981 resultados para Materials de dret civil


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An asymptotic analysis for a crack lying on the interface of a damaged plastic material and a linear elastic material is presented in this paper. The present results show that the stress distributions along the crack tip are quite similar to those with HRR singularity field and the crack faces open obviously. Material constants n, mu and mo are varied to examine their effects on the resulting stress distributions and displacement distributions in the damaged plastic region. It is found that the stress components sigma(rr), sigma(theta theta), sigma(r theta) and sigma(e) are slightly affected by the changes of material constants n, mu and m(0), but the damaged plastic region are greatly disturbed by these material parameters.

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The anisotropic nature of fibre reinforced composites leads to large stress concentrations around pin-loaded holes through standard weave cloths. Proper understanding of how this anisotropic nature affects the load distribution around holes can be utilised to reduce these con-centrations if sufficient thought is given to the internal fibre geometry near to the hole. Such local reinforcements need not be highly complex and can be readily produced without excessive effort, producing significant improvements in performance. © 1996 Kluwer Academic Publishers.

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Cell-implant adhesive strength is important for prostheses. In this paper, an investigation is described into the adhesion of bovine chondrocytes to Ti6Al4V-based substrates with different surface roughnesses and compositions. Cells were cultured for 2 or 5 days, to promote adhesion. The ease of cell removal was characterised, using both biochemical (trypsin) and mechanical (accelerated buoyancy and liquid flow) methods. Computational fluid dynamics (CFD) modelling has been used to estimate the shear forces applied to the cells by the liquid flow. A comparison is presented between the ease of cell detachment indicated using these methods, for the three surfaces investigated. © 2008 Materials Research Society.

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A brief analysis is presented of how heat transfer takes place in porous materials of various types. The emphasis is on materials able to withstand extremes of temperature, gas pressure, irradiation, etc., i.e. metals and ceramics, rather than polymers. A primary aim is commonly to maximize either the thermal resistance (i.e. provide insulation) or the rate of thermal equilibration between the material and a fluid passing through it (i.e. to facilitate heat exchange). The main structural characteristics concern porosity (void content), anisotropy, pore connectivity and scale. The effect of scale is complex, since the permeability decreases as the structure is refined, but the interfacial area for fluid-solid heat exchange is, thereby, raised. The durability of the pore structure may also be an issue, with a possible disadvantage of finer scale structures being poor microstructural stability under service conditions. Finally, good mechanical properties may be required, since the development of thermal gradients, high fluid fluxes, etc. can generate substantial levels of stress. There are, thus, some complex interplays between service conditions, pore architecture/scale, fluid permeation characteristics, convective heat flow, thermal conduction and radiative heat transfer. Such interplays are illustrated with reference to three examples: (i) a thermal barrier coating in a gas turbine engine; (ii) a Space Shuttle tile; and (iii) a Stirling engine heat exchanger. Highly porous, permeable materials are often made by bonding fibres together into a network structure and much of the analysis presented here is oriented towards such materials. © 2005 The Royal Society.

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This paper presents an analysis of crack problems in homogeneous piezoelectrics or on the interfaces between two dissimilar piezoelectric materials based on the continuity of normal electric displacement and electric potential across the crack faces. The explicit analytic solutions are obtained for a single crack in piezoelectrics or on the interfaces of piezoelectric bimaterials. A class of boundary problems involving many cracks is also solved. For homogeneous materials it is found that the normal electric displacement D-2 induced by the crack is constant along the crack faces which depends only on the applied remote stress field. Within the crack slit, the electric fields induced by the crack are also constant and not affected by the applied electric field. For the bimaterials with real H, the normal electric displacement D-2 is constant along the crack faces and electric field E-2 has the singularity ahead of the crack tip and a jump across the interface.

