845 resultados para Load bearing system
Condicionantes de la adherencia y anclaje en el refuerzo de muros de fábrica con elementos de fibras
Resumo:
Es cada vez más frecuente la rehabilitación de patrimonio construido, tanto de obras deterioradas como para la adecuación de obras existentes a nuevos usos o solicitaciones. Se ha considerado el estudio del refuerzo de obras de fábrica ya que constituyen un importante número dentro del patrimonio tanto de edificación como de obra civil (sistemas de muros de carga o en estructuras principales porticadas de acero u hormigón empleándose las fábricas como cerramiento o distribución con elementos autoportantes). A la hora de reparar o reforzar una estructura es importante realizar un análisis de las deficiencias, caracterización mecánica del elemento y solicitaciones presentes o posibles; en el apartado 1.3 del presente trabajo se refieren acciones de rehabilitación cuando lo que se precisa no es refuerzo estructural, así como las técnicas tradicionales más habituales para refuerzo de fábricas que suelen clasificarse según se trate de refuerzos exteriores o interiores. En los últimos años se ha adoptado el sistema de refuerzo de FRP, tecnología con origen en los refuerzos de hormigón tanto de elementos a flexión como de soportes. Estos refuerzos pueden ser de láminas adheridas a la fábrica soporte (SM), o de barras incluidas en rozas lineales (NSM). La elección de un sistema u otro depende de la necesidad de refuerzo y tipo de solicitación predominante, del acceso para colocación y de la exigencia de impacto visual. Una de las mayores limitaciones de los sistemas de refuerzo por FRP es que no suele movilizarse la resistencia del material de refuerzo, produciéndose previamente fallo en la interfase con el soporte con el consecuente despegue o deslaminación; dichos fallos pueden tener un origen local y propagarse a partir de una discontinuidad, por lo que es preciso un tratamiento cuidadoso de la superficie soporte, o bien como consecuencia de una insuficiente longitud de anclaje para la transferencia de los esfuerzos en la interfase. Se considera imprescindible una caracterización mecánica del elemento a reforzar. Es por ello que el trabajo presenta en el capítulo 2 métodos de cálculo de la fábrica soporte de distintas normativas y también una formulación alternativa que tiene en cuenta la fábrica histórica ya que su caracterización suele ser más complicada por la heterogeneidad y falta de clasificación de sus materiales, especialmente de los morteros. Una vez conocidos los parámetros resistentes de la fábrica soporte es posible diseñar el refuerzo; hasta la fecha existe escasa normativa de refuerzos de FRP para muros de fábrica, consistente en un protocolo propuesto por la ACI 440 7R-10 que carece de mejoras por tipo de anclaje y aporta valores muy conservadores de la eficacia del refuerzo. Como se ha indicado, la problemática principal de los refuerzos de FRP en muros es el modo de fallo que impide un aprovechamiento óptimo de las propiedades del material. Recientemente se están realizando estudios con distintos métodos de anclaje para estos refuerzos, con lo que se incremente la capacidad última y se mantenga el soporte ligado al refuerzo tras la rotura. Junto con sistemas de anclajes por prolongación del refuerzo (tanto para láminas como para barras) se han ensayado anclajes con llaves de cortante, barras embebidas, o anclajes mecánicos de acero o incluso de FRP. Este texto resume, en el capítulo 4, algunas de las campañas experimentales llevadas a cabo entre los años 2000 y 2013 con distintos anclajes. Se observan los parámetros fundamentales para medir la eficacia del anclajes como son: el modo de fallo, el incremento de resistencia, y los desplazamientos que permite observar la ductilidad del refuerzo; estos datos se analizan en función de la variación de: tipo de refuerzo incluyéndose el tipo de fibra y sistema de colocación, y tipo de anclaje. Existen también parámetros de diseño de los propios anclajes. En el caso de barras embebidas se resumen en diámetro y material de la barra, acabado superficial, dimensiones y forma de la roza, tipo de adhesivo. En el caso de anclajes de FRP tipo pasador la caracterización incluye: tipo de fibra, sistema de fabricación del anclajes y diámetro del mismo, radio de expansión del abanico, espaciamiento longitudinal de anclajes, número de filas de anclajes, número de láminas del refuerzo, longitud adherida tras el anclaje; es compleja la sistematización de resultados de los autores de las campañas expuestas ya que algunos de estos parámetros varían impidiendo la comparación. El capítulo 5 presenta los ensayos empleados para estas campañas de anclajes, distinguiéndose entre ensayos de modo I, tipo tracción directa o arrancamiento, que servirían para sistemas NSM o para cuantificar la resistencia individual de anclajes tipo pasador; ensayos de modo II, tipo corte simple, que se asemeja más a las condiciones de trabajo de los refuerzos. El presente texto se realiza con objeto de abrir una posible investigación sobre los anclajes tipo pasador, considerándose que junto con los sistemas de barra embebida son los que permiten una mayor versatilidad de diseño para los refuerzos de FRP y siendo su eficacia aún difícil de aislar por el número de parámetros de diseño. Rehabilitation of built heritage is becoming increasingly frequent, including repair of damaged works and conditioning for a new use or higher loads. In this work it has been considered the study of masonry wall reinforcement, as most buildings and civil works have load bearing walls or at least infilled masonry walls in concrete and steel structures. Before repairing or reinforcing an structure, it is important to analyse its deficiencies, its mechanical properties and both existing and potential loads; chapter 1, section 4 includes the most common rehabilitation methods when structural reinforcement is not needed, as well as traditional reinforcement techniques (internal and external reinforcement) In the last years the FRP reinforcement system has been adopted for masonry walls. FRP materials for reinforcement were initially used for concrete pillars and beams. FRP reinforcement includes two main techniques: surface mounted laminates (SM) and near surface mounted bars (NSM); one of them may be more accurate according to the need for reinforcement and main load, accessibility for installation and aesthetic requirements. One of the main constraints of FRP systems is not reaching maximum load for material due to premature debonding failure, which can be caused by surface irregularities so surface preparation is necessary. But debonding (or delamination for SM techniques) can also be a consequence of insufficient anchorage length or stress concentration. In order to provide an accurate mechanical characterisation of walls, chapter 2 summarises the calculation methods included in guidelines as well as alternative formulations for old masonry walls as historic wall properties are more complicated to obtain due to heterogeneity and data gaps (specially for mortars). The next step is designing reinforcement system; to date there are scarce regulations for walls reinforcement with FRP: ACI 440 7R-10 includes a protocol without considering the potential benefits provided by anchorage devices and with conservative values for reinforcement efficiency. As noted above, the main problem of FRP masonry walls reinforcement is failure mode. Recently, some authors have performed studies with different anchorage systems, finding that these systems are able to delay or prevent debonding . Studies include the following anchorage systems: Overlap, embedded bars, shear keys, shear restraint and fiber anchors. Chapter 4 briefly describes several experimental works between years 2000 and 2013, concerning different anchorage systems. The main parameters that measure the anchorage efficiency are: failure mode, failure load increase, displacements (in order to evaluate the ductility of the system); all these data points strongly depend on: reinforcement system, FRP fibers, anchorage system, and also on the specific anchorage parameters. Specific anchorage parameters are a function of the anchorage system used. The embedded bar system have design variables which can be identified as: bar diameter and material, surface finish, groove dimensions, and adhesive. In FRP anchorages (spikes) a complete design characterisation should include: type of fiber, manufacturing process, diameter, fan orientation, anchor splay width, anchor longitudinal spacing and number or rows, number or FRP sheet plies, bonded length beyond anchorage devices,...the parameters considered differ from some authors to others, so the comparison of results is quite complicated. Chapter 5 includes the most common tests used in experimental investigations on bond-behaviour and anchorage characterisation: direct shear tests (with variations single-shear and double-shear), pullout tests and bending tests. Each of them may be used according to the data needed. The purpose of this text is to promote further investigation of anchor spikes, accepting that both FRP anchors and embedded bars are the most versatile anchorage systems of FRP reinforcement and considering that to date its efficiency cannot be evaluated as there are too many design uncertainties.
