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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
31

Influência da cura térmica a vapor sob pressão atmosférica em características e propriedades de blocos de concreto / Influence of steam cure thermal atmospheric pressure on characteristics and properties of concrete block

Brito, Mário Henrique Gomes 30 April 2013 (has links)
Submitted by Erika Demachki (erikademachki@gmail.com) on 2014-10-23T17:14:40Z No. of bitstreams: 2 Dissertação - Mário Henrique Gomes Brito - 2013.pdf: 6257761 bytes, checksum: 3ff568c727b44a8a7e645c8475216a03 (MD5) license_rdf: 23148 bytes, checksum: 9da0b6dfac957114c6a7714714b86306 (MD5) / Approved for entry into archive by Jaqueline Silva (jtas29@gmail.com) on 2014-10-23T18:50:27Z (GMT) No. of bitstreams: 2 Dissertação - Mário Henrique Gomes Brito - 2013.pdf: 6257761 bytes, checksum: 3ff568c727b44a8a7e645c8475216a03 (MD5) license_rdf: 23148 bytes, checksum: 9da0b6dfac957114c6a7714714b86306 (MD5) / Made available in DSpace on 2014-10-23T18:50:27Z (GMT). No. of bitstreams: 2 Dissertação - Mário Henrique Gomes Brito - 2013.pdf: 6257761 bytes, checksum: 3ff568c727b44a8a7e645c8475216a03 (MD5) license_rdf: 23148 bytes, checksum: 9da0b6dfac957114c6a7714714b86306 (MD5) Previous issue date: 2013-04-30 / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPES / The overall objective of this research, which was essentially experimental, is to study the influence of the isothermal period and the maximum temperature of the thermal cure cycle steam under atmospheric pressure in the development of compressive strength of concrete blocks over time. The influences of two other types of curing are also being investigated; curing by enveloping with plastic sheet and open air curing, considered the last case scenario for reference. This study specifically aimed to further our understanding on how to; a) evaluate and quantify the importance of adopting procedures for curing the average resistance (Fbm) and characteristic (fbk) strength to compression of concrete blocks, comparing the processes of thermal curing and curing by enveloping plastic sheet to open air curing; b) evaluate statistically the aging effect of blocks over its compressive strength; c) evaluate the interaction effects of the variables "type of cure" and "age analysis" of the results of compressive strength of concrete blocks; and d) identify the main changes in the microstructure of the blocks subjected to a thermal curing process, especially observing eventual delayed ettringite formation in the internal structure of the material. To examine the influence of maximum curing temperature, two levels were adopted; 65°C and 85°C. As for analyzing the influence of isothermal period, three levels were adopted; 3 hours, 4 hours and 5 hours. The age analysis was evaluated in five levels; 1, 3, 7, 28 and 91 days. The results showed that the worst condition for curing, or curing type, was the open air curing (curing time approximately equal to 24 hours), which led to a lower overall average result of compressive strength of concrete blocks, proving the importance of adopting procedures of curing to optimize the mechanical performance of concrete blocks. Furthermore, it was also determined that the best curing conditions were the curing with enveloping plastic sheet (curing time approximately equal to 24 hours) and the thermal curing with steam under atmospheric pressure isotherm of 65°C and isothermal period of 3 hours (curing time approximately equals 8.5 hours), which were considered statistically equal. It was also observed that there was no significant influence of the curing in maximum temperature in relation to the compressive strength of the blocks. In the other hand, the isothermal period was very significant; the best condition was 3 hours, while 4 hours and 5 hours were considered statistically equal. Regarding the delayed ettringite formation, it was only verified for thermal curing conditions of isothermal of 85°C and isothermal period of 4 hours and 5 hours. / O objetivo geral desta pesquisa, de caráter essencialmente experimental, é estudar a influência do período isotérmico e da temperatura máxima do ciclo de cura térmica a vapor sob pressão atmosférica no desenvolvimento da resistência à compressão de blocos de concreto ao longo do tempo. Paralelamente, foram investigadas ainda as influências de dois outros tipos de cura, a saber: cura por envelopamento com lona plástica e cura ao ar livre, considerada esta última a situação de referência. De modo específico, o estudo visou ainda: a) avaliar e quantificar a importância da adoção de procedimentos de cura nas resistências média (fbm) e característica (fbk) à compressão de blocos de concreto, comparando os processos de cura térmica e cura por envelopamento com lona plástica com a cura ao ar livre; b) avaliar estatisticamente o efeito da idade dos blocos sobre a sua resistência à compressão; c) avaliar a interação dos efeitos das variáveis “tipo de cura” e “idade de análise” sobre os resultados de resistência à compressão dos blocos de concreto; e d) identificar as principais transformações ocorridas na microestrutura dos blocos submetidos aos processos de cura térmica, em especial observando eventual formação de etringita tardia na estrutura interna do material. Para analisar a influência da temperatura máxima de cura, foram adotados dois níveis: 65°C e 85°C. Já para analisar a influência do período isotérmico, foram adotados três níveis: 3 horas, 4 horas e 5 horas. Por sua vez, a idade de análise foi avaliada em cinco níveis: 1, 3, 7, 28 e 91 dias. Os resultados mostraram que a pior condição de cura, ou seja, o tipo de cura que conduziu ao menor resultado médio global de resistência à compressão dos blocos de concreto, foi a cura ao ar livre (tempo de cura aproximadamente igual a 24 horas), comprovando a importância da adoção de procedimentos de cura para a otimização do desempenho mecânico dos blocos de concreto. Além disso, foi verificado ainda que as melhores condições de cura foram a cura por envelopamento com lona plástica (tempo de cura aproximadamente igual a 24 horas) e a cura térmica a vapor sob pressão atmosférica com isoterma de 65°C e período isotérmico de 3 horas (tempo de cura aproximadamente igual a 8,5 horas), os quais foram considerados, estatisticamente, iguais. Também foi verificado que não houve influência significativa da temperatura máxima de cura em relação à resistência à compressão dos blocos. Já o período isotérmico foi significativo, de modo que a melhor condição foi 3 horas, enquanto 4 horas e 5 horas foram considerados, estatisticamente, iguais. Quanto à formação de etringita tardia, esta só foi verificada para as condições de cura térmica com isoterma de 85°C e períodos isotérmicos de 4 horas e 5 horas.
32

