854 resultados para Designación general de material


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In this paper, a finite element analysis of steady-state dynamic crack growth under Mode I, plane strain, small-scale yielding conditions is performed in a rate dependent plastic material characterized by the over-stress model. The main objective of the paper is to obtain theoretically the dependence of dynamic fracture toughness on crack speed. Crack propagation due to a ductile (micro-void) mechanism or a brittle (cleavage) mechanism, as well as transition from one mode to another are considered. The conversion from ductile to brittle has been observed experimentally but has received very little attention using analytical methods. Local fracture criteria based on strains and stresses are used to describe ductile and brittle fracture mechanisms. The results obtained in this paper are in general agreement with micro-structural observations of mode conversion during fracture initiation. Finally, the particular roles played by material rate sensitivity and inertia are examined in some detail.

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Background: Social and material deprivation is associated with poor health, decreased subjective well-being, and limited opportunities for personal development. To date, little is known about the lived experiences of Finnish low-income youths and the general purpose of this study is to fill this gap. Despite the extensive research on socioeconomic income disparities, only a few scholars have addressed the question of how low socioeconomic position is experienced by disadvantaged people themselves. Little is known about the everyday social processes that lead to decreased well-being of economically and socially disadvantaged citizens. Data: The study is based on the data of 65 autobiographical essays written by Finnish low-income youths aged 14-29 (M=23.51, SD=3.95). The research data were originally collected in a Finnish nationwide writing contest “Arkipäivän kokemuksia köyhyydestä” [Everyday Experiences of Poverty] between June and September of 2006. The contest was partaken by 850 Finnish writers. Methods and key concepts: Autobiographical narratives (N=65) of low-income youths were analyzed based on grounded theory methodology (GTM). The analysis was not built on specific pre-conceived categorizations; it was guided by the paradigm model and so-called “sensitizing concepts”. The concepts this study utilized were based on the research literature on socioeconomic inequalities, resilience, and coping. Socioeconomic inequalities refer to unequal distribution of resources, such as income, social status, and health, between social groups. The concept of resilience refers to an individual’s capacity to cope despite existing risk factors and conditions that are harmful to health and well-being. Coping strategies can be understood as ways by which a person tries to cope with psychological stress in a situation where internal or externals demands exceed one’s resources. The ways to cope are cognitive or behavioral efforts by which individual tries to relieve the stress and gain new resources. Lack of material and social resources is associated with increased exposure to health-related stressors during the life-course. Aims: The first aim of this study is to illustrate how youths with low socioeconomic status perceive the causes and consequences of their social and material deprivation. The second aim is to describe what kind of coping strategies youths employ to cope in their everyday life. The third aim is to build an integrative conceptual framework based on the relationships between causes, consequences, and individual coping strategies associated with deprivation. The analysis was carried out through systematic coding and orderly treatment of the data based on the grounded theory methodology. Results: Finnish low-income youths attributed the primary causes of deprivation to their family background, current socioeconomic status, sudden life changes, and contextual factors. Material and social deprivation was associated with various kinds of negative psychological, social, and material consequences. Youths used a variety of coping strategies that were identified as psychological, social, material, and functional-behavioral. Finally, a conceptual framework was formulated to link the findings together. In the discussion, the results were compared and contrasted to the existing research literature. The main references of the study were: Coping: Aldwin (2007); Lazarus & Folkman (1984); Hobfoll (1989, 2001, 2002). Deprivation: Larivaara, Isola, & Mikkonen (2007); Lister (2004); Townsend (1987); Raphael (2007). Health inequalities: Dahlgren & Whitehead (2007); Lynch. et al. (2000); Marmot & Wilkinson (2006); WHO (2008). Methods: Charmaz (2006); Flick (2009); Strauss & Corbin (1990). Resilience: Cutuli & Masten (2009); Luthar (2006).

