984 resultados para Confined masonry


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The prime aim of this research project is to evaluate the performance of confined masonry walls under in-plane shear with a view to contributing to the national masonry design standard through a set of design clauses. This aim stems from the criticisms of the current provisions of the in-plane shear capacity equations in the Australian Masonry Standard AS3700 (2011) being highly non-conservative. This PhD thesis is an attempt to address this gap in the knowledge through systematic investigation of the key parameters that affects the in-plane shear strength of the masonry walls through laboratory experiments and extensive finite element analyses.

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In-plane shear capacity formulation of reinforced masonry is commonly conceived as the sum of the capacities of three parameters, viz, the masonry, the reinforcement, and the precompression. The term “masonry” incorporates the aspect ratio of the wall without any regard to the aspect ratio of the panels inscribed (and hence confined) by the vertical and the horizontal reinforced grout cores. This paper proposes design expressions in which the aspect ratio of such panels is explicitly included. For this purpose, the grouted confining cores are regarded as a grid of confining elements within which the panels are positioned. These confined masonry panels are then considered as building blocks for multi-bay, multi-storied confined masonry shear walls and analyzed using an experimentally validated macroscopic finite-element model. Results of the analyzes of 161 confined masonry walls containing panels of height to length ratio less than 1.0 have been regressed to formulate design expressions. These expressions have been first validated using independent test data sets and then compared with the existing equations in some selected international design standards. The concept of including the unreinforced masonry panel aspect ratio as an additional term in the design expression for partially grouted/confined masonry shear walls is recommended based on the conclusions from this paper.

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The increasing use of Fiber Reinforced methods for strengthening existing brick masonry walls and columns, especially for the rehabilitation of historical buildings, has generated considerable research interest in understanding the failure mechanism in such systems. This dissertation is aimed to provide a basic understanding of the behavior of solid brick masonry walls unwrapped and wrapped with Fiber Reinforced Cementitious Matrix Composites. This is a new type of composite material, commonly known as FRCM, featuring a cementitious inorganic matrix (binder) instead of the more common epoxy one. The influence of the FRCM-reinforcement on the load-carrying capacity and strain distribution during compression test will be investigated using a full-field optical technique known as Digital Image Correlation. Compression test were carried on 6 clay bricks columns and on 7 clay brick walls in three different configuration, casted using bricks scaled respect the first one with a ratio 1:2, in order to determinate the effects of FRCM reinforcement. The goal of the experimental program is to understand how the behavior of brick masonry will be improved by the FRCM-wrapping. The results indicate that there is an arching action zone represented in the form of a parabola with a varying shape according to the used configuration. The area under the parabolas is considered as ineffectively confined. The effectively confined area is assumed to occur within the region where the arching action had been fully developed.

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A combined experimental and numerical program was conducted to study the in-plane shear behaviour of hollow concrete masonry panels containing reinforced grout cores. This paper is focused on the numerical program. A two dimensional macromodelling strategy was used to simulate the behaviour of the confined masonry (CM) shear panels. Both the unreinforced masonry and the confining element were modelled using macromasonry properties and the steel reinforcement was modelled as an embedded truss element located within the grout using perfectly bonded constraint. The FE model reproduced key behaviours observed in the experiments, including the shear strength, the deformation and the crack patterns of the unconfined and confined masonry panels. The predictions of the validated model were used to evaluate the existing in-plane shear expressions available in the national masonry standards and research publications.

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Unreinforced masonry (URM) structures that are in need of repair and rehabilitation constitute a significant portion of building stock worldwide. The successful application of fiber-reinforced polymers (FRP) for repair and retrofitting of reinforced-concrete (RC) structures has opened new avenues for strengthening URM structures with FRP materials. The present study analyzes the behavior of FRP-confined masonry prisms under monotonic axial compression. Masonry comprising of burnt clay bricks and cement-sand mortar (generally adopted in the Indian subcontinent) having E-b/E-m ratio less than one is employed in the study. The parameters considered in the study are, (1) masonry bonding pattern, (2) inclination of loading axis to the bed joint, (3) type of FRP (carbon FRP or glass FRP), and (4) grade of FRP fabric. The performance of FRP-confined masonry prisms is compared with unconfined masonry prisms in terms of compressive strength, modulus of elasticity and stress-strain response. The results showed an enhancement in compressive strength, modulus of elasticity, strain at peak stress, and ultimate strain for FRP-confined masonry prisms. The FRP confinement of masonry resulted in reducing the influence of the inclination of the loading axis to the bed joint on the compressive strength and failure pattern. Various analytical models available in the literature for the prediction of compressive strength of FRP-confined masonry are assessed. New coefficients are generated for the analytical model by appending experimental results of the current study with data available in the literature. (C) 2014 American Society of Civil Engineers.