Resumo:
El ánimo de superación y consecución de nuevos logros es una constante a lo largo de la historia arquitectura y la ingeniería. La construcción de estructuras cada vez más audaces, ligeras y esbeltas es un buen ejemplo de esta superación, pero este camino no está únicamente ligado a la consecución de nuevas formas estructurales y arquitectónicas, sino también a la búsqueda de una mayor economía de medios y materiales en su construcción, y el caso particular de las estructuras laminares metálicas no es una excepción. La presente tesis doctoral aborda el campo de las láminas de entramado desde una nueva perspectiva: la relación existente entre la introducción de una serie de innovaciones tecnológicas en la industria y la evolución formal de esta tipología estructural, tanto en lo que se refiere a la complejidad de las superficies construidas como en lo relativo a la elegancia de las mallas portantes alcanzada. Para ello esta investigación plantea la caracterización y clasificación de los sistemas constructivos prefabricados empleados en la construcción de láminas metálicas de celosía en función de la influencia de la tecnología y los procesos industriales de producción empleados en la fabricación de sus componentes, considerando asimismo las posibilidades formales y estéticas que ofrecen dichos sistemas y el grado de aprovechamiento de material que su diseño y fabricación permiten. Para alcanzar el objetivo propuesto se propone una metodología analítica específica que aborda la caracterización de los diferentes casos no sólo desde un enfoque cualitativo y abstracto, en función de las propiedades de los sistemas, sino que propone el estudio de su aplicación práctica en la realización de estructuras existentes, pudiendo así cuantificar gran parte de los parámetros considerados en la clasificación. Gracias a la aplicación de esta metodología se ha podido establecer la relación inequívoca que existe entre los avances generados por la industria y la evolución formal de las láminas de celosía, gracias a la unión de la innovación tecnológica y el talento creativo de los diseñadores – arquitectos e ingenieros – en la búsqueda de la belleza. Asimismo se han podido determinar cómo, a pesar de los asombrosos avances realizados, aún existen aspectos susceptibles de optimización en el diseño y fabricación de sistemas constructivos prefabricados, proponiendo nuevas vías de investigación que puedan conducir a la obtención de diseños que puedan llevar aún más lejos el desarrollo de esta tipología estructural. ABSTRACT The aim of improvement and the achievement of new goals is a constant process throughout the history of the architecture and engineering. The construction of increasingly daring, light and slender structures is a great example of this surmounting, but this track is not only related to the attainment of new structural and architectural shapes, but also to the pursuit of a higher economy of means and materials in its building process, and the particular case of steel grid shells makes no exception. The present doctoral dissertation addresses the field of lattice shells from a new viewpoint: the existing relationship between the insertion of a number of technological innovations in the industry and the formal evolution of this structural type, either referring to the complexity of the built surfaces as related to the elegance of the achieved load bearing grids. Within this aim this investigation outlines the characterization and classification of the prefabricated building systems used in the construction of steel trussed shells according to the influence of technology and industrial production processes used in its component fabrication, also considering the formal and aesthetic possibilities that the mentioned systems provide and the performance degree of raw material which its design and fabrication makes possible. In order to reach the proposed objective, this work develops an specific methodology which addresses the characterization of the different cases not only from an abstract and qualitative focus, based on the system properties, but also regarding the analysis of their real use in existing structures, being thus capable to quantify most of the parameters which are considered in this classification. By means of this methodology it has been possible to lay down the unambiguous relationship between the advances provided by the industry and the formal evolution of lattice shells, given the combination of technological innovation and the creative talent of designers – architects and engineers – in the pursuit of beauty. Furthermore, it has been determined how, in spite the astonishing advances that have been made, some issues in the design and fabrication of systems are still suitable to be optimized, addressing new research paths which may lead to the achievement of new designs suitable to drive the development of this structural type even further.