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The velocity distribution for a vibrated granular material is determined in the dilute limit where the frequency of particle collisions with the vibrating surface is large compared to the frequency of binary collisions. The particle motion is driven by the source of energy due to particle collisions with the vibrating surface, and two dissipation mechanisms-inelastic collisions and air drag-are considered. In the latter case, a general form for the drag force is assumed. First, the distribution function for the vertical velocity for a single particle colliding with a vibrating surface is determined in the limit where the dissipation during a collision due to inelasticity or between successive collisions due to drag is small compared to the energy of a particle. In addition, two types of amplitude functions for the velocity of the surface, symmetric and asymmetric about zero velocity, are considered. In all cases, differential equations for the distribution of velocities at the vibrating surface are obtained using a flux balance condition in velocity space, and these are solved to determine the distribution function. It is found that the distribution function is a Gaussian distribution when the dissipation is due to inelastic collisions and the amplitude function is symmetric, and the mean square velocity scales as [[U-2](s)/(1 - e(2))], where [U-2](s) is the mean square velocity of the vibrating surface and e is the coefficient of restitution. The distribution function is very different from a Gaussian when the dissipation is due to air drag and the amplitude function is symmetric, and the mean square velocity scales as ([U-2](s)g/mu(m))(1/(m+2)) when the acceleration due to the fluid drag is -mu(m)u(y)\u(y)\(m-1), where g is the acceleration due to gravity. For an asymmetric amplitude function, the distribution function at the vibrating surface is found to be sharply peaked around [+/-2[U](s)/(1-e)] when the dissipation is due to inelastic collisions, and around +/-[(m +2)[U](s)g/mu(m)](1/(m+1)) when the dissipation is due to fluid drag, where [U](s) is the mean velocity of the surface. The distribution functions are compared with numerical simulations of a particle colliding with a vibrating surface, and excellent agreement is found with no adjustable parameters. The distribution function for a two-dimensional vibrated granular material that includes the first effect of binary collisions is determined for the system with dissipation due to inelastic collisions and the amplitude function for the velocity of the vibrating surface is symmetric in the limit delta(I)=(2nr)/(1 - e)much less than 1. Here, n is the number of particles per unit width and r is the particle radius. In this Limit, an asymptotic analysis is used about the Limit where there are no binary collisions. It is found that the distribution function has a power-law divergence proportional to \u(x)\((c delta l-1)) in the limit u(x)-->0, where u(x) is the horizontal velocity. The constant c and the moments of the distribution function are evaluated from the conservation equation in velocity space. It is found that the mean square velocity in the horizontal direction scales as O(delta(I)T), and the nontrivial third moments of the velocity distribution scale as O(delta(I)epsilon(I)T(3/2)) where epsilon(I) = (1 - e)(1/2). Here, T = [2[U2](s)/(1 - e)] is the mean square velocity of the particles.

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In this work, we explore simultaneous design and material selection by posing it as an optimization problem. The underlying principles for our approach are Ashby's material selection procedure and structural optimization. For the simplicity and ease of initial implementation of the general procedure, truss structures under static load are considered in this work in view of maximum stiffness, minimum weight/cost and safety against failure. Along the lines of Ashby's material indices, a new design index is derived for trusses. This helps in choosing the most suitable material for any design of a truss. Using this, both the design space and material database are searched simultaneously using optimization algorithms. The important feature of our approach is that the formulated optimization problem is continuous even though the material selection is an inherently discrete problem.

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Solder joints in electronic packages undergo thermo-mechanical cycling, resulting in nucleation of micro-cracks, especially at the solder/bond-pad interface, which may lead to fracture of the joints. The fracture toughness of a solder joint depends on material properties, process conditions and service history, as well as strain rate and mode-mixity. This paper reports on a methodology for determining the mixed-mode fracture toughness of solder joints with an interfacial starter-crack, using a modified compact mixed mode (CMM) specimen containing an adhesive joint. Expressions for stress intensity factor (K) and strain energy release rate (G) are developed, using a combination of experiments and finite element (FE) analysis. In this methodology, crack length dependent geometry factors to convert for the modified CMM sample are first obtained via the crack-tip opening displacement (CTOD)-based linear extrapolation method to calculate the under far-field mode I and II conditions (f(1a) and f(2a)), (ii) generation of a master-plot to determine a(c), and (iii) computation of K and G to analyze the fracture behavior of joints. The developed methodology was verified using J-integral calculations, and was also used to calculate experimental fracture toughness values of a few lead-free solder-Cu joints. (C) 2014 Elsevier Ltd. All rights reserved.