Desempenho estrutural de paredes de alvenaria de blocos de concreto de agregados reciclados de rejeitos de construção e demolição / The structure performance of walls of masonry by concrete blocks of recycled aggregates and building and demolition rejects

Fábio Braga da Fonseca 20 December 2002 (has links)
Os rejeitos de construção e demolição representam, atualmente, grande volume de material desperdiçado no canteiro de obra e fábricas de pré-moldados de concreto. A necessidade da reciclagem para o desenvolvimento auto-sustentável, de materiais produzidos a partir dos rejeitos de construção, é de grande importância sob o impacto ambiental, além de proporcionar economia aos construtores e produtores de artefatos de cimento. Ensaios de concretos e argamassas, utilizando agregado reciclado, resultam bom desempenho mecânico e são relativamente mais leves quando comparados aos respectivos materiais utilizando agregados naturais. A fabricação de blocos de concreto com função estrutural, produzido com agregados reciclados de fração entre 2,4 mm e 9,5 mm, combinada à fração miúda de agregados naturais, possibilitam a execução de edifícios de pequena altura. A utilização da fração miúda reciclada, na preparação de argamassas de assentamento e revestimento, apresenta comportamento eficiente ao conjunto alvenaria-argamassa. A caracterização dos agregados, o estudo de traço, a análise do desempenho físico e mecânico dos blocos, prismas e paredes de alvenaria estrutural, bem como correlações de eficiência e análise da influência da argamassa de assentamento e de revestimento em relação à resistência de aderência à tração, é uma necessidade para o conhecimento e utilização deste material / The building and demolition rejects represent, nowadays, a great amount of wasted material in buildings and plants of pre-molded of concrete. The necessity of recycling for the self-supporting development of materials produced from the building rejects, is of great importance under the enviromental impact, and besides it provides savings for the builers and producers of concrete goods. Tests with concrete and mortar, utilizing recycled aggregate, show a good mechanical performance and they are lighter when compared to the respective materials using natural aggregate. The fabrication of concrete blocks with structural function, produced with recycled aggregate of fraction between 2,4 mm and 9,5 mm, combined to the small fraction of natural aggregate, make possible the construction of low height buildings. The application of the recycled small fraction, in the preparation of foundation and revetment mortar, shows efficient employed with the set masonry-mortar. The aggregate characterization, the study of the proportion of ingredients for concrete, the analysis of the physical and mechanical performance of the blocks, prisms and walls of structural masonry, as well the correlations of efficiency and analysis of the influence of foundation and revetment mortar, relating to the resistence of adherence to traction, are necessities for the knowledge and utilization of this material
33

