sobre la ciudad, el lugar, el rascacielos, y los procesos técnicos de la imagen dieron lugar a estas arquitecturas como razón de ser. Consecuentemente se tratará pues de bucear en las razones que, ocultas como proceso de formalización, llevaron a Mies a dar un paso más allá hacia a una nueva manera de hacer, ver y pensar su arquitectura, de expresar un espacio. La aproximación a estas imágenes radicará por tanto en resaltar al mismo tiempo la naturaleza de unas representaciones cuyas características fotográficas son el fiel reflejo de una época donde los nuevos medios visuales –cine y fotografía- empiezan a ser cuestionados por su excesiva utilización. La complejidad de unos hechos coincidentes en el tiempo obligará a dividir este estudio en un primer acercamiento general, a la respuesta dada por una mayoría de participantes al concurso, para así cotejar la importancia de una actitud proyectual y contextual común de Mies y sus compañeros. Mezcla de requerimientos y necesidades de la propia historia de la parcela, de las peculiaridades de un lugar y las exigencias programáticas del concurso; el siguiente paso consistirá en reconstruir el proceso de formalización del conjunto de dibujos que caracterizan ambos proyectos para así comprender los mecanismo que, suspendidos como traslaciones entre las diferentes representaciones, operan en la realización física de dichas imágenes y complementan como pensamiento la idea arquitectónica de los mismos. Con lo que se pretende ofrecer dos cosas: una interpretación que tenga en cuenta la novedosa naturaleza de la manera de pensar lo fotográfico en el arquitecto, así como la particular idiosincrasia del momento en que estas concurren. Dicho de otro modo, se realizará una aproximación de las vistas del primer rascacielos que tenga en cuenta la historia tecnológica y visual que rodea al evento y las características de una ejecución física todavía hoy sin aclarar del todo. El descubrimiento de una serie de incoherencias geométricas en las plantas, alzado y vistas del primer proyecto llevará a argumentar la presencia de un trampantojo que, nunca antes revelado, se entiende lleno de unas intenciones espaciales plenamente vanguardistas. Interpretación arquitectónica de las imágenes donde la presencia de una serie de elementos directamente ligados al lenguaje fotográfico y cinematográfico se traduce en una nueva lectura espacial plenamente dinámica llena de dislocación, ritmo y simultaneidad alejada de la idea de ver la forma como un elemento permanentemente fijo. Sugerencia que nos lleva directamente a la lectura del segundo proyecto de rascacielos como una clara continuación de lo imaginado en el primero. Para finalizar, tras una revisión biográfica -previa al proyecto- que desvela unas preocupaciones urbanas y un deseo de cambio anterior al concurso de la Friedrichstrasse, se comparan estas nuevas significaciones espaciales con una práctica de vanguardia que, coetánea a la convocatoria de 1921, demuestran unas investigaciones muy similares con unos mismos intereses cinematográficos. La lectura de las propuestas de tres artistas próximos en ese momento al arquitecto -como son Hans Richter, Moholy-Nagy y El Lissitzky- permiten demostrar unas preocupaciones muy similares a lo conseguido por Mies con los rascacielos que parecen haber servido de ejemplo y motivación mutua para el surgimiento de una nueva espacialidad -más fluida-. Esta lectura permitirá recuperar la importancia de estos dos proyectos como la expresión directa de una nueva manera de pensar y hacer su arquitectura que ya no tendrá vuelta atrás en la obra de Mies. A la vez que recuperar la potencialidad poética de unas vistas que, así definidas reiteradamente por la crítica, se revelan ahora como directas transmisoras de ese deseo de cambio arquitectónico evidenciado en los proyectos posteriores. Racionalización de una poética que al ir más allá de la forma directamente transcrita permite establecer una última reflexión general sobre como opera la imagen en la arquitectura, así como la pertinencia crítica de este proyecto para con el mundo virtual de hoy. En definitiva, más allá del poder evocador de estas representaciones, este será un estudio que pretende cuestionar las características que la imagen de la arquitectura puede proponer más allá de su literalidad por medio de la fascinante interacción que se produce entre la imagen y lo espacialmente imaginado. Encuentros, recursos e intereses de una respuesta plenamente arquitectónica que, además de dar luz a un cambio tan inclasificable como moderno, abre el camino a la interpretación de un proceso de formalizacion que, reiteradamente defendido por su autor justifican una intensidad poética dada por la historia y reafirman una preocupación artística a menudo desmentida por su autor. Dicho de otro modo, si profundizar en las razones arquitectónicas, históricas y técnicas que llevan a Mies a realizar sus rascacielos, por medio de su relación con la vanguardia y el cine, arrojan luz y explican el cambio que se está gestando en el arquitecto cara una nueva espacialidad fluida. Reflexionar sobre su naturaleza espacial -de estas imágenes ya icónicas- equivale a aportar una reflexión crítica sobre la naturaleza simbólica de la imagen de la arquitectura hoy. “Aunque el puesto clave que ocupa el Rascacielos de la Friedrichstrasse dentro de la historia de la arquitectura moderna nunca ha sido seriamente cuestionado, la opinion critica al respecto siempre ha estado dividida. Desde la publicacion de la monografia de Philip Johnson sobre Mies en 1947, el muro cortina como una piel transparente que reviste el esqueleto estructural has ido aclamado como un gran avance pionero. Otros puntos de vista sobre el edificio, subrayando su supuesta planta expresionista, lo han visto como un esfuerzo un poco menos aventurado. Asi calibrada, la propuesta de Mies para la Friedrichstrasse es radicalmente moderna en mas de un sentido enfatizado por Johnson.” 