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This paper presents experimental results on heat transfer and pressure drop for a compact heat sink made of fully triangulated, lightweight (porosity∼0.938), aluminum lattice-frame materials (LFMs). Due to the inherent structural anisotropy of the LFMs, two mutually perpendicular orientations were selected for the measurements. Constant heat flux was applied to the heat sink under steady state conditions, and dissipated by forced air convection. The experimental data were compared with those predicted from an analytical model based on fin analogy. The experimental results revealed that pressure drop is strongly dependent upon the orientation of the structure, due mainly to the flow blockage effect. For heat transfer measurements, typical local temperature distributions on the substrate under constant heat flux conditions were captured with infrared camera. The thermal behavior of LFMs was found to follow closely that of cylinder banks, with early transition Reynolds number (based on strut diameter) equal to about 300. The Nusselt number prediction from the fin-analogy correlates well with experimental measurements, except at low Reynolds numbers where a slightly underestimation is observed. Comparisons with empty channels and commonly used heat exchanger media show that the present LFM heat sink can remove heat approximately seven times more efficient than an empty channel and as efficient as a bank of cylinders at the same porosity level. The aluminum LFMs are extremely stiff and strong, making them ideal candidates for multifunctional structures requiring both heat dissipation and mechanical load carrying capabilities. © 2003 Elsevier Ltd. All rights reserved.

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Introducción: Uno de los grandes temas en discusión en 2012 por parte de la doctrina jurídica argentina ha sido la presentación ante el Congreso Nacional del “Proyecto de Reforma, Unificación y Actualización de los Códigos Civil y Comercial de la Nación”. Así las cosas, varias son las voces que se han alzado tanto a favor de la reforma como en su contra. Mientras que algunos consideran que la legislación proyectada implica un avance en materia de derechos humanos, llegando a tildarla como la “reforma más participativa de la historia”1; otros se apartan de esta idea y ven en el Proyecto grandes deficiencias. En el presente trabajo intentaremos analizar uno de los artículos más polémicos de la reforma: el Artículo 19, referente al comienzo de la existencia de la persona humana. Mas no habremos de agotar nuestra investigación allí, proseguiremos analizando otro artículo que puede pasar inadvertido pero que conlleva grandes implicancias si se analiza a la luz del 19. Hacemos referencia al Artículo 57, el cual trata acerca de las prácticas destinadas a alterar la constitución genética de la descendencia. Por último, buscaremos ver qué implicancias puede generar este panorama respecto de la responsabilidad de los profesionales de la salud.

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Resumen: El presente artículo se corresponde con aspectos del nuevo ordenamiento contable establecido en el texto normativo del Código Civil y Comercial de la Nación – Ley 26.994- que entrará en vigencia el 1 de agosto de 2015. Profundizamos el análisis de la parte pertinente a CONTABILIDAD y ESTADOS CONTABLES. (Arts. 320 a 331 y artículos relacionados - Arts.145 a 148). Las novedades más relevantes se refieren a la clasificación de las personas en humanas y jurídicas (públicas y privadas); la definición de los sujetos obligados a llevar registro contable, los excluidos de hacerlo, los libros a emplear, el modo de llevarlos y ciertos requisitos. También incluye disposiciones sobre los Estados Contables y la documentación respaldatoria. Las reformas incluidas en el Código unificado aún no logran dar respuestas a los requerimientos de los profesionales en Ciencias Económicas, que desempeñan un rol protagónico en la aplicación de dichas normas.

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Resumen: En la segunda mitad del siglo XIV, Fernando Álvarez de Albornoz escribió un texto autobiográfi co en latín en la hoja de guarda de un códice del Decreto de Graciano. Parte de este texto es un relato de la guerra civil castellana (1366-1371), probablemente basado en la información que le llegó a Italia a través de cartas enviadas a él o a alguno de sus familiares. Así, puede ser estudiado como fuente primaria o como escrito historiográfi co. En este estudio el texto es transcrito, traducido y analizado. A partir de este análisis, se proponen una datación del texto, modelos para sus estructuras temática y narrativa, y algunas hipótesis sobre su naturaleza e intencionalidad.