Resumo:
La Tesis decodifica una selección de veinte proyectos representativos de Sejima-SANAA, desde su primer proyecto construido, la Casa Platform I, 1987, hasta el Centro Rolex, 2010, año en que Sejima y Nishizawa –SANAA- reciben el Premio Pritzker. De los veinte proyectos once son de Sejima: Casa Platform I, Casa Platform II, Residencia de Mujeres, Casa N, Pachinco Parlor I, Villa en el Bosque, Comisaría en Chofu, Casa Y, Apartamentos en Gifu, Edificio de equipamientos en la Expo Tokio 96, Pachinko Parlor III; y nueve de SANAA: edificio Multimedia en Oogaki, estudio de viviendas metropolitanas,Park Café en Koga, De Kunstlinie en Almere, Museo de Kanazawa, Pabellón de Toledo, Escuela de Zollverein, Casa Flor y Centro Rolex. La decodificación lee la obra de Sejima-SANAA a la inversa para ‘reconstruir’, en un ejercicio de simulación ficticia, una versión verosímil y coherente de los que podrían haber sido sus procesos proyectuales; podrían, porque los verdaderos son imposibles de dilucidar. Los que se proponen se pretenden exclusivamente verosímiles y plausibles. Con ello se pretende contribuir al entendimiento y comprensión de la arquitectura de Sejima-SANAA y, tangencialmente y en menor medida, a la teoría sobre el ejercicio proyectual arquitectónico. La decodificación se centra en dos aspectos concretos: la forma arquitectónica y el papel proyectual de la estructura portante. Ambas decodificaciones se extienden inevitablemente a otros aspectos relacionados, como, por ejemplo, la naturaleza del espacio arquitectónico. El procedimiento de investigación partió de una descripción objetiva y pormenorizada de los significantes formales y estructurales de cada proyecto desde su propia configuración física y geométrica. Esa descripción ‘objetiva’, llevada al límite, permitió que afloraran estructuras conceptuales y lógicas subyacentes de cada proyecto. Unida a interpretación crítica, –mediante su relación y confrontación con otras arquitecturas y otros modos de hacer conocidos- permitió trazar la reconstitución ficticia que persigue la decodificación. Ese trabajo se materializó en veinte ensayos críticos y se acompañó de un conjunto de otros textos sobre temas sugeridos o reclamados por el proceso de investigación. El conjunto de todos esos textos constituye el material de trabajo de la tesis. A partir de ahí, con una visión de conjunto, la tesis identifica una trayectoria de estrategias formales y una trayectoria de estrategias proyectuales relacionadas con lo portante. Juntas conforman el grueso de la tesis que se expone en los cuatro capítulos centrales. Los precede un capítulo introductorio que expone el recorrido biográfico de K. Sejima y la trayectoria profesional de Sejima-SANAA; y los siguen de unos textos transversales sobre forma, lugar y espacio. La tesis termina con una síntesis de sus conclusiones. Las estrategias formales se exponen en tres capítulos. El primero, ‘Primeras estrategias formales’ agrupa proyectos de la primera etapa de Sejima. El segundo capítulo está dedicado enteramente al proyecto de los apartamentos en Gifu, 1994-98, que según esta tesis, supuso un importante punto de inflexión en la trayectoria de Sejima; tanto el tercer capítulo lleva por nombre ‘Estrategias formales después de Gifu’ y recoge los proyectos que le siguieron. Las ‘Primeras estrategias formales’, varias y balbucientes, se mueven en general en torno a dos modos o procedimientos de composición, bien conocidos: por partes y sistemático. Éste última inicia en la trayectoria de SANAA un aspecto que va a ser relevante de aquí en adelante: entender el proyecto como propuesta genérica en la que, más allá de su realidad específica y tangible, subyace una lógica, en cada proyecto la suya, extrapolable a otros lugares, otras dimensiones, incluso otros programas: cada proyecto podría dar lugar a otros proyectos de la misma familia. La composición sistemática incluye, entre otros, la Casa Platform II, basada en la definición de un elemento constructivo, y la formulación de unas leyes de repetición y de posibles modos de agrupación. Incluye también la Residencia de Mujeres Saishunkan Seiyaku- proyecto que lanzó a Sejima a la fama internacional-, que también sería un sistema, pero distinto: basado en la repetición regular de una serie de elementos a lo largo de una directriz generando un hipotético contenedor infinito del que el proyecto sería tan solo un fragmento. La estrategia formal del edificio de Gifu ahondaría en la voluntad genérica del proyecto, adoptando la lógica de un juego. El proyecto sería una partida del juego, pero no la única posible, podrían jugarse otras. Esta hipótesis del juego está verificada en ‘El Juego de Gifu’ que - tras formular el juego identificando sus elementos (tablero y fichas), reglas y procedimientos- juega una partida: la que habría dado lugar al edificio proyectado por Sejima. Gifu extiende el concepto de ‘repetir’ un elemento constructivo a la de repetir un patrón espacial, lo que conlleva: la desvinculación entre forma y función; y un nuevo concepto de flexibilidad, que deja de referirse al uso flexible del edificio construido para pertenecer al momento proyectual en que se asignan funciones específicas a los patrones espaciales. Esta tesis propone que esa asignación de funciones sería uno de los últimos eslabones del proceso proyectual, algo opuesto a la premisa moderna de “la forma sigue a la función”. Las estrategias formales ‘Después de Gifu’ tienen también lógicas de juego, pero cada estrategia responde a un juego distinto, como dejan entrever sus nombres: ‘Tableros de Juego’, que con distintos grados de madurez estaría presente en varios proyectos; ‘Elementos de Catálogo’ en el Museo de Kanazawa; ‘Forma apriorística’, en la Casa Flor y ‘Repetición de una situación topológica’, en el Centro Rolex. Todas esas estrategias, o juegos, mantienen aspectos comunes relativos a la forma arquitectónica, precisamente los aspectos Gifu: la repetición aplicada al patrón espacial, y lo que conlleva: desvinculación entre forma y función y la nueva acepción de flexibilidad. ‘Tableros de Juego’ consiste en configurar cada sistema de proyecto (estructura, cerramientos, particiones y mobiliario) eligiendo elementos ofrecidos por una geometría de base, en cada proyecto la suya, en general reticular: intersecciones, líneas, módulos. Cada sistema se configura, en principio, sin relación de subordinación con cualquiera de los demás; cuando esa subordinación es ineludible, el juego determina que el sistema portante no puede materializar el orden geométrico de base, lo que se traduce en que no ejerce el papel dominante. Por lo tanto, ‘Tableros de Juego’ transgrede la lógica de la planta libre moderna: la estructura ni refleja ni revela el orden de base y los sistemas no respetan las relaciones de subordinación jerárquica y encadenada que aquella determinaba. Esta estrategia de ‘Tableros de juego’ deriva en soluciones y proyectos formales muy distintos: los proyectos de Oogaki y Park Café, que presentarían ‘Tableros de Juego’ incipientes; De Kunstlinie en Almere y la Escuela de Zollverein, que presentarían una consolidación de esta estrategia; y el Pabellón de Vidrio de Toledo que resultaría de la subversión de la estrategia. Este último proyecto, además, lleva el concepto de repetición más allá del elemento constructivo y del patrón espacial (que en este caso tiene forma de burbuja) parar acabar afectando a la propia experiencia del espectador, que esté donde esté, siempre tiene la sensación de estar en el mismo sitio. Esta tesis denomina a ese espacio repetitivo como ‘espacio mantra’. La estrategia ‘Elementos de Catálogo’ se ilustra con el Museo de Kanazawa. Su