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The kinematic flow pattern in slow deformation of a model dense granular medium is studied at high resolution using in situ imaging, coupled with particle tracking. The deformation configuration is indentation by a flat punch under macroscopic plane-strain conditions. Using a general analysis method, velocity gradients and deformation fields are obtained from the disordered grain arrangement, enabling flow characteristics to be quantified. The key observations are the formation of a stagnation zone, as in dilute granular flow past obstacles; occurrence of vortices in the flow immediately underneath the punch; and formation of distinct shear bands adjoining the stagnation zone. The transient and steady state stagnation zone geometry, as well as the strength of the vortices and strain rates in the shear bands, are obtained from the experimental data. All of these results are well-reproduced in exact-scale non-smooth contact dynamics simulations. Full 3D numerical particle positions from the simulations allow extraction of flow features that are extremely difficult to obtain from experiments. Three examples of these, namely material free surface evolution, deformation of a grain column below the punch and resolution of velocities inside the primary shear band, are highlighted. The variety of flow features observed in this model problem also illustrates the difficulty involved in formulating a complete micromechanical analytical description of the deformation.

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The scattering of general SH plane wave by an interface crack between two dissimilar viscoelastic bodies is studied and the dynamic stress,intensity factor at the crack-tip is computed. The scattering problem can be decomposed into two problems: one is the reflection and refraction problem of general SH plane waves at perfect interface (with no crack); another is the scattering problem due to the existence of crack. For the first problem, the viscoelastic wave equation, displacement and stress continuity conditions across the interface are used to obtain the shear stress distribution at the interface. For the second problem, the integral transformation method is used to reduce the scattering problem into dual integral equations. Then, the dual integral equations are transformed into the Cauchy singular integral equation of first kind by introduction of the crack dislocation density function. Finally, the singular integral equation is solved by Kurtz's piecewise continuous function method. As a consequence, the crack opening displacement and dynamic stress intensity factor are obtained. At the end of the paper, a numerical example is given. The effects of incident angle, incident frequency and viscoelastic material parameters are analyzed. It is found that there is a frequency region for viscoelastic material within which the viscoelastic effects cannot be ignored.

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Integran este número de la revista ponencias presentadas en Studia Hispanica Medievalia VIII : Actas de las X Jornadas Internacionales de Literatura Española Medieval, 2011, y de Homenaje al Quinto Centenario del Cancionero General de Hernando del Castillo.

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Florian de Ocampo, religioso e escritor espanhol, nasceu em Zamora entre os anos de 1490 e 1499 e morreu na mesma cidade, entre 1555 e 1559. Foi no meado cronista-real, em 1539, cargo que lhe permitiu reunir o material e dar continuidade à obra ‘Coronica general de Espana’ que já havia iniciado por conta própria. Continuada por Ambrósio de Morales a partir do volume três desta coleção, o titulo da obra é alterado nos volumes nove e dez para ‘Livro de las antiguedades de las ciudades de Espana’. Ambrósio de Morales, historiador espanhol nasceu em 1513 e morreu em 1591, na cidade de Córdoba. Estudou na Universidade de Alcalá, onde lecionou Retórica, manifestando aí seu interesse pelos estudos históricos. Foi nomeado, em 1563, cronista-mor dando continuidade à obra Coronica general de Espana, publicando em 1574 o seu primeiro volume. Na obra ‘Coronica General de Espana’, Ocampo se propunha a narrar com certa unidade a história da Espanha. Planejada em oitenta volumes, foram publicados apenas cinco: quatro em Zamora, em 1543 e um em Medina, em 1553. Nesta edição os dois primeiros volumes foram reunidos. Palau considera-a uma obra fabulosa sobre as origens dos espanhóis e da Espanha. Segundo Brunet, esta obra teve algumas reimpressões com notáveis adições em Medina dei Campo, em 1553, em Alcalá, em 1578, e em Madri no período de 1791 e 1792, em dez volumes.

