955 resultados para Materials handling -- Equipment and supplies


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Kinetic Monte Carlo (KMC) is a widely used technique to simulate the evolution of radiation damage inside solids. Despite de fact that this technique was developed several decades ago, there is not an established and easy to access simulating tool for researchers interested in this field, unlike in the case of molecular dynamics or density functional theory calculations. In fact, scientists must develop their own tools or use unmaintained ones in order to perform these types of simulations. To fulfil this need, we have developed MMonCa, the Modular Monte Carlo simulator. MMonCa has been developed using professional C++ programming techniques and has been built on top of an interpreted language to allow having a powerful yet flexible, robust but customizable and easy to access modern simulator. Both non lattice and Lattice KMC modules have been developed. We will present in this conference, for the first time, the MMonCa simulator. Along with other (more detailed) contributions in this meeting, the versatility of MMonCa to study a number of problems in different materials (particularly, Fe and W) subject to a wide range of conditions will be shown. Regarding KMC simulations, we have studied neutron-generated cascade evolution in Fe (as a model material). Starting with a Frenkel pair distribution we have followed the defect evolution up to 450 K. Comparison with previous simulations and experiments shows excellent agreement. Furthermore, we have studied a more complex system (He-irradiated W:C) using a previous parametrization [1]. He-irradiation at 4 K followed by isochronal annealing steps up to 500 K has been simulated with MMonCa. The He energy was 400 eV or 3 keV. In the first case, no damage is associated to the He implantation, whereas in the second one, a significant Frenkel pair concentration (evolving into complex clusters) is associated to the He ions. We have been able to explain He desorption both in the absence and in the presence of Frenkel pairs and we have also applied MMonCa to high He doses and fluxes at elevated temperatures. He migration and trapping dominate the kinetics of He desorption. These processes will be discussed and compared to experimental results. [1] C.S. Becquart et al. J. Nucl. Mater. 403 (2010) 75

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Nowadays, there is a significant quantity of linguistic data available on the Web. However, linguistic resources are often published using proprietary formats and, as such, it can be difficult to interface with one another and they end up confined in “data silos”. The creation of web standards for the publishing of data on the Web and projects to create Linked Data have lead to interest in the creation of resources that can be published using Web principles. One of the most important aspects of “Lexical Linked Data” is the sharing of lexica and machine readable dictionaries. It is for this reason, that the lemon format has been proposed, which we briefly describe. We then consider two resources that seem ideal candidates for the Linked Data cloud, namely WordNet 3.0 and Wiktionary, a large document based dictionary. We discuss the challenges of converting both resources to lemon , and in particular for Wiktionary, the challenge of processing the mark-up, and handling inconsistencies and underspecification in the source material. Finally, we turn to the task of creating links between the two resources and present a novel algorithm for linking lexica as lexical Linked Data.

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The deployment of nodes in Wireless Sensor Networks (WSNs) arises as one of the biggest challenges of this field, which involves in distributing a large number of embedded systems to fulfill a specific application. The connectivity of WSNs is difficult to estimate due to the irregularity of the physical environment and affects the WSN designers? decision on deploying sensor nodes. Therefore, in this paper, a new method is proposed to enhance the efficiency and accuracy on ZigBee propagation simulation in indoor environments. The method consists of two steps: automatic 3D indoor reconstruction and 3D ray-tracing based radio simulation. The automatic 3D indoor reconstruction employs unattended image classification algorithm and image vectorization algorithm to build the environment database accurately, which also significantly reduces time and efforts spent on non-radio propagation issue. The 3D ray tracing is developed by using kd-tree space division algorithm and a modified polar sweep algorithm, which accelerates the searching of rays over the entire space. Signal propagation model is proposed for the ray tracing engine by considering both the materials of obstacles and the impact of positions along the ray path of radio. Three different WSN deployments are realized in the indoor environment of an office and the results are verified to be accurate. Experimental results also indicate that the proposed method is efficient in pre-simulation strategy and 3D ray searching scheme and is suitable for different indoor environments.