lógica parte de la definición de una serie de elementos, muy pocos, y se basa en el ingente número de posibles combinaciones entre sí. Gifu habría anunciado el catalogo de elementos en la caracterización de sus patrones espaciales. La estrategia ‘Forma Apriorística’ se ilustra con la Casa Flor. La decisión sobre el tipo de forma -en este caso la de una ameba- estaría al principio del proceso proyectual, lo que no quiere decir que sea una forma arbitraria: la forma de la ameba lleva implícita la repetición de un patrón espacial (el seudópodo) y una apoteosis del concepto de repetición que, alcanzando la experiencia espacial, da lugar a un espacio repetitivo o mantra. El ‘Espacio Mantra’ es uno de los leitmotivs, que se emplean como argumento en la última estrategia formal que la Tesis decodifica: el Centro Rolex. Con respecto a la estructura portante, la tesis identifica y traza una trayectoria de cinco estrategias proyectuales: preeminencia, ocultación, disolución, desaparición y desvirtuación. --Ocultación, reduce el papel dominante de la estructura. Al principio es una ocultación literal, casi un tapado de los elementos estructurales, como en Gifu; luego se hace más sofisticada, como la ocultación por camuflaje o la paradójica ocultación por multiplicación de Park Café. --La disolución merma la condición dominante de la estructura que en lugar de configurarse como sistema unitario u homogéneo se fragmenta en varios subsistemas. --La desaparición se refiere a estructuras que desaparecen como sistemas propios y autónomos, a proyectos en los que la función portante es desempeñada por otros sistemas como el de las particiones. La desaparición culmina con la Casa Flor, cuyo perímetro ejerce la función portante y además es transparente, está desmaterializado: la estructura se ha hecho invisible, ha desaparecido. --La desvirtuación se refiere a estructuras que sí se presentan como sistemas propios y autónomos, pero dejan de tener un papel preeminente por cuanto no materializan el orden de base: esta estrategia es correlativa a la estrategia formal ‘Tableros de juego’. Las conclusiones de la tesis están en la propia organización de la tesis: la identificación de las estrategias. Aún así, y como epílogos, se exponen seis. Las dos primeras subrayan el hilo conductor del trabajo realizado, que radica en la cualidad genérica de las estrategias proyectuales en Sejima-SANAA. Las cuatro siguientes dilucidan hasta qué punto hay, en sus proyectos, rasgos o significantes formales y/o estructurales que sean a su vez señales características del panorama arquitectónico contemporáneo; y plantean la pregunta estrella: ¿hay algunos que, apuntando más lejos, supongan aportaciones originales? --Como aportaciones originales la tesis destaca: la identificación entre el ideal genérico y proyecto concreto; y la propuesta de un espacio nuevo, híbrido, una suerte de estadio intermedio entre el espacio subdividido y compartimentado de la tradición y el continuo moderno. --Como síntomas de contemporaneidad se destacan: respecto de la forma, la traslación de la especificidad formal de la parte al conjunto; y respecto de la estructura, la tendencia contemporánea a hacer estructuras cada vez más ligeras y livianas, que tienden a lo evanescente. Ésta última, la tendencia al evanescencia estructural, podría tener la condición de aportación original, no en vano la desaparición de la estructura lleva la evanescencia hacia sus últimas consecuencias, y en el caso de estructuras con presencia física, hace que dejen de ser el sistema ordenador orquestador del proceso proyectual. ABSTRACT The Thesis decodes a selection of twenty representative Sejima-SANAA projects, from the first one built, the Platform I House in 1987, to the Rolex Center in 2010, year in which Sejima and Nishizawa –SANAA- received the Pritzker Prize. Eleven projects are from Sejima: Platform I, Platform II, Saishunkan Seiyaku Women´s Dormitory, N- House, Pachinco Parlor I, Villa in the Forest, Policy Box at Chofu Station, Y-House, Gifu Kitigata Apartment, World City Expo ´96 Facilities Building, Pachinko Parlor III; and nine from SANAA: Multimedia Workshop in Ogaki, Metropolitan Housing Studies, Park Café in Koga, De Kunstlinie in Almere, Kanazawa Museum, Glass Pavilion at the Toledo Museum of Art, Zollverein School, Flower House and the Rolex Center. This decoding reads the Sejima-SANAA’s projects inversely aiming ‘to reconstruct', in a fictitious simulation exercise, a likely and coherent version of what her/their projectual processes ‘could’ have been; ‘could’, because the true ones are impossible to explain. The ones proposed here pretend only to be likely and reasonable. By so doing the Thesis tries to contribute to the understanding and comprehension of Sejima-SANAA architecture and, tangentially and to a lesser extent, to the theory of architectural projects exercise. Decoding centers in two specific aspects: architectural form, and projectual role of the load bearing structure. Both decodes inevitably extend to other related aspects such as, for example, the nature of space. The research procedure begun by carrying out an objective and detailed description of the formal and structural signifiers of each project; looking at them from their physical and geometric configuration. Taken to the limit, the ‘objective’ descriptions allowed the conceptual structures and underlying logics of each project to arise. Together with critical interpretations, which related and confronted them with other architectures and well-known projectual working ways, it became possible to outline and trace the intended fictitious reconstruction decodes. The descriptive analytical work materialized in twenty critical essays, and was accompanied by a set of other essays on subjects suggested or demanded by the research process. Together, all those texts were the material basis on which thesis work was built. Looking at the whole and taking it from there, the thesis identifies two related projectual trajectories: a trajectory of formal strategies and a trajectory of strategies having to do with structural systems and components. Both, together, constitute the bulk of the thesis, as presented in the four central chapters. Preceding them there is an introductory chapter outlining the biographical path of Kazuyo Sejima and the professional trajectory of Sejima-SANAA. And following them there is another one containing transversal texts on form, place and space. The thesis ends with a synthesis on conclusions. The formal strategies are displayed in three chapters. The first one, `Early formal strategies' groups the first phase projects by Sejima. The second one, ‘Formal strategies of Gifu’s paradigm’, is entirely dedicated to the Gifu apartments project, 1994-98, which according to this thesis meant an important inflexion point in Sejima’s trajectory; so much so that the third chapter is named `Formal strategies after Gifu' and gathers the selected projects that followed it. The ‘Early formal strategies', diverse and tentative, move in general around two well-known projectual composition methods ‘composition by parts’, and ‘systematic composition’. This last one –systematic composition- begins and leads in SANAA’s trajectory an aspect which will remain relevant from here on: the understanding of the project as if it were an specific instance of a generic proposal in which -below and beyond the project tangible reality- there lays a logic that could be applicable at other places, for other dimensions, even with other programs; from each project, other projects of the same family could rise. The set of projects using this systematic composition method include, among