972 resultados para Radial Modulus


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Neste trabalho, é feito o estudo dos caracteres anatômicos de 1 (uma) espécie do gênero Anlsophylleae de 2 (duas) espécies do gênero Polygonanthus(Rhizophoraceae) e para cada espécie são apresentadas: características gerais, descrição macro e microscópía, macro e microfotografias dos cortes transversal, tangencial e radial, histogramas da variação de freqüência de fibras e elementos vasculares, um quadro slinóptico com as principais características de cada espécie e uma ficha biométrlca dos elementos anatômicos, para cada espécie. As espécies estudadas foram: Anlisophylea manausensisPires & Rodrigues, Polygonanthus amazonicusDucke e P. punctulatusKuhlmann.

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The use of wastes and industrial by-products as building materials is an important issue in order to decrease costs with waste management and the embodied energy of building products. In this study scrap tire rubber was used as additional aggregate of mortars based on natural hydraulic lime NHL 3.5 and natural sand. Different particle size fractions and proportions of scrap tire rubber were used: a mix obtained directly from industry and separated fine, medium and coarse fractions; 0 %, 18 %, 36 % and 54 % of the weight of binder, corresponding to 2.5 %, 5 % and 7.5 % of the weight of sand. As mortars based on NHL specifications became stricter with the current version of EN 459–1:2015, the influence of the rubber’s additions on the mortars’ fresh state, mechanical and physical performance is presented in this work: flow table consistency, water retention, dynamic elasticity modulus, flexural and compressive strength, open porosity and bulk density, capillary absorption, drying and thermal conductivity are studied. The use of the rubber mix coming from the waste tire industry seems advantageous and may open possibilities for use as raw material by the mortars industry.

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Árvores de Saccoglotis guianensis Benth e Andira parviflora Ducke com aproximadamente 26 metros de altura foram seccionadas em sete partes para estudo das dimensões de fibras e dos elementos de vasos. No sentido radial ambas espécies mostraram um aumento no comprimento de fibras com algumas irregularidades da medula para o câmbio bem como fibras mais curtas no topo do tronco. Neste existe um maior número de vasos por milímetro quadrado. É discutido a influência de reguladores de crescimento no número de elementos de vasos. Existe uma diminuição no comprimento das fibras e elementos de vasos em direção ao topo depois de terem alcançado valores máximos numa determinada altura, e um decrescimo irregular na largura desses elementos da base para o topo das árvores. No sentido radial ambas espécies mostraram um pequeno aumento na largura das fibras e elementos de vasos. Estes e as fibras são menores nos galhos, e onde o número de elementos de vasos é maior para as duas espécies. A razão W/C utilizada como uma estimativa da razão do volume da parede celular para o volume da celula diminui da medula em direção ao câmbio. São apresentados 10 gráficos e uma tabela é discutido os fatores que podem influenciar na variação dos elementos ao longo da árvore.

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São descritos aspectos morfológicos e estruturais dos frutos e sementes, em desenvolvimento, de Platonia insignis(Clusiaceae), visando principalmente esclarecer a origem da camada comestível presente no fruto. Concluiu-se que a camada carnosa branco-amarelada, que envolve as sementes, é de origem endocárpica e começa a se diferenciar já nos estádios iniciais do desenvolvimento do fruto, através de um acentuado alongamento radial das camadas mais internas do endocarpo. Estas, juntamente com as células dos septos, que também se alongam à medida que o fruto se desenvolve, vão se aderindo à testa por meio de interdigitações. Posteriormente, no fruto maduro, o endocarpo destaca-se do restante do pericarpo, permanecendo firmemente ligado à semente.

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The assessment of concrete mechanical properties during construction of concrete structures is of paramount importance for many intrinsic operations. However many of the available non-destructive methods for mechanical properties have limitations for use in construction sites. One of such methodologies is EMM-ARM, which is a variant of classic resonant frequency methods. This paper aims to demonstrate the efforts towards in-situ applicability of EMMARM, as to provide real-time information about concrete mechanical properties such as E-modulus and compressive strength. To achieve the aforementioned objective, a set of adaptations to the method have been successfully implemented and tested: (i) the reduction of the beam span; (ii) the use of a different mould material and (iii) a new support system for the beams. Based on these adaptations, a reusable mould was designed to enable easier systematic use of EMMARM. A pilot test was successfully performed under in-situ conditions during a bridge construction.