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Material de apoyo de la asignatura “Introducción a la contabilidad”. Nivel educativo: Grado.

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Micro-scale abrasion (ball cratering) tests were performed with different combinations of ball and bulk specimen materials, under different test conditions, such as load and abrasive slurry concentration. Wear modes were classified into two types: with rolling particle motion and with grooving particle motion. Wear rates observed with rolling particle motion were relatively insensitive to test conditions, whereas with grooving motion they varied much more. It is suggested that rolling abrasion is therefore a more appropriate mode if reproducible test results are desired. The motion of the abrasive particles can be reliably predicted from the knowledge of hardnesses and elastic properties of the ball and the specimen, and from the normal load and the abrasive slurry concentration. General trends in wear resistance measured in the micro-scale abrasion test with rolling particle motion are similar to those reported in tests with fixed abrasives with sliding particle motion, although the variation in wear resistance with hardness is significantly smaller. © 2004 Published by Elsevier B.V.

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O objeto do presente estudo trata das repercussões do trabalho na Central de Material e Esterilização (CME) para o processo saúde-doença dos trabalhadores de enfermagem, na perspectiva desse coletivo profissional. Através de conversas informais com os profissionais da CME e de minhas observações, identifiquei que os trabalhadores de enfermagem queixavam-se das sobrecargas física e mental, da inadequação dos recursos materiais, além do estresse advindo das exigências do posto de trabalho. Considerando a natureza do objeto de estudo e as questões norteadoras, pretende-se, como objetivo geral: discutir a situação de saúde dos trabalhadores de enfermagem em uma CME de um Hospital Geral, correlacionando com a organização do trabalho e processo laboral desses trabalhadores. Os objetivos específicos foram: descrever a organização e o processo de trabalho dos trabalhadores de enfermagem da CME de um Hospital Geral; analisar a configuração da organização e do processo de trabalho na CME, na perspectiva de interferência no processo saúde-doençados trabalhadores de enfermagem; e propor estratégias para melhorar a saúde e a segurança dos trabalhadores de enfermagem da CME. Para a realização desta pesquisa, optou-se pela abordagem qualitativa, de caráter descritivo e exploratório. O cenário do estudo foi CME de um hospital geral, de grande porte, do serviço público, situado no município do Rio de Janeiro. Os sujeitos foram 34 trabalhadores de enfermagem (vinte e cinco técnicos de enfermagem e nove enfermeiras). Utilizou-se a entrevista do tipo semiestruturada, associada à observação não participante no setor, sendo os dados obtidos nos meses de março a maio de 2013.Para o tratamento e a análise dos dados coletados recorreu-se à análise temática de conteúdo.O estudo foi aprovado pelo Comitê de Ética em Pesquisa da Instituição e protocoladocom o n 081.3.2012. Na primeira categoria evidenciou-se que, em função de uma obra iniciada há cerca de dois anos, houve prejuízos para a condução do processo de trabalho nesta unidade, gerando improvisações na estrutura organizacional e no modo operatório do processo laboral. Outrasquestõesrelatadas foram a insuficiência de recursos materiais, a precariedade dos vínculos de trabalho e a escassez de recursos humanos.Na segunda categoria constatou-se queos trabalhadores salientaram a sobrecarga físicadecorrente da forma como está configurado a organização e o processo laboral, destacando-se a repetitividade das tarefas. Na terceira categoria, os sujeitos relataram que a CME é um excelente cenário para aprendizado, que sentem orgulho em trabalhar em um local imprescindível para a instituição, porém destacaram que sofrem por não terem o reconhecimento desejado. Por fim, na quarta categoria, os depoentes propuseram a retomada e a finalização das obras, além da regulamentação dos contratos precários de trabalho e a necessidade da realização de novos concursos públicos. Recomenda-se que se ampliem os espaços de discussão sobre Saúde do Trabalhador e sobre CME na formação de enfermagem, buscando-se a participação efetiva dos trabalhadores nas lutas políticas que envolvem a classe e a área da saúde, destacando-se a conquista por condições dignas de trabalho.