others, the ‘Platform II House, based on the definition of a constructive element and of rules having to do with its replicas and their possible groupings. It also includes the Saishunkan Seiyaku Women Residence -project that launched Sejima to international fame- that could also be seen as a system, but of a different kind: a system based on the regular repetition of a series of elements along a directive line, thus generating a hypothetical infinite container of which the project would be only a fragment. The formal strategy of the Gifu apartments building would push further towards the generic project concept, adopting the logic of a game. The project would be a bout, a round, one play…, but not the only possible one; others could be played. The thesis confirms this game hypothesis -after having formulated `The Game of Gifu' and identified its elements (board, chips, rules and procedures)- playing the one play from which the building as projected by Sejima would have raised. Gifu extends the concept of ‘repeating a constructive element’ to that of ‘repeating a space pattern element’, and to what it implies: the decoupling of form and function, leading to a new concept of flexibility that no longer refers to the flexible use of the constructed building but to the projectual moment at which the specific functions are assigned to the space patterns. This thesis proposes that this allocation of functions would be one of the last steps in projectual process, quite opposite from the modern premise: “form follows function”. The Formal strategies after Gifu do also have a game logic; but, as their names reveal, each strategy responds to a different game: ‘Game Boards’, present with different maturity levels in several projects; ‘Elements from a Catalogue’, in the Kanazawa Museum; ‘Aprioristic Form’, in the Flower House; and ‘Repetition of a topologic situation', in the Rolex Center. All of these strategies, or games, maintain common aspects having to do with architectural form; aspects that were already present, precisely, in Gifu: repetition of space pattern units, uncoupling of form and function, and a new meaning of flexibility. -`Game Boards’ consists on setting up a base geometry -each project his, generally reticular- and give form to each project system (structure, closings, partitions and furniture) by choosing elements -intersections, lines, modules- it offers. Each project system is formed, in principle, with no subordinated relation with any of the others; when subordination is unavoidable, the game rules determine that the load bearing structural system may not be the one to materialize the base geometric order, which means that it does not exert the dominant role. Therefore, ‘Game Boards' transgresses the Modern logic, because the structure neither reflects nor reveals the base order, and because the systems do not respect any of the hierarchic and chained subordination relations that the ‘free plan’ called for. ‘Game Boards' leads to quite different solutions and formal projects: the Oogaki and Park Coffee projects show incipient Game Boards; The Almere Kunstlinie and the Zollverein School present consolidations of this strategy; and the Toledo’s Glass Pavilion results from subverting the strategy. In addition, the Toledo project takes the repetition concept beyond that of using a constructive element and a space pattern element (in this case with a bubble form) to end up affecting the personal experience of the spectator, who, wherever he is, feels to always be in the same place. This thesis denominates that repetitive space as ‘Mantra space '. -‘Elements from a Catalogue’ is shown with the Kanazawa Museum. Its logic starts from the definition of a series of elements, very few, and it is based on the huge number of possible combinations among them. The ‘Elements from a Catalogue’ approach was announced in the Gifu project when characterizing its space pattern elements. -Aprioristic Form' is illustrated by the Flower House. The decision on the type of form -in this case the form of an amoeba- would be the beginning of the projectual process, but it does not mean it is arbitrary form: the amoeba form implies repeating a space pattern (pseudopodia) and an apotheosis of the repetition concept: embracing the space experience, it gives rise to a repetitive or mantra space. ‘Mantra Space’ is one of leitmotivs used as an argument in the last formal strategy Thesis decodes: the Rolex Center. With respect to the ‘Projectual strategies of the load bearing structure’, the thesis finds and traces a trajectory of five projectual strategies: ‘preeminence, concealment, dissolution, disappearance and desvirtuación’. --Preeminence is present in Sejima’s first works in which she resorts to structures which have a dominant preeminent role in the project in so far as they impersonate the greater scale and/or materialize the base geometric order. In later works that preeminence will be inverted, the projects aiming towards its opposite: lighter, slighter, smaller structures. -Concealment reduces the dominant role of the structure. At the outset concealment is literal, almost hiding the structural elements, as in Gifu; soon it will become more sophisticated, such as the concealment by camouflage or the paradoxical concealment by multiplication in the Koga Park Café. -Dissolution diminishes the dominant condition of the structure: instead of its’ being configured as unitary or homogenous system is fragmented in several subsystems. -Disappearance talks about structures that fade away as self referred and independent systems; projects in which the load bearing function is carried out by other systems such as the set of partitions. Disappearance reaches its zenith at the Flower House, whose perimeter functions structurally being, in addition, transparent, immaterial: its structure has become invisible, has disappeared. -Desvirtuación talks about structures that do appear like independent self-systems, but which that do not longer have a preeminent paper, inasmuch as they do not materialize the base order. This strategy correlates with the ‘Game Boards’ formal strategy. The thesis conclusions are show by the organization of the thesis itself: its identification of the different strategies. Even so, as epilogues, the thesis exposes six ‘Conclusions’. The first two emphasize the leading thread of the work done, rooted in the generic quality of the Sejima-SANAA projectual strategies. The following four expound to what extent their projects show features, or formal and/or structural signifiers, which also are or can be read as characteristic signals of the contemporary architectonic panorama, and raise the key question: aiming farther, may some of them be taken as original contributions? -As original contributions the conclusions highlight: the identification between the generic ideal and the concrete project; and the proposal of a new, hybrid space, kind of an intermediate stage between the traditional subdivided compartmented space and the continuous modern. -As symptoms of contemporaneousness: in relation to the form it highlights the transferring of the formal specificity from the part to the whole; and in relation to the structure, it underscore the contemporary tendency towards lighter and growingly slimmer structures, tending to the evanescent. This last one, the tendency towards structural evanescence, could have condition of being an original contribution, not in vain it carries the structural disappearance towards its last consequences; and in the case of structures with physical presence, it makes them to cease being the ordering system orchestrating the projectual process.