Bytový dům, Náchod - Tepenská / Residential House, Náchod - Tepenská

Mňuk, Václav January 2014 (has links)
The purpose of the master thesis is the Residential house, Nachod - Tepenska. The building is situated near by the city center of Nachod. It contains 6 floors. In the first floor there are two comercial areas, technical room and parking lot. The roof of parking lot serves as a terace for the second floor. In other floors are situated flats. Whole building is covered by flat roof. The ETICS is applied. The insulation from mineral wool is used. The master thesis includes the blue prints of the building.
34

Hodnocení vlivu stavebních úprav a odlišných dispozic bytů na tržní hodnotu nemovitosti / Assessment of the Impact of Construction Work and Different Layout in Appartments on the Market Value

Gilarová, Veronika January 2018 (has links)
The aim of this dissertation is to find out the effect of alterations on market value of he property, specifically apartments in concrete-block buildings. Evaluation is made chiefly on factors influencing layout. First of all brief information about the subject is given. Secondly market influences are determined for the purpose of eliminating them by differential index and unifying input data. Afterwards, market values of apartments with alternations are compared with ones without alternations from database. At the end of the thesis alternations are calculated and recovery of the costs are detected.
35

Energeticky efektivní řadový rodinný dům / Energy efficient terraced house

Nevrlý, Jaroslav January 2017 (has links)
The main aim of the thesis was to create design documentation, energyefficient terraced house in the village of Moravian Knínice. The proposed building will be located in the vacant space between buildings. Layout of the building is limited by the size of building lots located in hillside surrounding buildings, and orientation to the cardinal. The thesis deals with the layout, building and construction, buildings, so that it effectively uses renewable energy and efficiently work with them.
36

Seismic Retrofit of Load Bearing URM Walls with Internally Placed Reinforcement and Surface-Bonded FRP Sheets

Sabri, Amirreza 22 June 2020 (has links)
Concrete block masonry is a common building material used worldwide, including Canada. Reinforced masonry buildings, designed according to the requirements of recent building codes, may result in seismically safe structures. However, unreinforced masonry (URM) buildings designed and constructed prior to the development of modern seismic design codes are extremely vulnerable to seismic induced damage. Replacement of older seismically deficient buildings with new and seismically designed structures is economically not feasible in most cases. Therefore, seismic retrofitting of deficient buildings remains to be a viable seismic risk mitigation strategy. Masonry load bearing walls are the most important elements of such buildings, potentially serving as lateral force resisting systems. A seismic retrofit research program is currently underway at the University of Ottawa, consisting of experimental and analytical components for developing new seismic retrofit systems for unreinforced masonry walls. The research project presented in this thesis forms part of the same overall research program. The experimental component includes design, construction, retrofit and testing of large-scale load bearing masonry walls. Two approaches were developed as retrofit methodologies, both involving reinforcing the walls for strength and deformability. The first approach involves the use of ordinary deformed steel reinforcement as internally added reinforcement to attain reinforced masonry behaviour. The second approach involves the use of internally placed post-tensioning tendons to attain prestressed masonry behaviour. The analytical component of research consists of constructing a Finite Element computer model for nonlinear analysis of walls and conducting a parametric study to assess the significance of retrofit design parameters. The results have led to the development of a conceptual retrofit design framework for the new techniques developed, while utilizing the seismic provisions of the National Building Code of Canada and the relevant CSA material standards.

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