1 W.Tegethoff ABSTRACT This essay reflects on the broad territory of the image in today’s architecture. One good example is the Friedrichstrasse Skyscraper design by Mies van der Rohe in 1921/22, during the period between World Wars I and II. There are many reasons why this work has been chosen, but one of the most recent stands out above the rest: of the hundreds of essays written on this work, comments have been made only (with the odd exception) on the objectual characteristics of what has been directly described by the views (as if it were a genuine reflection of reality), without analysing the real physical and symbolic nature of the representation a subjective (spatial) expression of architecture. If its importance as a point of inflection in the initial development of a completely modern work is more than enough reason to make a detailed study, since it may be crucial for understanding the author’s beginnings in the Modern Movement. Its presence as a reduced set of four views, the combination of a photograph of the place and a drawing made of it, in our opinion, carry meanings that are as important for understanding this architecture as all the ideas described about them. Created during an early period, when the languages of photography and cinema were in full swing, it can be said that the perspectives of the Friedrichstrasse Skyscraper form a historical reference of one of the first virtual architectures that belong entirely to the Modern Movement. A paradigm of the most absolute modernity owing to the fact that it is on that frontier of the never-accomplished, but spatially assumable as photographic reality, the images of the skyscraper can be considered as one of the first reflections on the virtual nature of post-industrial architectural design. There is nothing new in the fact that the photographic description of work absorbs and communicates on its own the multiple properties it involves and there is nothing new in the fact that most architectures become known today through the media. It is surprising that no analysis has been made to date, with the same intensity, of the many reasons that led to a number of images whose poetry add form to the architecture they represent. If the intention is to reflect on this contemporary fact using a paradigmatic example certified by history, we will be forced to use a methodology that corresponds to the dual condition produced by the interpretation of all media images as a fluctuating combination of what is interpreted independently through the representation and meanings the image acquires as a historical reference. This ambivalent interpretation will lead this essay to be structured in two clearly different and complementary blocks that follow the reading order offered by any image of architecture in the media. Thus, a first part, titled The image of an architecture, analyses the interpretation history and the author have given to the skyscraper through its use in the various exhibitions, magazines, style agreements and monographs in which it has been included. This examination, which is the real space in which these architectures reside, is (to delimit and organise the study) restricted to countries in which the author lived during his lifetime and it will help establish a first narrative that considers the different interpretations made by critics over time. The presence of the first skyscraper next to the second one in the publication the architect makes early on in Frühlicht will require the second solution to be incorporated as another part of the study. Laden with necessary quotes by the various personalities who have examined said designs, this first historiographical analysis establishes an initial state of the question that reveals an ambivalent interpretation of skyscrapers. If the direct interpretation of the images has made it possible to closely examine the characteristics of the glass and its reflections and the nudity of a metal structure as clear examples of a modern and technological expression of glass and steel. The particular triangular shapes of the former and the sinuous shapes of the latter have generated many classifications that suggest it is an example of Expressionism, Dadaism or Constructivism, which have grown over time into artistic admiration laden with poetry. This historical reading, which concludes with a more recent short period that begins to question the utopian character and recovers its nature as a project, will finally consider a number of doubts that have no apparent answer and require a revision of the reading of the images as part of what they actually are: expression of a new architecture that becomes part of the Modern Movement as from that precise moment. In addition, the existence in the architect’s subsequent discourse of a formalisation process highly valued by the author and the equal presence of a place in the representations and plans of a skyscraper history seems to have forgotten, will stand as more than sufficient reason for a revision of initial relations with the avantgarde -not particularly well defined today- together with a renewed reading of said vertical proposals for what they also are: projects that respond to the special needs of a very specific place and time. This second part, titled The architecture of an image, is presented more as a total immersion in the project world than a mere nominal description of it. Deliberately symmetrical and opposite to a historic first bloc, this second part (much longer and central part of the thesis) it will focus on analysing