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El vidrio se trata de un material muy apreciado en la arquitectura debido a la transparencia, característica que pocos materiales tienen. Pero, también es un material frágil, con una rotura inmediata cuando alcanza su límite elástico, sin disponer de un período plástico, que advierta de su futura rotura y permita un margen de seguridad. Por ambas razones, el vidrio se ha utilizado en arquitectura como elemento de plementería o relleno, desde tiempos antiguos, pero no como elemento estructural o portante, pese a que es un material interesante para los arquitectos para ese uso, por su característica de transparencia, ya que conseguiría la desmaterialización visual de la estructura, logrando espacios más ligeros y livianos. En cambio, si se tienen en cuenta las propiedades mecánicas del material se puede comprobar que dispone de unas características apropiadas para su uso estructural, ya que su Módulo elástico es similar al del aluminio, elemento muy utilizado en la arquitectura principalmente en las fachadas desde los últimos años, y su resistencia a compresión es muy superior incluso al hormigón armado; aunque su principal problema es su resistencia a tracción que es muy inferior a su resistencia a compresión, lo que penaliza su resistencia a flexión. En la actualidad se empieza a utilizar el vidrio como elemento portante o estructural, pero debido a su peor resistencia a flexión, se utilizan con grandes dimensiones que, a pesar de su transparencia, tienen una gran presencia. Por ello, la presente investigación pretende conseguir una reducción de las secciones de estos elementos estructurales de vidrio. Entonces, para el desarrollo de la investigación es necesario responder a una serie de preguntas fundamentales, cuyas respuestas serán el cuerpo de la investigación: 1. ¿Cuál es la finalidad de la investigación? El objetivo de esta investigación es la optimización de elementos estructurales de vidrio para su utilización en arquitectura. 2. ¿Cómo se va a realizar esa optimización? ¿Qué sistemas se van a utilizar? El sistema para realizar la optimización será la pretensión de los elementos estructurales de vidrio 3. ¿Por qué se va a utilizar la precompresión? Porque el vidrio tiene un buen comportamiento a compresión y un mal comportamiento a tracción lo que penaliza su utilización a flexión. Por medio de la precompresión se puede incrementar esta resistencia a tracción, ya que los primeros esfuerzos reducirán la compresión inicial hasta comenzar a funcionar a tracción, y por tanto aumentará su capacidad de carga. 4. ¿Con qué medios se va a comprobar y justificar ese comportamiento? Mediante simulaciones informáticas con programas de elementos finitos. 5. ¿Por qué se utilizará este método? Porque es una herramienta que arroja ventajas sobre otros métodos como los experimentales, debido a su fiabilidad, economía, rapidez y facilidad para establecer distintos casos. 6. ¿Cómo se garantiza su fiabilidad? Mediante el contraste de resultados obtenidos con ensayos físicos realizados, garantizando de ésta manera el buen comportamiento de los programas utilizados. El presente estudio tratará de responder a todas estas preguntas, para concluir y conseguir elementos estructurales de vidrio con secciones más reducidas gracias a la introducción de la precompresión, todo ello a través de las simulaciones informáticas por medio de elementos finitos. Dentro de estas simulaciones, también se realizarán comprobaciones y comparaciones entre distintas tipologías de programas para comprobar y contrastar los resultados obtenidos, intentando analizar cuál de ellos es el más idóneo para la simulación de elementos estructurales de vidrio. ABSTRACT Glass is a material very appreciated in architecture due to its transparency, feature that just a few materials share. But it is also a brittle material with an immediate breakage when it reaches its elastic limit, without having a plastic period that provides warning of future breakage allowing a safety period. For both reasons, glass has been used in architecture as infill panels, from old times. However, it has never been used as a structural or load‐bearing element, although it is an interesting material for architects for that use: because of its transparency, structural glass makes possible the visual dematerialization of the structure, achieving lighter spaces. However, taking into account the mechanical properties of the material, it is possible to check that it has appropriate conditions for structural use: its elastic modulus is similar to that of aluminium, element widely used in architecture, especially in facades from recent years; and its compressive strength is much higher than even the one of concrete. However, its main problem consists in its tensile strength that is much lower than its compressive strength, penalizing its resistance to bending. Nowadays glass is starting to be used as a bearing or structural element, but due to its worse bending strength, elements with large dimensions must be used, with a large presence despite its transparency. Therefore this research aims to get smaller sections of these structural glass elements. For the development of this thesis, it is necessary to answer a number of fundamental questions. The answers will be the core of this work: 1. What is the purpose of the investigation? The objective of this research is the optimization of structural glass elements for its use in architecture. 2. How are you going to perform this optimization? What systems will be implemented? The system for optimization is the pre‐stress of the structural elements of glass 3. Why are you going to use the pre‐compression? Because glass has a good resistance to compression and a poor tensile behaviour, which penalizes its use in bending elements. Through the pre‐compression it is possible to increase this tensile strength, due to the initial tensile efforts reducing the pre‐stress and increasing its load capacity. 4. What are the means that you will use in order to verify and justify this behaviour? The means are based on computer simulations with finite element programs (FEM) 5. Why do you use this method? Because it is a tool which gives advantages over other methods such as experimental: its reliability, economy, quick and easy to set different cases. 6. How the reliability is guaranteed? It’s guaranteed comparing the results of the simulation with the performed physical tests, ensuring the good performance of the software. This thesis will attempt to answer all these questions, to obtain glass structural elements with smaller sections thanks to the introduction of the pre‐compression, all through computer simulations using finite elements methods. In these simulations, tests and comparisons between different types of programs will also be implemented, in order to test and compare the obtained results, trying to analyse which one is the most suitable for the simulation of structural glass elements.
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Thesis (Ph.D.)--University of Washington, 2016-06
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This study is concerned with the mechanisms of growth and wear of protective oxide films formed under various tribological conditions. In the study three different tribological systems are examined in each of which oxidational wear is the dominant equilibrium mode. These are an unlubricated steel on steel system sliding at low and elevated temperatures, a boundary lubricated aluminium bronze on steel system and an unlubricated reciprocating sliding 9% Cr steel system operated at elevated temperature, in an atmosphere of carbon dioxide. The results of mechanical measurements of wear and friction are presented for a range of conditions of load, speed and temper.ature for the systems, together with the results of extensive examinations of the surfaces and sub surfaces by various physical methods of analysis. The major part of the thesis, however, is devoted to the development and application of surface models and theoretical quantative expressions in order to explain the observed oxidational wear phenomena. In this work, the mechanisms of formation of load bearing ox ide plateaux are described and are found to be dependent on system geometry and environment. The relative importance of ''in contact" and "out of contact" oxidation is identified together with growth rate constants appropriate to the two situations. Hypotheses are presented to explain the mechanisms of removal of plateaux to form wear debris. The latter hypotheses include the effects of cyclic stressing and dislocation accumulation, together with effects associated with the kinetics of growth and physical properties of the various oxides. The proposed surf ace mode1s have led to the develop ment of quantitative expressions for contact temperature, unlubricated wear rates, boundary lubricated wear rates and the wear of rna ter ial during the transition from severe to mild wear. In general theoretical predictions from these expressions are in very good agreement with experimental values.