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The present work aimed to assess the early-age evolution of E-modulus of epoxy adhesives used for Fibre-Reinforced Polymer (FRP) strengthening applications. The study involved adapting an existing technique devised for continuous monitoring of concrete stiffness since casting, called EMM-ARM (Elasticity Modulus Measurement through Ambient Response Method) for evaluation of epoxy stiffness. Furthermore, monotonic tensile tests according to ISO standards and cyclic tensile tests were carried out at several ages. A comparison between the obtained results was performed in order to better understand the performance of the several techniques in the assessment of stiffness of epoxy resins. When compared to the other methodologies, the method for calculation of E-modulus recommended by ISO standard led to lower values, since in the considered strain interval, the adhesive had a non-linear stress–strain relationship. The EMM-ARM technique revealed its capability in clearly identifying the hardening kinetics of epoxy adhesives, measuring the material stiffness growth during the entire curing period. At very early ages the values of Young׳s modulus obtained with quasi-static tests were lower than the values collected by EMM-ARM, due to the fact that epoxy resin exhibited a significant visco-elastic behaviour.

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In this research, five types of polymer repair materials were selected for investigation of the influence of sample shape, deformation rate and test temperature on the mechanical properties determined with an uniaxial tensile test. The results showed the clear effect of measurement conditions on tensile strength, elongation and modulus of elasticity. The highest tensile strength and modulus of elasticity were exhibited by epoxy resin for the filling of concrete cracks, which achieved 1% elongation. The lowest coefficient of dispersion characterized the results of tensile test carried out using dumbbell samples at a deformation rate of 50 mm/min. The effect of temperature varied with the material type.

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This paper presents a methodology based on the Bayesian data fusion techniques applied to non-destructive and destructive tests for the structural assessment of historical constructions. The aim of the methodology is to reduce the uncertainties of the parameter estimation. The Young's modulus of granite stones was chosen as an example for the present paper. The methodology considers several levels of uncertainty since the parameters of interest are considered random variables with random moments. A new concept of Trust Factor was introduced to affect the uncertainty related to each test results, translated by their standard deviation, depending on the higher or lower reliability of each test to predict a certain parameter.

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The reuse of recycled concrete aggregates in new hot-mix asphalt can be a more sustainable method of production, but these mixtures may need a heat treatment before compaction to improve their water sensitivity performance. A direct consequence of this treatment is an increase in the hot-mix asphalt resilient modulus. The aim of this paper is to analyse the effect of ageing on the stiffness of asphalt mixtures with different amounts of recycled concrete aggregates, before and after a heat treatment, which was analysed through the assessment of its bitumen properties. Moreover, this paper also aims to analyse whether the rolling thin-film oven test is able to simulate the ageing effect of the heat treatment. In the laboratory work, a paving grade bitumen B50/70 has been used to produce asphalt mixtures with 0% and 30% recycled concrete aggregates, and the bitumen was later characterised (using penetration, softening point, dynamic viscosity and dynamic shear rheometer tests) in various situations, such as when using virgin bitumen, short-term aged bitumen, aged bitumen after heat treatment (simulated with 4 h of rolling thin-film oven test) and bitumen samples recovered from asphalt mixtures with different production mixes (0% and 30% recycled concrete aggregate) and heat treatment conditions (0 and 4 h of curing time in the oven). Based on the results obtained, it could be concluded that the ageing resulting from the heat treatment is the primary cause of the hot-mix asphalt's increased stiffness, while recycled concrete aggregate content has a small influence. Moreover, it could be concluded that when there is no curing time, the recycled concrete aggregate protects the bitumen against ageing. Additionally, it could be stated that the rolling thin-film test is able to adequately simulate the ageing effect of the heat treatment. Thus, this test is useful for determining the ageing suffered by the bitumen when the recycled concrete aggregate mixture is manufactured using a heat treatment.

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The main objective of this work is to evaluate, by non-destructive techniques, seven old Chestnut beams. For that, after the geometric assessment and the detailed visual inspection that allowed to strength grade the beams, a series of non-destructive tests was setup. In a first step, non-destructive bending tests, under the elastic limit, were performed to quantify the modulus of elasticity in bending (MoE) of the seven beams. Then, Resistograph® and Pilodyn® tests were done to assess the superficial decay and to have aclearer idea of the voids dimensions. Then, two beams were tested in bending until failure to evaluate the bending strength. In a second step, end parts were cut from the beams, one per end of the beams, to perform Resistograph®, Pilodyn® and ultrasound tests, to quantify the density of the beams and to extract meso-specimens to be used in tension parallel to the grain tests

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This study presents an experimental program to assess the tensile strain distribution along prestressed carbon fiber reinforced polymer (CFRP) reinforcement flexurally applied on the tensile surface of RC beams according to near surface mounted (NSM) technique. Moreover, the current study aims to propose an analytical formulation, with a design framework, for the prediction of distribution of CFRP tensile strain and bond shear stress and, additionally, the prestress transfer length. After demonstration the good predictive performance of the proposed analytical approach, parametric studies were carried out to analytically evaluate the influence of the main material properties, and CFRP and groove cross section on the distribution of the CFRP tensile strain and bond shear stress, and on the prestress transfer length. The proposed analytical approach can also predict the evolution of the prestress transfer length during the curing time of the adhesive by considering the variation of its elasticity modulus during this period.