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Radar technologies have been developed to improve the efficiency when detecting targets. Radar is a system composed by several devices connected and working together. Depending on the type of radar, the improvements are focused on different functionalities of the radar. One of the most important devices composing a radar is the antenna, that sends the radio-frequency signal to the space in order to detect targets. This project is focused on a specific type of radar called phased array radar. This type of radar is characterized by its antenna, which consist on a linear array of radiating elements, in this particular case, eight dipoles working at the frequency band S. The main advantage introduced by the phased array antenna is that using the fundamentals of arrays, the directivity of the antenna can change by shifting the phase of the signal at the input of each radiating element. This can be done using phase shifters. Phase shifter consists on a device which produces a phase shift in the radio-frequency input signal depending on a control DC voltage. Using a phased array antenna allows changing the directivity of the antenna without a mechanical rotating system. The objective of this project is to design the feed network and the bias network of the phased antenna. The feed network consists on a parallel-fed network composed by power dividers that sends the radio-frequency signal from the source to each radiating element of the antenna. The bias network consists on a system that generates the control DC voltages supplied to the phase shifters in order to change the directivity. The architecture of the bias network is composed by a software, implemented in Matlab and run in a laptop which is connected to a micro-controller by a serial communication port. The software calculates the control DC voltages needed to obtain a determined directivity or scan angle. These values are sent by the serial communication port to the micro-controller as data. Then the micro-controller generates the desired control DC voltages and supplies them to the phase shifters. In this project two solutions for bias network are designed. Each one is tested and final conclusions are obtained to determine the advantages and disadvantages. Finally a graphic user interface is developed in order to make the system easy to use. RESUMEN. Las tecnologías empleadas por lo dispositivos radar se han ido desarrollando para mejorar su eficiencia y usabilidad. Un radar es un sistema formado por varios subsistemas conectados entre sí. Por lo que dependiendo del tipo de radar las mejoras se centran en los subsistemas correspondientes. Uno de los elementos más importantes de un radar es la antena. Esta se emplea para enviar la señal de radiofrecuencia al espacio y así poder detectar los posibles obstáculos del entorno. Este proyecto se centra en un tipo específico de radar llamado phased array radar. Este tipo de radar se caracteriza por la antena que es un array de antenas, en concreto para este proyecto se trata de un array lineal de ocho dipolos en la banda de frequencia S. El uso de una antena de tipo phased array supone una ventaja importante. Empleando los fundamentos de radiación aplicado a array de antenas se obtiene que la directividad de la antena puede ser modificada. Esto se consigue aplicando distintos desfasajes a la señal de radiofrecuencia que alimenta a cada elemento del array. Para aplicar los desfasajes se emplea un desplazador de fase, este dispositivo aplica una diferencia de fase a su salida con respecto a la señal de entrada dependiendo de una tensión continua de control. Por tanto el empleo de una antena de tipo phased array supone una gran ventaja puesto que no se necesita un sistema de rotación para cambiar la directividad de la antena. El objetivo principal del proyecto consiste en el diseño de la red de alimentación y la red de polarización de la antena de tipo phased array. La red de alimentación consiste en un circuito pasivo que permite alimentar a cada elemento del array con la misma cantidad de señal. Dicha red estará formada por divisores de potencia pasivos y su configuración será en paralelo. Por otro lado la red de polarización consiste en el diseño de un sistema automático que permite cambiar la directividad de la antena. Este sistema consiste en un programa en Matlab que es ejecutado en un ordenador conectado a un micro-controlador mediante una comunicación serie. El funcionamiento se basa en calcular las tensiones continuas de control, que necesitan los desplazadores de fase, mediante un programa en Matlab y enviarlos como datos al micro-controlador. Dicho micro-controlador genera las tensiones de control deseadas y las proporciona a cada desplazador de fase, obteniendo así la directividad deseada. Debido al amplio abanico de posibilidades, se obtienen dos soluciones que son sometidas a pruebas. Se obtienen las ventajas y desventajas de cada una. Finalmente se implementa una interfaz gráfica de usuario con el objetivo de hacer dicho sistema manejable y entendible para cualquier usuario.

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Good results evaluating material properties using non-destructive testing (NDT) techniques have been achieved for decades. Several studies to understand the influence of temperature and moisture content on NDT have concluded different effects. In this study, NDT parameters were measured on the principal structural Spanish sawn timber species, Scots pine (Pinus sylvestris L.). NDT were conducted on 216 specimens of nominal dimensions 20 by 20 by 400 mm. Specimens were divided into several groups and studied at six different temperatures and four different moisture contents. Commercial equipment and techniques applied were Sylvatest Duo (ultrasonic wave technique), Steinkamp BPV (ultrasonic wave technique), and Grindo Sonic Mk5 "Industrial" (vibration analysis technique). Differences in NDT values within specimens at different temperatures and moisture contents were obtained. Main results of this study and relationships that describe changes in NDT values by effect of temperature and moisture content are presented.