images as: the set of historical events that affected the skyscraper, city, place and technical processes image to provide these architectures with their raison d’être. Consequently, the aim is to delve in the reasons which, hidden as a formalisation process, led Mies to move on to a new form of doing, seeing and thinking his architecture, of expressing a space. The approach to these images will therefore lie in highlighting the nature of a number of representations whose photographic features are the true reflection of a period in which the new visual media (cinema and photography) begin to be questioned due to excessive use. The complexity of facts that coincide in time will require this study to be divided into a first general approach, with a response given by most of the participants in the competition, to compare the importance of a common approach in terms of project and context of the response given by Mies and his colleagues. A combination of requirements and needs of the very history of the plot of land, the peculiarities of a place and the programmatic requirements of the competition; the next step will reconstruct the formalisation process of the set of drawings that characterise both to understand the mechanism which, suspended like translations between the different representations, operates in the realisation of said images and complements as thought their architectural idea. The aim is thus to offer two things: an interpretation that takes into account the new way in which the architect works with photography, together with the particular idiosyncrasy of the moment at which they occur. In other words, the approach will focus on the views of the first skyscraper, which takes into account the technological and visual history that surrounds the event and the characteristics of a physical execution that still remains unexplained in full. The subsequent discovery of a number of geometrical incoherences in the floor plans, elevations and views of the first project will lead to an argument for the presence of trompe l’oeil which, never before revealed, is seen as laden with completely avant-garde spatial intentions. Architectural interpretation of the images where the presence of a number of elements directly linked to the languages of photography and cinema is translated into a new spatial reading that is completely dynamic and full of dislocation, rhythm and simultaneity far-removed from the idea of seeing shape as a permanently fixed element. This suggestion takes us to directly to the second skyscraper design as a clear continuation of what he imagined in the first. To end, after a preliminary biographical revision (previous to the project) that reveals urban concerns and a desire for change before the Friedrichstrasse competition, a comparison is made of these new spatial meanings with avant-garde practice which, contemporary with the 1921 competition, show very similar investigations with the same cinematographic interest. The reading of the proposals of three artists close to the architect at that time -i.e. Hans Richter, Moholy-Nagy and El Lissitzky- reveals concerns that are very similar to what Mies achieved with the skyscrapers that seem to have been used as an example and mutual motivation for the creation of a new (more fluent) spatiality. This interpretation will make it possible to recover the importance of these two projects as the direct expression of a new way of thinking and doing his architecture that was to remain fixed in Mies’ work. This also gives rise to the possibility of recovering the poetic potential of views which, as defined repeatedly by the critics, now stand as the direct transmitters of the desire for architectural change shown in later projects. A rationalisation of poetry which, by going beyond the directly transcribed form, gives rise to the establishment of one general final reflection on how the image works in architecture, together with the critical relevance of this design for today’s virtual world. In short, beyond the evocative power of images this will be a study which questions the characteristics the image of architecture can propose beyond its literality through the fascinating interaction between the image and spatially imagined. Encounters, resources and interests of a completely architectural response that, besides sheds light to a change that is as non-classifiable as it is modern, shows the way to the interpretation of a formalisation process which, repeatedly defined by the author, justifies a poetic intensity and confirms an artistic concern often denied by the author. In other words, examining the architectural, historical and technical reasons that led Mies to create his skyscrapers, thanks to its relationship with the avant-garde and cinema, sheds light on and explains the change taking place in the architect with regard to a new fluent spatiality. Reflecting on the spatial nature -of these iconic images- is tantamount to a critical reflection on the symbolic nature of architecture today. “Although the key position of the Friedrichstrasse Office Building within the early history of modern architecture has never been seriously challenged, critical opinion on it has always been divided. Ever since the publication of Philip Johnson’s monograph on Mies in 1947, the curtain wall as a transparent skin sheathing the skeleton structure has frequently been hailed as a pioneering breakthrough. Other views of the building, stressing its supposedly Expressionist plan, have seen it as a somewhat less adventurous effort. In fact, the project has never been regarded in abroad context. Thus measured, Mies’s proposal fro Friedrichstrasse is radically modern in more than the one respect emphasized by Johnson.” 1 W.Tegethoff