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This paper presents a study on the effectiveness of two forms of reinforced grout confining systems for hollow concrete block masonry. The systems considered are: (1) a layer of grout directly confining the unreinforced masonry, and (2) a layer of grout indirectly confining the unreinforced masonry through block shells. The study involves experimental testing and finite-element (FE) modeling of six diagonally loaded masonry panels containing the two confining systems. The failure mode, the ultimate load, and the load-deformation behaviors of the diagonally loaded panels were successfully simulated using the finite-element model. In-plane shear strength and stiffness of the masonry thus determined are used to evaluate some selected models of the confined masonry shear including the strut-and-tie model reported in the literature. The evaluated strut width is compared with the prediction of the FE model and then extended for rational prediction of the strength of confined masonry shear walls.

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Ein großer Teil der Schäden wie auch der Verluste an Gesundheit und Leben im Erdbebenfall hat mit dem frühzeitigen Versagen von Mauerwerksbauten zu tun. Unbewehrtes Mauerwerk, wie es in vielen Ländern üblich ist, weist naturgemäß einen begrenzten Erdbebenwiderstand auf, da Zugspannungen und Zugkräfte nicht wie bei Stahlbeton- oder Stahlbauten aufgenommen werden können. Aus diesem Grund wurde bereits mit verschiedenen Methoden versucht, die Tragfähigkeit von Mauerwerk im Erdbebenfall zu verbessern. Modernes Mauerwerk kann auch als bewehrtes oder eingefasstes Mauerwerk hergestellt werden. Bei bewehrtem Mauerwerk kann durch die Bewehrung der Widerstand bei Beanspruchung als Scheibe wie als Platte verbessert werden, während durch Einfassung mit Stahlbetonelementen in erster Linie die Scheibentragfähigkeit sowie die Verbindung zu angrenzenden Bauteilen verbessert wird. Eine andere interessante Möglichkeit ist das Aufbringen textiler Mauerwerksverstärkungen oder von hochfesten Lamellen. In dieser Arbeit wird ein ganz anderer Weg beschritten, indem weiche Fugen Spannungsspitzen reduzieren sowie eine höhere Verformbarkeit gewährleiten. Dies ist im Erdbebenfall sehr hilfreich, da die Widerstandfähigkeit eines Bauwerks oder Bauteils letztlich von der Energieaufnahmefähigkeit, also dem Produkt aus Tragfähigkeit und Verformbarkeit bestimmt wird. Wenn also gleichzeitig durch die weichen Fugen keine Schwächung oder sogar eine Tragfähigkeitserhöhung stattfindet, kann der Erdbebenwiderstand gesteigert werden. Im Kern der Dissertation steht die Entwicklung der Baukonstruktion einer Mauerwerkstruktur mit einer neuartigen Ausbildung der Mauerwerksfugen, nämlich Elastomerlager und Epoxydharzkleber anstatt üblichem Dünnbettmörtel. Das Elastomerlager wird zwischen die Steinschichten einer Mauerwerkswand eingefügt und damit verklebt. Die Auswirkung dieses Ansatzes auf das Verhalten der Mauerwerkstruktur wird unter dynamischer und quasi-statischer Last numerisch und experimentell untersucht und dargestellt.

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O facto de se ignorar a contribuição da resistência às forças laterais que solicitam as paredes de alvenaria das estruturas em zonas sísmicas é um tema que tem dado muito de que falar na engenharia estrutural. Em Portugal os projetistas preferem as soluções em betão armado pela sua ampla aplicação e bons resultados ao longo dos tempos. Perante o exposto anteriormente e com o objetivo de abrir possibilidades a novas alternativas que permitam de igual forma bons comportamentos estruturais, pensando na construção económica e com segurança, apresenta-se este estudo que propõe a aplicação de alvenaria confinada em zonas sísmicas de Portugal. A presente dissertação está composta por seis capítulos. No capítulo I apresenta-se uma introdução ao problema que permita ao leitor o enquadramento no tema, indicando de igual forma os objetivos específicos que foram precisos cumprir para chegar ao objetivo geral pretendido, isto é, a proposta duma metodologia de conceção de estruturas de habitação usando alvenaria confinada em zonas de risco sísmico em Portugal, delimitadas para edificações de 1 a 2 andares. Os requisitos gerais de ligação considerados baseiam-se no documento “SEISMIC DESIGN GUIDE FOR LOW-RISE CONFINED MASONRY BUILDINGS” os quais foram complementados com dados recomendados pelos EC 6 e EC 8 baseados na norma portuguesa. No capítulo II mostram-se antecedentes de estudos nacionais e internacionais da alvenaria confinada, assim mesmo encontram-se as bases teóricas com definições e requerimentos importantes a serem considerados no momento da conceção do projeto, ainda nesta seção indicam-se os passos para a aplicação do método de cálculo de esforços resistentes das paredes de alvenaria confinada (Método Simplificado), tal método foi aplicado e validado em modelos de elementos finitos desenhados com materiais e características sísmicas de comum aplicação em Portugal como se apresenta no capítulo III. No capítulo IV analisam-se os resultados obtidos, levando a que no capítulo V se descreva uma proposta de aplicação de alvenaria confinada em zonas de baixa sismicidade e alta sismicidade em Portugal. Finalmente no capítulo VI os resultados obtidos levam a concluir que em zonas de baixa sismicidade o dimensionamento de densidade de paredes é dependente das cargas gravíticas para edifícios de 1 e 2 níveis. No caso de zonas de alta sismicidade são as forças sísmicas as condicionantes. Ainda para edifícios de 2 níveis nestas zonas,a espessura mínima das paredes é de 0,20 m.