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A two-step viscoelastic spherical indentation method is proposed to compensate for 1) material relaxation and 2) sample thickness. In the first step, the indenter is moved at a constant speed and the reaction force is measured. In the second step, the indenter is held at a constant position and the relaxation response of the material is measured. Then the relaxation response is fit with a multi-exponential function which corresponds to a three-branch general Maxwell model. The relaxation modulus is derived by correcting the finite ramp time introduced in the first step. The proposed model takes into account the sample thickness, which is important for applications in which the sample thickness is less than ten times the indenter radius. The model is validated numerically by finite element simulations. Experiments are carried out on a 10% gelatin phantom and a chicken breast sample with the proposed method. The results for both the gelatin phantom and the chicken breast sample agree with the results obtained from a surface wave method. Both the finite element simulations and experimental results show improved elasticity estimations by incorporating the sample thickness into the model. The measured shear elasticities of the 10% gelatin sample are 6.79 and 6.93 kPa by the proposed finite indentation method at sample thickness of 40 and 20 mm, respectively. The elasticity of the same sample is estimated to be 6.53 kPa by the surface wave method. For the chicken breast sample, the shear elasticity is measured to be 4.51 and 5.17 kPa by the proposed indentation method at sample thickness of 40 and 20 mm, respectively. Its elasticity is measured by the surface wave method to be 4.14 kPa. © 2011 IEEE.

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An analysis is given of velocity and pressure-dependent sliding flow of a thin layer of damp granular material in a spinning cone. Integral momentum equations for steady state, axisymmetric flow are derived using a boundary layer approximation. These reduce to two coupled first-order differential equations for the radial and circumferential sliding velocities. The influence of viscosity and friction coefficients and inlet boundary conditions is explored by presentation of a range of numerical results. In the absence of any interfacial shear traction the flow would, with increasing radial and circumferential slip, follow a trajectory from inlet according to conservation of angular momentum and kinetic energy. Increasing viscosity or friction reduces circumferential slip and, in general, increases the residence time of a particle in the cone. The residence time is practically insensitive to the inlet velocity. However, if the cone angle is very close to the friction angle then the residence time is extremely sensitive to the relative magnitude of these angles. © 2011 Authors.

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El establecimiento de un sistema silvopastoril (SSP) en plantaciones de álamo (Populus deltoides `Australiano 106/60´) requiere de nuevas estrategias de manejo. En este contexto, la combinación del tipo de material de multiplicación utilizado y su palatabilidad pueden resultar determinantes del éxito de la instalación del sistema. El objetivo general del estudio fue generar una nueva tecnología para la instalación de un SSP con álamos orientado a la producción de madera para múltiples destinos. El primer objetivo consistió en evaluar los cambios que se producen en diferentes distancias de plantación sobre la dimensión y características morfológicas de las guías de álamo, materiales de multiplicación potencialmente aptos para instalar un SSP, y el segundo, determinar el efecto del tamaño y/o edad de las guías sobre el crecimiento del componente arbóreo y la sensibilidad al daño de las mismas frente al pastoreo de ganado bovino en un SSP de álamo. Los resultados indican que los mayores distanciamientos ensayados produjeron las mejores guías de uno, dos y tres años de edad, con mayor DAP, altura total, biomasa aérea, rectitud, conicidad y estabilidad del fuste. Se determinó además que es posible acelerar el ingreso del ganado de cría al SSP utilizando guías con un DAP igual ó mayor a los 6 cm, con una respuesta positiva durante los primeros años de plantación. Las hojas y ramitas tiernas de álamo, productos de una poda de primavera, constituyeron por su buena disponibilidad de PB, P y K y su DE un buen complemento de la dieta animal. Se concluye finalmente que, utilizando guías de álamo como material de multiplicación, es posible producir anticipadamente madera de álamo para usos múltiples, pasturas naturales espontáneas y carne vacuna en los SSP del bajo Delta del Río Paraná.