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Thermorheological changes in high hydrostatic pressure (HHP)-treated chickpea flour (CF) slurries were studied as a function of pressure level (0.1, 150, 300, 400, and 600 MPa) and slurry concentration (1:5, 1:4, 1:3, and 1:2 flour-to-water ratios). HHP-treated slurries were subsequently analyzed for changes in properties produced by heating, under both isothermal and non-isothermal processes. Elasticity (G′) of pressurized slurry increased with pressure applied and concentration. Conversely, heat-induced CF paste gradually transformed from solid-like behavior to liquid-like behavior as a function of moisture content and pressure level. The G′ and enthalpy of the CF paste decreased with increasing pressure level in proportion with the extent of HHP-induced starch gelatinization. At 25 °C and 15 min, HHP treatment at 450 and 600 MPa was sufficient to complete gelatinization of CF slurry at the lowest concentration (1:5), while more concentrated slurries would require higher pressures and temperature during treatment or longer holding times. Industrial relevance Demand for chickpea gel has increased considerably in the health and food industries because of its many beneficial effects. However, its use is affected by its very difficult handling. Judicious application of high hydrostatic pressure (HHP) at appropriate levels, adopted as a pre-processing instrument in combination with heating processes, is presented as an innovative technology to produce a remarkable decrease in thermo-hardening of heat-induced chickpea flour paste, permitting the development of new chickpea-based products with desirable handling properties and sensory attributes.

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When the fresh fruit reaches the final markets from the suppliers, its quality is not always as good as it should, either because it has been mishandled during transportation or because it lacks an adequate quality control at the producer level, before being shipped. This is why it is necessary for the final markets to establish their own quality assessment system if they want to ensure to their customers the quality they want to sell. In this work, a system to control fruit quality at the last level of the distribution channel has been designed. The system combines rapid control techniques with laboratory equipment and statistical sampling protocols, to obtain a dynamic, objective process, which can substitute advantageously the quality control inspections carried out visually by human experts at the reception platform of most hypermarkets. Portable measuring equipment have been chosen (firmness tester, temperature and humidity sensors...) as well as easy-to-use laboratory equipment (texturometer, colorimeter, refractometer..,) combining them to control the most important fruit quality parameters (firmness, colour, sugars, acids). A complete computer network has been designed to control all the processes and store the collected data in real time, and to perform the computations. The sampling methods have been also defined to guarantee the confidence of the results. Some of the advantages of a quality assessment system as the proposed one are: the minimisation of human subjectivity, the ability to use modern measuring techniques, and the possibility of using it also as a supplier's quality control system. It can be also a way to clarify the quality limits of fruits among members of the commercial channel, as well as the first step in the standardisation of quality control procedures.

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Laser shock processing (LSP) is being increasingly applied as an effective technology for the improvement of metallic materials mechanical and surface properties in different types of components as a means of enhancement of their corrosion and fatigue life behavior. As reported in previous contributions by the authors, a main effect resulting from the application of the LSP technique consists on the generation of relatively deep compression residual stresses field into metallic alloy pieces allowing an improved mechanical behaviour, explicitly the life improvement of the treated specimens against wear, crack growth and stress corrosion cracking. Additional results accomplished by the authors in the line of practical development of the LSP technique at an experimental level (aiming its integral assessment from an interrelated theoretical and experimental point of view) are presented in this paper. Concretely, follow-on experimental results on the residual stress profiles and associated surface properties modification successfully reached in typical materials (especially Al and Ti alloys characteristic of high reliability components in the aerospace, nuclear and biomedical sectors) under different LSP irradiation conditions are presented along with a practical correlated analysis on the protective character of the residual stress profiles obtained under different irradiation strategies. Additional remarks on the improved character of the LSP technique over the traditional “shot peening” technique in what concerns depth of induced compressive residual stresses fields are also made through the paper