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The purpose of this investigation was to design a novel magnetic drive and bearing system for a new centrifugal rotary blood pump (CRBP). The drive system consists of two components: (i) permanent magnets within the impeller of the CRBP; and (ii) the driving electromagnets. Orientation of the magnets varies from axial through to 60° included out-lean (conical configuration). Permanent magnets replace the electromagnet drive to allow easier characterization. The performance characteristics tested were the axial force of attraction between the stator and rotor at angles of rotational alignment, Ø, and the corresponding torque at those angles. The drive components were tested for various magnetic cone angles, ?. The test was repeated for three backing conditions: (i) non-backed; (ii) steel-cupped; and (iii) steel plate back-iron, performed on an Instron tensile testing machine. Experimental results were expanded upon through finite element and boundary element analysis (BEM). The force/torque characteristics were maximal for a 12-magnet configuration at 0° cone angle with steel-back iron (axial force = 60 N, torque = 0.375 Nm). BEM showed how introducing a cone angle increases the radial restoring force threefold while not compromising axial bearing force. Magnets in the drive system may be orientated not only to provide adequate coupling to drive the CRBP, but to provide significant axial and radial bearing forces capable of withstanding over 100 m/s2 shock excitation on the impeller. Although the 12 magnet 0° (?) configuration yielded the greatest force/torque characteristic, this was seen as potentially unattractive as this magnetic cone angle yielded poor radial restoring force characteristics.
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Articular cartilage is a highly hydrated tissue with depth-dependent cellular and matrix properties that provide low-friction load bearing in joints. However, the structure and function are frequently lost and there is insufficient repair response to regenerate high-quality cartilage. Several hydrogel-based tissue-engineering strategies have recently been developed to form constructs with biomimetic zonal variations to improve cartilage repair. Modular hydrogel systems allow for systematic control over hydrogel properties, and advanced fabrication techniques allow for control over construct organization. These technologies have great potential to address many unanswered questions involved in prescribing zonal properties to tissue-engineered constructs for cartilage repair.
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A bioactive and bioresorbable scaffold fabricated from medical grade poly (epsilon-caprolactone) and incorporating 20% beta-tricalcium phosphate (mPCL–TCP) was recently developed for bone regeneration at load bearing sites. In the present study, we aimed to evaluate bone ingrowth into mPCL–TCP in a large animal model of lumbar interbody fusion. Six pigs underwent a 2-level (L3/4; L5/6) anterior lumbar interbody fusion (ALIF) implanted with mPCL–TCP þ 0.6 mg rhBMP-2 as treatment group while four other pigs implanted with autogenous bone graft served as control. Computed tomographic scanning and histology revealed complete defect bridging in all (100%) specimen from the treatment group as early as 3 months. Histological evidence of continuing bone remodeling and maturation was observed at 6 months. In the control group, only partial bridging was observed at 3 months and only 50% of segments in this group showed complete defect bridging at 6 months. Furthermore, 25% of segments in the control group showed evidence of graft fracture, resorption and pseudoarthrosis. In contrast, no evidence of graft fractures, pseudoarthrosis or foreign body reaction was observed in the treatment group. These results reveal that mPCL–TCP scaffolds could act as bone graft substitutes by providing a suitable environment for bone regeneration in a dynamic load bearing setting such as in a porcine model of interbody spine fusion.
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Biotribology, the study of lubrication, wear and friction within the body, has become a topic of high importance in recent times as we continue to encounter debilitating diseases and trauma that destroy function of the joints. A highly successful surgical procedure to replace the joint with an artificial equivalent alleviates dysfunction and pain. However, the wear of the bearing surfaces in prosthetic joints is a significant clinical problem and more patients are surviving longer than the life expectancy of the joint replacement. Revision surgery is associated with increased morbidity and mortality and has a far less successful outcome than primary joint replacement. As such, it is essential to ensure that everything possible is done to limit the rate of revision surgery. Past experience indicates that the survival rate of the implant will be influenced by many parameters, of primary importance, the material properties of the implant, the composition of the synovial fluid and the method of lubrication. In prosthetic joints, effective boundary lubrication is known to take place. The interaction of the boundary lubricant and the bearing material is of utmost importance. The identity of the vital active ingredient within synovial fluid (SF) to which we owe the near frictionless performance of our articulating joints has been the quest of researchers for many years. Once identified, tribo tests can determine what materials and more importantly what surfaces this fraction of SF can function most optimally with. Surface-Active Phospholipids (SAPL) have been implicated as the body’s natural load bearing lubricant. Studies in this thesis are the first to fully characterise the adsorbed SAPL detected on the surface of retrieved prostheses and the first to verify the presence of SAPL on knee prostheses. Rinsings from the bearing surfaces of both hip and knee prostheses removed from revision operations were analysed using High Performance Liquid Chromatography (HPLC) to determine the presence and profile of SAPL. Several common prosthetic materials along with a novel biomaterial were investigated to determine their tribological interaction with various SAPLs. A pin-on-flat tribometer was used to make comparative friction measurements between the various tribo-pairs. A novel material, Pyrolytic Carbon (PyC) was screened as a potential candidate as a load bearing prosthetic material. Friction measurements were also performed on explanted prostheses. SAPL was detected on all retrieved implant bearing surfaces. As a result of the study eight different species of phosphatidylcholines were identified. The relative concentrations of each species were also determined indicating that the unsaturated species are dominant. Initial tribo tests employed a saturated phosphatidylcholine (SPC) and the subsequent tests adopted the addition of the newly identified major constituents of SAPL, unsaturated phosphatidylcholine (USPC), as the test lubricant. All tribo tests showed a dramatic reduction in friction when synthetic SAPL was used as the lubricant under boundary lubrication conditions. Some tribopairs showed more of an affinity to SAPL than others. PyC performed superior to the other prosthetic materials. Friction measurements with explanted prostheses verified the presence and performance of SAPL. SAPL, in particular phosphatidylcholine, plays an essential role in the lubrication of prosthetic joints. Of particular interest was the ability of SAPLs to reduce friction and ultimately wear of the bearing materials. The identification and knowledge of the lubricating constituents of SF is invaluable for not only the future development of artificial joints but also in developing effective cures for several disease processes where lubrication may play a role. The tribological interaction of the various tribo-pairs and SAPL is extremely favourable in the context of reducing friction at the bearing interface. PyC is highly recommended as a future candidate material for use in load bearing prosthetic joints considering its impressive tribological performance.