Relevância:

10.00% 10.00%

Publicador:

Resumo:

In recent years a great number of high speed railway bridges have been constructed within the Spanish borders. Due to the demanding high speed trains route's geometrical requirements, bridges frequently show remarkable lengths. This fact is the main reason why railway bridges are overall longer than roadway bridges. In the same line, it is also worth highlighting the importance of high speed trains braking forces compared to vehicles. While vehicles braking forces can be tackled easily, the railway braking forces demand the existence of a fixed-point. It is generally located at abutments where the no-displacements requirement can be more easily achieved. In some other cases the fixed-point is placed in one of the interior columns. As a consequence of these bridges' length and the need of a fixed-point, temperature, creep and shrinkage strains lead to fairly significant deck displacements, which become greater with the distance to the fixed-point. These displacements need to be accommodated by the piers and bearings deformation. Regular elastomeric bearings are not able to allow such displacements and therefore are not suitable for this task. For this reason, the use of sliding PTFE POT bearings has been an extensive practice mainly because they permit sliding with low friction. This is not the only reason of the extensive use of these bearings to high-speed railways bridges. The value of the vertical loads at each bent is significantly higher than in roadway bridges. This is so mainly because the live loads due to trains traffic are much greater than vehicles. Thus, gravel rails foundation represents a non-negligible permanent load at all. All this together increases the value of vertical loads to be withstood. This high vertical load demand discards the use of conventional bearings for excessive compressions. The PTFE POT bearings' higher technology allows to accommodate this level of compression thanks to their design. The previously explained high-speed railway bridge configuration leads to a key fact regarding longitudinal horizontal loads (such as breaking forces) which is the transmission of these loads entirely to the fixed-point alone. Piers do not receive these longitudinal horizontal loads since PTFE POT bearings displayed are longitudinally free-sliding. This means that longitudinal horizontal actions on top of piers will not be forces but imposed displacements. This feature leads to the need to approach these piers design in a different manner that when piers are elastically linked to superstructure, which is the case of elastomeric bearings. In response to the previous, the main goal of this Thesis is to present a Design Method for columns displaying either longitudinally fixed POT bearings or longitudinally free PTFE POT bearings within bridges with fixed-point deck configuration, applicable to railway and road vehicles bridges. The method was developed with the intention to account for all major parameters that play a role in these columns behavior. The long process that has finally led to the method's formulation is rooted in the understanding of these column's behavior. All the assumptions made to elaborate the formulations contained in this method have been made in benefit of conservatives results. The singularity of the analysis of columns with this configuration is due to a combination of different aspects. One of the first steps of this work was to study they of these design aspects and understand the role each plays in the column's response. Among these aspects, special attention was dedicated to the column's own creep due to permanent actions such us rheological deck displacements, and also to the longitudinally guided PTFE POT bearings implications in the design of the column. The result of this study is the Design Method presented in this Thesis, that allows to work out a compliant vertical reinforcement distribution along the column. The design of horizontal reinforcement due to shear forces is not addressed in this Thesis. The method's formulations are meant to be applicable to the greatest number of cases, leaving to the engineer judgement many of the different parameters values. In this regard, this method is a helpful tool for a wide range of cases. The widespread use of European standards in the more recent years, in particular the so-called Eurocodes, has been one of the reasons why this Thesis has been developed in accordance with Eurocodes. Same trend has been followed for the bearings design implications, which are covered by the rather recent European code EN-1337. One of the most relevant aspects that this work has taken from the Eurocodes is the non-linear calculations security format. The biaxial bending simplified approach that shows the Design Method presented in this work also lies on Eurocodes recommendations. The columns under analysis are governed by a set of dimensionless parameters that are presented in this work. The identification of these parameters is a helpful for design purposes for two columns with identical dimensionless parameters may be designed together. The first group of these parameters have to do with the cross-sectional behavior, represented in the bending-curvature diagrams. A second group of parameters define the columns response. Thanks to this identification of the governing dimensionless parameters, it has been possible what has been named as Dimensionless Design Curves, which basically allows to obtain in a reduced time a preliminary vertical reinforcement column distribution. These curves are of little use nowadays, firstly because each family of curves refer to specific values of many different parameters and secondly because the use of computers allows for extremely quick and accurate calculations.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