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Existing masonry structures are usually associated to a high seismic vulnerability, mainly due to the properties of the materials, weak connections between floors and load-bearing walls, high mass of the masonry walls and flexibility of the floors. For these reasons, the seismic performance of existing masonry structures has received much attention in the last decades. This study presents the parametric analysis taking into account the deviations on features of the gaioleiro buildings - Portuguese building typology. The main objective of the parametric analysis is to compare the seismic performance of the structure as a function of the variations of its properties with respect to the response of a reference model. The parametric analysis was carried out for two types of structural analysis, namely for the non-linear dynamic analysis with time integration and for the pushover analysis with distribution of forces proportional to the inertial forces of the structure. The Young's modulus of the masonry walls, Young's modulus of the timber floors, the compressive and tensile non-linear properties (strength and fracture energy) were the properties considered in both type of analysis. Additionally, in the dynamic analysis, the influences of the vis-cous damping and of the vertical component of the earthquake were evaluated. A pushover analysis proportional to the modal displacement of the first mode in each direction was also carried out. The results shows that the Young's modulus of the masonry walls, the Young's modulus of the timber floors and the compressive non-linear properties are the pa-rameters that most influence the seismic performance of this type of tall and weak existing masonry structures. Furthermore, it is concluded that that the stiffness of the floors influences significantly the strength capacity and the collapse mecha-nism of the numerical model. Thus, a study on the strengthening of the floors was also carried out. The increase of the thickness of the timber floors was the strengthening technique that presented the best seismic performance, in which the reduction of the out-of-plane displacements of the masonry walls is highlighted.

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Hand gesture recognition for human computer interaction, being a natural way of human computer interaction, is an area of active research in computer vision and machine learning. This is an area with many different possible applications, giving users a simpler and more natural way to communicate with robots/systems interfaces, without the need for extra devices. So, the primary goal of gesture recognition research is to create systems, which can identify specific human gestures and use them to convey information or for device control. For that, vision-based hand gesture interfaces require fast and extremely robust hand detection, and gesture recognition in real time. In this study we try to identify hand features that, isolated, respond better in various situations in human-computer interaction. The extracted features are used to train a set of classifiers with the help of RapidMiner in order to find the best learner. A dataset with our own gesture vocabulary consisted of 10 gestures, recorded from 20 users was created for later processing. Experimental results show that the radial signature and the centroid distance are the features that when used separately obtain better results, with an accuracy of 91% and 90,1% respectively obtained with a Neural Network classifier. These to methods have also the advantage of being simple in terms of computational complexity, which make them good candidates for real-time hand gesture recognition.

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Determinou-se a prevalência de anticorpos séricos anti-Vírus da Leucose dos Bovinos (anti-VLB) em 661 amostras de soro sangüíneo, colhidas em 16 rebanhos leiteiros criados em quatro municípios da Microrregião de Manaus, no Estado do Amazonas (Manaus, Iranduba, Autazes e Careiro da Várzea). Para detecção de anticorpos anti-VLB utilizou-se o teste de Imunodifusão Radial Dupla de Ouchterlony em gel de ágar, com uso do antígeno glicoprotéico (gp-51) da cápsula do vírus. Os resultados demonstraram a ocorrência da Leucose Enzoótica dos Bovinos nos rebanhos estudados, sendo a taxa de prevalência de anticorpos séricos anti-VLB na população examinada igual a 8,9% (59/661), com a exclusão dos animais com menos de seis meses de idade, nos quais a sororeação positiva poderia representar transferência passiva de anticorpos colostrais, verificou-se uma taxa de prevalência da infecção igual a 9,6% (58/604). Os animais avaliados, foram estratificados em grupos de acordo com a faixa etária e sexo. A análise dos resultados obtidos, pelo teste de duas proporções, permitiu concluir que a prevalência de bovinos portadores de anticorpos anti-VLB foi significativamente maior nos animais com mais de 12 meses de idade, não havendo diferenças significativas nos resultados obtidos entre machos e fêmeas.

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Foram estudadas as características anatômicas da madeira de 7 espécies ocorrentes na floresta Amazônia com vistas a geração de energia ou produção de papel. Para qualificação de madeira para produção de papel consideraram-se, dentre outros parâmetros, o coeficiente de rigidez e de flexibilidade, densidade, índice de Runkel, percentual de fibras, vasos, parênquima axial e de raios. Para produção de energia determinaram-se a densidade, a fração parede (%) das células em relação a área ocupada por cada tipo de células, percentual de fibras, de vasos e de parênquima axial e radial. O estudo foi baseado em 3 áreas de seções transversais, orientadas do centro em direção ao alburno. Com base nas características anatômicas e na densidade, Bellucia grossularioides, Cecropia palmata, Duguetia cauliflora, Eschweilera matamata e Parkia multuijuga podem ser usadas para polpa destinada a produção de papel, e Myrocarpus frondosus, Sloaneagrandis podem ser usadas na produção de carvão.