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We review the current state of the polymer-carbon nanotube composites field. The article first covers key points in dispersion and stabilization of nanotubes in a polymer matrix, with particular attention paid to ultrasonic cavitation and shear mixing. We then focus on the emerging trends in nanocomposite actuators, in particular, photo-stimulated mechanical response. The magnitude and even the direction of this actuation critically depend on the degree of tube alignment in the matrix; in this context, we discuss the affine model predicting the upper bound of orientational order of nanotubes, induced by an imposed strain. We review how photo-actuation in nanocomposites depend on nanotube concentration, alignment and entanglement, and examine possible mechanisms that could lead to this effect. Finally, we discuss properties of pure carbon nanotube networks, in form of mats or fibers. These systems have no polymer matrix, yet demonstrate pronounced viscoelasticity and also the same photomechanical actuation as seen in polymer-based composites. © 2008 Elsevier Ltd. All rights reserved.

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In this paper, a method is presented to calculate the plane electro-elastic fields in piezoelectric materials with multiple cracks. The cracks may be distributed randomly in locations, orientations and sizes. In the method, each crack is treated as a continuous distributed dislocations with the density function to be determined according to the conditions of external loads and crack surfaces. Some numerical examples are given to show the interacting effect among multiple cracks.

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In this paper, an improved plate impact experimental technique is presented for studying dynamic fracture mechanism of materials, under the conditions that the impacting loading is provided by a single pulse and the loading time is in the sub-microsecond range. The impacting tests are carried out on the pressure-shear gas gun. The loading rate achieved is dK/dt similar to 10(8) MPa m(1/2) s(-1). With the elimination of influence of the specimen boundary, the plane strain state of a semi-infinite crack in an infinite elastic plate is used to simulate the deformation fields of crack tip. The single pulses are obtained by using the "momentum trap" technique. Therefore, the one-time actions of the single pulse are achieved by eradicating the stress waves reflected from the specimen boundary or diffracted from the crack surfaces. In the current study, some important phenomena have been observed. The special loading of the single pulse can bring about material damage around crack tip, and affect the material behavior, such as kinking and branching of the crack propagation. Failure mode transitions from mode I to mode II crack are observed under asymmetrical impact conditions. The mechanisms of the dynamic crack propagation are consistent with the damage failure model.

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Resumen: Existe una realidad que supera todo, que es la internacionalización de las relaciones jurídicas y el derecho legislado en un país no es ni puede ser autosuficiente para resolver los litigios que se presentan y es allí donde como necesidad sociológica aparece el derecho procesal internacional, como parte integrante del derecho internacional privado. La cooperación jurisdiccional de primer grado es comprensiva de un marco amplio en el plano convencional, que resulta en general adecuado en sus ratificaciones para la República, que a su vez posee regulación interna. La concepción del orden público será más flexible en la cooperación jurisdiccional internacional y no integra el orden público la cosa juzgada en el país, ni la litispendencia, elementos que han de evaluarse al momento del reconocimiento. Este primer grado de cooperación abarca en sentido amplio las distintas vías de comunicación entre las que principalmente se encuentran las comunicaciones de mero trámite, la obtención de pruebas en el extranjero y la información del derecho extranjero. Como vía de comunicación, en su finalidad, el exhorto busca la realización de la justicia. El control de la competencia judicial internacional en los exhortos internacionales como requisito de la obligatoriedad para el juez requerido, es eliminado en las modernas tendencias, limitándose a la compatibilidad de él con el orden público del juez requerido. En este rumbo deberían orientarse las futuras reformas de la legislación interna en la materia.

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A brief review is presented of statistical approaches on microdamage evolution. An experimental study of statistical microdamage evolution in two ductile materials under dynamic loading is carried out. The observation indicates that there are large differences in size and distribution of microvoids between these two materials. With this phenomenon in mind, kinetic equations governing the nucleation and growth of microvoids in nonlinear rate-dependent materials are combined with the balance law of void number to establish statistical differential equations that describe the evolution of microvoids' number density. The theoretical solution provides a reasonable explanation of the experimentally observed phenomenon. The effects of stochastic fluctuation which is influenced by the inhomogeneous microscopic structure of materials are subsequently examined (i.e. stochastic growth model). Based on the stochastic differential equation, a Fokker-Planck equation which governs the evolution of the transition probability is derived. The analytical solution for the transition probability is then obtained and the effects of stochastic fluctuation is discussed. The statistical and stochastic analyses may provide effective approaches to reveal the physics of damage evolution and dynamic failure process in ductile materials.