En los últimos años, debido a la creciente preocupación por el calentamiento global y el cambio climático, uno de los retos más importantes a los que se enfrenta nuestra sociedad es el uso eficiente y económico de energía así como la necesidad correspondiente de reducir los gases de efecto invernadero (GEI). Las tecnologías de mezclas semicalientes se han convertido en un nuevo e importante tema de investigación en el campo de los materiales para pavimentos ya que ofrece una solución potencial para la reducción del consumo energético y las emisiones de GEI durante la producción y puesta en obra de las mezclas bituminosas. Por otro lado, los pavimentos que contienen polvo de caucho procedente de neumático fuera de uso, al hacer uso productos de desecho, ahorran energía y recursos naturales. Estos pavimentos ofrecen una resistencia mejorada a la formación de roderas, a la fatiga y a la fisuración térmica, reducen los costes de mantenimiento y el ruido del tráfico así como prolongan la vida útil del pavimento. Sin embargo, estas mezclas presentan un importante inconveniente: la temperatura de fabricación se debe aumentar en comparación con las mezclas asfálticas convencionales, ya que la incorporación de caucho aumenta la viscosidad del ligante y, por lo tanto, se producen mayores cantidades de emisiones de GEI. En la presente Tesis, la tecnología de mezclas semicalientes con aditivos orgánicos (Sasobit, Asphaltan A, Asphaltan B, Licomont) se incorporó a la de betunes de alta viscosidad modificados con caucho (15% y 20% de caucho) con la finalidad de dar una solución a los inconvenientes de mezclas con caucho gracias a la utilización de aditivos reductores de la viscosidad. Para este fin, se estudió si sería posible obtener una producción más sostenible de mezclas con betunes de alto contenido en caucho sin afectar significativamente su nivel de rendimiento mecánico. La metodología aplicada para evaluar y comparar las características de las mezclas consistió en la realización de una serie de ensayos de laboratorio para betunes y mezclas con caucho y con aditivos de mezclas semicalientes y de un análisis del ciclo de vida híbrido de la producción de mezclas semicalientes teniendo en cuenta la papel del aditivo en la cadena de suministro con el fin de cuantificar con precisión los beneficios de esta tecnología. Los resultados del estudio indicaron que la incorporación de los aditivos permite reducir la viscosidad de los ligantes y, en consecuencia, las temperaturas de producción y de compactación de las mezclas. Por otro lado, aunque la adición de caucho mejoró significativamente el comportamiento mecánico de los ligantes a baja temperatura reduciendo la susceptibilidad al fenómeno de fisuración térmica, la adición de las ceras aumentó ligeramente la rigidez. Los resultados del estudio reológico mostraron que la adición de porcentajes crecientes de caucho mejoraban la resistencia del pavimento con respecto a la resistencia a la deformación permanente a altas temperaturas y a la fisuración térmica a bajas temperaturas. Además, se observó que los aditivos mejoran la resistencia a roderas y la elasticidad del pavimento al aumentar el módulo complejo a altas temperaturas y al disminuir del ángulo de fase. Por otra parte, el estudio reológico confirmó que los aditivos estudiados aumentan ligeramente la rigidez a bajas temperaturas. Los ensayos de fluencia llevados a cabo con el reómetro demostraron una vez más la mejora en la elasticidad y en la resistencia a la deformación permanente dada por la adición de las ceras. El estudio de mezclas con caucho y aditivos de mezclas semicalientes llevado a cabo demostró que las temperaturas de producción/compactación se pueden disminuir, que las mezclas no experimentarían escurrimiento, que los aditivos no cambian significativamente la resistencia conservada y que cumplen la sensibilidad al agua exigida. Además, los aditivos aumentaron el módulo de rigidez en algunos casos y mejoraron significativamente la resistencia a la deformación permanente. Asimismo, a excepción de uno de los aditivos, las mezclas con ceras tenían la misma o mayor resistencia a la fatiga en comparación con la mezcla control. Los resultados del análisis de ciclo de vida híbrido mostraron que la tecnología de mezclas semicalientes es capaz de ahorrar significativamente energía y reducir las emisiones de GEI, hasta un 18% y 20% respectivamente, en comparación con las mezclas de control. Sin embargo, en algunos de los casos estudiados, debido a la presencia de la cera, la temperatura de fabricación debe reducirse en un promedio de 8 ºC antes de que los beneficios de la reducción de emisiones y el consumo de combustible puedan ser obtenidos. Los principales sectores contribuyentes a los impactos ambientales generados en la fabricación de mezclas semicalientes fueron el sector de los combustibles, el de la minería y el de la construcción. Due to growing concerns over global warming and climate change in recent years, one of the most important challenges facing our society is the efficient and economic use of energy, and with it, the corresponding need to reduce greenhouse gas (GHG) emissions. The Warm Mix Asphalt (WMA) technology has become an important new research topic in the field of pavement materials as it offers a potential solution for the reduction of energy consumption and GHG emissions during the production and placement of asphalt mixtures. On the other hand, pavements containing crumb-rubber modified (CRM) binders save energy and natural resources by making use of waste products. These pavements offer an improved resistance to rutting, fatigue and thermal cracking; reduce traffic noise and maintenance costs and prolong pavement life. These mixtures, however, present one major drawback: the manufacturing temperature is higher compared to conventional asphalt mixtures as the rubber lends greater viscosity to the binder and, therefore, larger amounts of GHG emissions are produced. In this dissertation the WMA technology with organic additives (Sasobit, Asphaltan A, Asphaltan B and Licomont) was applied to CRM binders (15% and 20% of rubber) in order to offer a solution to the drawbacks of asphalt rubber (AR) mixtures thanks to the use of fluidifying additives. For this purpose, this study sought to determine if a more sustainable production of AR mixtures could be obtained without significantly affecting their level of mechanical performance. The methodology applied in order to evaluate and compare the performance of the mixtures consisted of carrying out several laboratory tests for the CRM binders and AR mixtures with WMA additives (AR-WMA mixtures) and a hybrid input-output-based life cycle assessment (hLCA) of the production of WMA. The results of the study indicated that the incorporation of the organic additives were able to reduce the viscosity of the binders and, consequently, the production and compaction temperatures. On the other hand, although the addition of rubber significantly improved the mechanical behaviour of the binders at low temperatures reducing the susceptibility to thermal cracking phenomena, the addition of the waxes slightly increased the stiffness. Master curves showed that the addition of increasing percentages of rubber improved the resistance of the pavement regarding both resistance to permanent deformation at high temperatures and thermal cracking at low temperatures. In addition, the waxes improved the rutting resistance and the elasticity as they increased the complex modulus at high temperatures and decreased the phase angle. Moreover, master curves also attest that the WMA additives studied increase the stiffness at low temperatures. The creep tests carried out proved once again the improvement in the elasticity and in the resistance to permanent deformation given by the addition of the waxes. The AR-WMA mixtures studied have shown that the production/compaction temperatures can be decreased, that the mixtures would not experience binder drainage, that the additives did not significantly change the retained resistance and fulfilled the water sensitivity required. Furthermore, the additives increased the stiffness modulus in some cases and significantly improved the permanent deformation resistance. Except for one of the additives, the waxes had the same or higher fatigue resistance compared to the control mixture. The results of the hLCA demonstrated that the WMA technology is able to significantly save energy and reduce GHG emissions, up to 18% and 20%, respectively, compared to the control mixtures. However, in some of the case studies, due to the presence of wax, the manufacturing temperature at the asphalt plant must be reduced by an average of 8ºC before the benefits of reduced emissions and fuel usage can be obtained. The results regarding the overall impacts generated using a detailed production layer decomposition indicated that fuel, mining and construction sectors are the main contributors to the environmental impacts of manufacturing WMA mixtures.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Here we show that potassium-doped tungsten foil should be preferred to pure tungsten foil when considering tungsten laminate pipes for structural divertor applications. Potassium-doped tungsten materials are well known from the bulb industry and show an enhanced creep and recrystallization behaviour that can be explained by the formation of potassium-filled bubbles that are surrounding the elongated grains, leading to an interlocking of the microstructure. In this way, the ultra-fine grained (UFG) microstructure of tungsten foil can be stabilized and with it the extraordinary mechanical properties of the foil in terms of ductility, toughness, brittle-to-ductile transition, and radiation resistance. In this paper we show the results of three-point bending tests performed at room temperature on annealed pure tungsten and potassium-doped tungsten foils (800, 900, 1000, 1100, 1200, 1300, 1400, 1600, 1800, 2000, 2200, and 2400 °C for 1 h in vacuum). The microstructural assessment covers the measurement of the hardness and analyses of fractured surfaces as well as a comparison of the microstructure by optical microscopy. The results show that there is a positive effect of potassium-doped tungsten foils compared to pure tungsten foil and demonstrate the potential of the doped foil