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Cold-formed steel members have been widely used in residential, industrial and commercial buildings as primary load bearing structural elements and non-load bearing structural elements (partitions) due to their advantages such as higher strength to weight ratio over the other structural materials such as hot-rolled steel, timber and concrete. Cold-formed steel members are often made from thin steel sheets and hence they are more susceptible to various buckling modes. Generally short columns are susceptible to local or distortional buckling while long columns to flexural or flexural-torsional buckling. Fire safety design of building structures is an essential requirement as fire events can cause loss of property and lives. Therefore it is essential to understand the fire performance of light gauge cold-formed steel structures under fire conditions. The buckling behaviour of cold-formed steel compression members under fire conditions is not well investigated yet and hence there is a lack of knowledge on the fire performance of cold-formed steel compression members. Current cold-formed steel design standards do not provide adequate design guidelines for the fire design of cold-formed steel compression members. Therefore a research project based on extensive experimental and numerical studies was undertaken at the Queensland University of Technology to investigate the buckling behaviour of light gauge cold-formed steel compression members under simulated fire conditions. As the first phase of this research, a detailed review was undertaken on the mechanical properties of light gauge cold-formed steels at elevated temperatures and the most reliable predictive models for mechanical properties and stress-strain models based on detailed experimental investigations were identified. Their accuracy was verified experimentally by carrying out a series of tensile coupon tests at ambient and elevated temperatures. As the second phase of this research, local buckling behaviour was investigated based on the experimental and numerical investigations at ambient and elevated temperatures. First a series of 91 local buckling tests was carried out at ambient and elevated temperatures on lipped and unlipped channels made of G250-0.95, G550-0.95, G250-1.95 and G450-1.90 cold-formed steels. Suitable finite element models were then developed to simulate the experimental conditions. These models were converted to ideal finite element models to undertake detailed parametric study. Finally all the ultimate load capacity results for local buckling were compared with the available design methods based on AS/NZS 4600, BS 5950 Part 5, Eurocode 3 Part 1.2 and the direct strength method (DSM), and suitable recommendations were made for the fire design of cold-formed steel compression members subject to local buckling. As the third phase of this research, flexural-torsional buckling behaviour was investigated experimentally and numerically. Two series of 39 flexural-torsional buckling tests were undertaken at ambient and elevated temperatures. The first series consisted 2800 mm long columns of G550-0.95, G250-1.95 and G450-1.90 cold-formed steel lipped channel columns while the second series contained 1800 mm long lipped channel columns of the same steel thickness and strength grades. All the experimental tests were simulated using a suitable finite element model, and the same model was used in a detailed parametric study following validation. Based on the comparison of results from the experimental and parametric studies with the available design methods, suitable design recommendations were made. This thesis presents a detailed description of the experimental and numerical studies undertaken on the mechanical properties and the local and flexural-torsional bucking behaviour of cold-formed steel compression member at ambient and elevated temperatures. It also describes the currently available ambient temperature design methods and their accuracy when used for fire design with appropriately reduced mechanical properties at elevated temperatures. Available fire design methods are also included and their accuracy in predicting the ultimate load capacity at elevated temperatures was investigated. This research has shown that the current ambient temperature design methods are capable of predicting the local and flexural-torsional buckling capacities of cold-formed steel compression members at elevated temperatures with the use of reduced mechanical properties. However, the elevated temperature design method in Eurocode 3 Part 1.2 is overly conservative and hence unsuitable, particularly in the case of flexural-torsional buckling at elevated temperatures.
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In recent times, light gauge cold-formed steel sections have been used extensively as primary load bearing structural members in many applications in the building industry. Fire safety design of structures using such sections has therefore become more important. Deterioration of mechanical properties of yield stress and elasticity modulus is considered the most important factor affecting the performance of steel structures in fires. Hence there is a need to fully understand the mechanical properties of light gauge cold-formed steels at elevated temperatures. A research project based on experimental studies was therefore undertaken to investigate the deterioration of mechanical properties of light gauge cold-formed steels. Tensile coupon tests were undertaken to determine the mechanical properties of these steels made of both low and high strength steels and thicknesses of 0.60, 0.80 and 0.95 mm at temperatures ranging from 20 to 800ºC. Test results showed that the currently available reduction factors are unsafe to use in the fire safety design of cold-formed steel structures. Therefore new predictive equations were developed for the mechanical properties of yield strength and elasticity modulus at elevated temperatures. This paper presents the details of the experimental study, and the results including the developed equations. It also includes details of a stress-strain model for light gauge cold-formed steels at elevated temperatures.
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Changes in load characteristics, deterioration with age, environmental influences and random actions may cause local or global damage in structures, especially in bridges, which are designed for long life spans. Continuous health monitoring of structures will enable the early identification of distress and allow appropriate retrofitting in order to avoid failure or collapse of the structures. In recent times, structural health monitoring (SHM) has attracted much attention in both research and development. Local and global methods of damage assessment using the monitored information are an integral part of SHM techniques. In the local case, the assessment of the state of a structure is done either by direct visual inspection or using experimental techniques such as acoustic emission, ultrasonic, magnetic particle inspection, radiography and eddy current. A characteristic of all these techniques is that their application requires a prior localization of the damaged zones. The limitations of the local methodologies can be overcome by using vibration-based methods, which give a global damage assessment. The vibration-based damage detection methods use measured changes in dynamic characteristics to evaluate changes in physical properties that may indicate structural damage or degradation. The basic idea is that modal parameters (notably frequencies, mode shapes, and modal damping) are functions of the physical properties of the structure (mass, damping, and stiffness). Changes in the physical properties will therefore cause changes in the modal properties. Any reduction in structural stiffness and increase in damping in the structure may indicate structural damage. This research uses the variations in vibration parameters to develop a multi-criteria method for damage assessment. It incorporates the changes in natural frequencies, modal flexibility and modal strain energy to locate damage in the main load bearing elements in bridge structures such as beams, slabs and trusses and simple bridges involving these elements. Dynamic computer simulation techniques are used to develop and apply the multi-criteria procedure under different damage scenarios. The effectiveness of the procedure is demonstrated through numerical examples. Results show that the proposed method incorporating modal flexibility and modal strain energy changes is competent in damage assessment in the structures treated herein.
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Controlling differential axial shortening in vertical load bearing concrete elements is a major concern for new generation tall buildings with complex geometries and mechanisms. Quantification of axial shortening using gauges to verify the pre-estimated numerical values used at the design stage is a well established method. This method makes adequate provision to mitigate the adverse effects during the construction. However, this method is becoming increasingly unusable due to its drawbacks. This highlights the need a novel method to quantify the axial shortening using ambient measurements. This paper will first brief introduce the method and then illustrate its application to a high-rise building with two outrigger and belt systems. Moreover, this procedure can be used as a health or performance monitoring tool of the building structure, both during and after construction.