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O facto de se ignorar a contribuição da resistência às forças laterais que solicitam as paredes de alvenaria das estruturas em zonas sísmicas é um tema que tem dado muito de que falar na engenharia estrutural. Em Portugal os projetistas preferem as soluções em betão armado pela sua ampla aplicação e bons resultados ao longo dos tempos. Perante o exposto anteriormente e com o objetivo de abrir possibilidades a novas alternativas que permitam de igual forma bons comportamentos estruturais, pensando na construção económica e com segurança, apresenta-se este estudo que propõe a aplicação de alvenaria confinada em zonas sísmicas de Portugal. A presente dissertação está composta por seis capítulos. No capítulo I apresenta-se uma introdução ao problema que permita ao leitor o enquadramento no tema, indicando de igual forma os objetivos específicos que foram precisos cumprir para chegar ao objetivo geral pretendido, isto é, a proposta duma metodologia de conceção de estruturas de habitação usando alvenaria confinada em zonas de risco sísmico em Portugal, delimitadas para edificações de 1 a 2 andares. Os requisitos gerais de ligação considerados baseiam-se no documento “SEISMIC DESIGN GUIDE FOR LOW-RISE CONFINED MASONRY BUILDINGS” os quais foram complementados com dados recomendados pelos EC 6 e EC 8 baseados na norma portuguesa. No capítulo II mostram-se antecedentes de estudos nacionais e internacionais da alvenaria confinada, assim mesmo encontram-se as bases teóricas com definições e requerimentos importantes a serem considerados no momento da conceção do projeto, ainda nesta seção indicam-se os passos para a aplicação do método de cálculo de esforços resistentes das paredes de alvenaria confinada (Método Simplificado), tal método foi aplicado e validado em modelos de elementos finitos desenhados com materiais e características sísmicas de comum aplicação em Portugal como se apresenta no capítulo III. No capítulo IV analisam-se os resultados obtidos, levando a que no capítulo V se descreva uma proposta de aplicação de alvenaria confinada em zonas de baixa sismicidade e alta sismicidade em Portugal. Finalmente no capítulo VI os resultados obtidos levam a concluir que em zonas de baixa sismicidade o dimensionamento de densidade de paredes é dependente das cargas gravíticas para edifícios de 1 e 2 níveis. No caso de zonas de alta sismicidade são as forças sísmicas as condicionantes. Ainda para edifícios de 2 níveis nestas zonas,a espessura mínima das paredes é de 0,20 m.

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This study wants to analyze the effectiveness of different reinforcement typologies for masonry columns, in particular Fiber-Reinforced Polymer (FRP) and FRCM. The behavior of 10 solid – brick columns that are externally wrapped by FRP sheets and 2 unreinforced columns are presented in this study. The specimens are subjected to axial load until failure occurs. Three different confinement schemes were experimentally analyzed in order to evaluate and compare the effectiveness of the proposed strengthening techniques: 1) Grid carbon FRP (CFRP_G); 2) Grid glass FRP (GFRP_G); 3) Uniaxial carbon FRP (CFRP_U). Two different configurations of the reinforcing system were investigated: FRP sheets are applied as external reinforcement along the perimeter of the masonry columns in the form of continuous and discontinuous wrap, respectively. The results, compared with those for un-reinforced columns, indicate an increases in ultimate load, stiffness and ductility.

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The prime aim of this PhD thesis is to contribute to the current body of knowledge on the out-of-plane performance of masonry walls through systematic investigation of the key parameters and provide insight into the design clauses of Australian Masonry Standard (AS3700-2011). The research work has been carried out through numerical simulation based on a 3D layered shell element model. The model demonstrated capability to simulate various forms of new and existing masonry systems commonly constructed in Australia such as unreinforced, internally and externally reinforced, confined and dry-stack masonry. In addition, the model simultaneously simulates in-plane and out-of-plane responses.