Relevância:

10.00% 10.00%

Publicador:

Resumo:

This work aims to contribute to a further understanding of the fundamentals of crystallographic slip and grain boundary sliding in the γ-TiAl Ti–45Al–2Nb–2Mn (at%)–0.8 vol%TiB2 intermetallic alloy, by means of in situ high-temperature tensile testing combined with electron backscatter diffraction (EBSD). Several microstructures, containing different fractions and sizes of lamellar colonies and equiaxed γ-grains, were fabricated by either centrifugal casting or powder metallurgy, followed by heat treatment at 1300 °C and furnace cooling. in situ tensile and tensile-creep experiments were performed in a scanning electron microscope (SEM) at temperatures ranging from 580 °C to 700 °C. EBSD was carried out in selected regions before and after straining. Our results suggest that, during constant strain rate tests, true twin γ/γ interfaces are the weakest barriers to dislocations and, thus, that the relevant length scale might be influenced by the distance between non-true twin boundaries. Under creep conditions both grain/colony boundary sliding (G/CBS) and crystallographic slip are observed to contribute to deformation. The incidence of boundary sliding is particularly high in γ grains of duplex microstructures. The slip activity during creep deformation in different microstructures was evaluated by trace analysis. Special emphasis was placed in distinguishing the compliance of different slip events with the Schmid law with respect to the applied stress.

Relevância:

10.00% 10.00%

Publicador:

Resumo:

Una técnica de refuerzo de elementos flectados en general y, en particular, de vigas y forjados de hormigón armado, consiste en la disposición de perfiles metálicos por debajo de los elementos a reforzar y retacados a ellos. En muchos casos este refuerzo se diseña con un planteamiento pasivo, es decir, los perfiles no entran en carga hasta que no se incrementan las acciones sobre el elemento reforzado, o lo hacen sólo ligeramente y de forma cuantitativamente no controlada efectuando el retacado mediante cuñas metálicas. En el presente trabajo se estudia la alternativa del refuerzo de vigas de hormigón armado frente a momentos flectores con un planteamiento activo, introduciendo unas fuerzas (por ejemplo, mediante gatos o barras roscadas) entre el perfil y el elemento a reforzar, y retacando posteriormente el perfil a la viga en los puntos de introducción de las fuerzas, mediante cuñas metálicas, mortero, etc. La propuesta que formulamos en el presente trabajo de investigación para el control de las fuerzas introducidas consiste en la medida de las flechas que se producen en el perfil metálico al hacerlo reaccionar contra la viga. Esto permite el empleo de procedimientos sencillos para la predeformación del perfil que no dispongan de dispositivos de medida de la carga introducida, o bien controlar la veracidad de las medidas de las fuerzas que dan tales dispositivos. La gran fiabilidad que tiene el cálculo de flechas en jácenas metálicas hace que con este procedimiento se puedan conocer con gran precisión las fuerzas introducidas. Las medidas de las flechas se pueden llevar a cabo mediante los procedimientos de instrumentación habituales en pruebas de carga, con una precisión más que suficiente para conocer y controlar con fiabilidad el valor de las fuerzas que el perfil ejerce sobre la viga. Los perfiles necesarios para el refuerzo con esta técnica son netamente inferiores a los que se precisarían con el planteamiento pasivo antes indicado. En el trabajo de investigación se recoge un estudio sobre el número, posición y valor de las fuerzas de refuerzo a introducir, en función de la carga para la que se diseña el refuerzo y la capacidad resistente del elemento a reforzar, y se analizan los valores máximos que pueden tener dichas fuerzas, en función de la capacidad de la pieza frente a momentos de signo contrario a los debidos a las cargas gravitatorias. A continuación se analiza la interacción viga-perfil al incrementarse las cargas sobre la viga desde el instante de la ejecución del refuerzo, interacción que hace variar el valor de las fuerzas que el perfil ejerce sobre la viga. Esta variación permite contar con un incremento en las fuerzas de refuerzo si, con las cargas permanentes presentes al reforzar, no podemos introducirlas inicialmente con el valor necesario, o si se producen pérdidas en las propias fuerzas. Este es uno de los criterios a la hora de seleccionar las características del perfil. Por el contrario, dicha variación puede suponer que en algunos puntos a lo largo del vano se supere la capacidad a flexión frente a momentos de signo contrario a los debidos a las cargas gravitatorias, lo que también debe ser tenido en cuenta. Seguidamente se analizan diferentes aspectos que producen una variación en el valor de las fuerzas de refuerzo, como son las deformaciones diferidas del hormigón (fluencia y retracción), los gradientes de temperatura en la pieza, o la actuación de sobrecargas en los vanos adyacentes. Se concluye los efectos de estos fenómenos, que en ocasiones tienen gran influencia, pueden ser cuantificados por el proyectista, recogiéndose propuestas sencillas para su consideración en casos habituales. Posteriormente recogemos una propuesta de metodología de comprobación del refuerzo, en cuanto a cómo considerar la fisuración y evolución del módulo de deformación de la viga, la introducción de la seguridad, la influencia de las tolerancias de laminación en el perfil sobre el valor calculado de las flechas necesarias en el perfil para introducir las fuerzas iniciales proyectadas, o la situación accidental de fuego, entre otros aspectos. Por último, se exponen las conclusiones más relevantes de la investigación realizada, y se proponen futuras líneas de investigación. One technique for strengthening flexural members in general, and reinforced concrete beams and slabs in particular, entails caulking the underside of these members with steel shapes. This sort of strengthening is often designed from a passive approach; i.e., until the load is increased, the shapes are either not loaded or are only slightly loaded to some unquantified extent by caulking with steel shims. The present study explored the possibility of actively strengthening the capacity of reinforced concrete beams to resist bending moments by applying forces (with jacks or threaded bars, for instance) between the shape and the member to be strengthened. The shape is subsequently caulked under the beam at the points where the forces are applied with steel shims, mortar or similar. The proposal put forward in the present study to monitor the forces applied consists in measuring the deflection on the steel shape as it reacts against the beam. With this technique, the shape can be pre-strained using simple procedures that do not call for devices to measure the force applied, or the accurancy of the respective measurements can be verified. As deflection calculations in steel girders are extremely reliable, the forces applied with this procedure can be very precisely determined. Standard instrumental procedures for load testing can be used to measure deflection with more than sufficient precision to reliably determine and monitor the value of the forces exerted on the beam by the shape. Moreover, the shapes required to strengthen members with this technique are substantially smaller than the ones needed in the aforementioned passive approach. This study addressed the number, position and value of the strengthening forces to be applied in terms of the load for which strengthening was designed and the bearing capacity of the member to be strengthened. The maximum value of such forces was also analysed as a function of the capacity of the member to resist counter-gravity moments. An analysis was then conducted of beam-shape interaction when the load on the beam raises since the instant that strengthening is applied, interaction that alters the forces applied to the beam by the shape. This variation can provide an increment in the forces if we cannot introduce them initially with the value calculated as necessary because they were limited by the permanent loads existing when strengthening, or if losses occur in the forces themselves. This is one of the criteria for defining shape specifications. Conversely, such variation may cause the forces to exceed beam counter-gravity bending strength at some points in the span, a development that must also be taken into consideration. Other factors inducing variations in the strengthening force values were then analysed, including deferred concrete strain (creep and shrinkage), temperature gradients in the member and the live loads acting on adjacent spans. The inference drawn was that these developments, which may on occasion have a heavy impact, can be quantified by the design engineer, particularly in ordinary situations, for which simple procedures are proposed. Methodology is likewise proposed for verifying strength in terms of how to appraise beam's cracking and variations in modulus of deformation; safety concerns; the effect of shape lamination tolerance on the calculated deflection necessary for the shape to apply the design forces; and fire-induced situations, among others. Lastly, the most prominent conclusions are discussed and future lines of research are suggested.