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Long-length ultrafine-grained (UFG) Ti rods are produced by equal-channel angular pressing via the conform scheme (ECAP-C) at 200 °C, which is followed by drawing at 200 °C. The evolution of microstructure, macrotexture, and mechanical properties (yield strength, ultimate tensile strength, failure stress, uniform elongation, elongation to failure) of pure Ti during this thermo-mechanical processing is studied. Special attention is also paid to the effect of microstructure on the mechanical behavior of the material after macrolocalization of plastic flow. The number of ECAP-C passes varies in the range of 1–10. The microstructure is more refined with increasing number of ECAP-C passes. Formation of homogeneous microstructure with a grain/subgrain size of 200 nm and its saturation after 6 ECAP-C passes are observed. Strength properties increase with increasing number of ECAP passes and saturate after 6 ECAP-C passes to a yield strength of 973 MPa, an ultimate tensile strength of 1035 MPa, and a true failure stress of 1400 MPa (from 625, 750, and 1150 MPa in the as-received condition). The true strain at failure failure decreases after ECAP-C processing. The reduction of area and true strain to failure values do not decrease after ECAP-C processing. The sample after 6 ECAP-C passes is subjected to drawing at 200¯C resulting in reduction of a grain/subgrain size to 150 nm, formation of (10 View the MathML source1¯0) fiber texture with respect to the rod axis, and further increase of the yield strength up to 1190 MPa, the ultimate tensile strength up to 1230 MPa and the true failure stress up to 1600 MPa. It is demonstrated that UFG CP Ti has low resistance to macrolocalization of plastic deformation and high resistance to crack formation after necking.

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In the last years, there has been a continued growth in the number of offshore operations for handling large equipment and objects, with emphasis on installation and maintenance of devices for exploiting marine renewable energy like generators for harnessing wind, waves and currents energy. Considering the behaviour of these devices during manoeuvrings, and due to their size and by the interaction with the surrounding fluid, the effect of inertial forces and torques is very important, which requires a specific modelling. This paper especially discusses the masses and moments of inertia modelling problem, with the aim to use it in the simulation of the complex manoeuvres of these devices and in the automatic control systems designed for their offshore operations. Given the importance and complexity of the added mass modelling, a method for its early design identification, developed by the R&D Group on Marine Renewable Energy Technologies of the UPM (GITERM) and its use on special cases like emersion manoeuvres of devices from underwater to the surface will be presented.

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En muchas áreas de la ingeniería, la integridad y confiabilidad de las estructuras son aspectos de extrema importancia. Estos son controlados mediante el adecuado conocimiento de danos existentes. Típicamente, alcanzar el nivel de conocimiento necesario que permita caracterizar la integridad estructural implica el uso de técnicas de ensayos no destructivos. Estas técnicas son a menudo costosas y consumen mucho tiempo. En la actualidad, muchas industrias buscan incrementar la confiabilidad de las estructuras que emplean. Mediante el uso de técnicas de última tecnología es posible monitorizar las estructuras y en algunos casos, es factible detectar daños incipientes que pueden desencadenar en fallos catastróficos. Desafortunadamente, a medida que la complejidad de las estructuras, los componentes y sistemas incrementa, el riesgo de la aparición de daños y fallas también incrementa. Al mismo tiempo, la detección de dichas fallas y defectos se torna más compleja. En años recientes, la industria aeroespacial ha realizado grandes esfuerzos para integrar los sensores dentro de las estructuras, además de desarrollar algoritmos que permitan determinar la integridad estructural en tiempo real. Esta filosofía ha sido llamada “Structural Health Monitoring” (o “Monitorización de Salud Estructural” en español) y este tipo de estructuras han recibido el nombre de “Smart Structures” (o “Estructuras Inteligentes” en español). Este nuevo tipo de estructuras integran materiales, sensores, actuadores y algoritmos para detectar, cuantificar y localizar daños dentro de ellas mismas. Una novedosa metodología para detección de daños en estructuras se propone en este trabajo. La metodología está basada en mediciones de deformación y consiste en desarrollar técnicas de reconocimiento de patrones en el campo de deformaciones. Estas últimas, basadas en PCA (Análisis de Componentes Principales) y otras técnicas de reducción dimensional. Se propone el uso de Redes de difracción de Bragg y medidas distribuidas como sensores de deformación. La metodología se validó mediante pruebas a escala de laboratorio y pruebas a escala real con estructuras complejas. Los efectos de las condiciones de carga variables fueron estudiados y diversos experimentos fueron realizados para condiciones de carga estáticas y dinámicas, demostrando que la metodología es robusta ante condiciones de carga desconocidas. ABSTRACT In many engineering fields, the integrity and reliability of the structures are extremely important aspects. They are controlled by the adequate knowledge of existing damages. Typically, achieving the level of knowledge necessary to characterize the structural integrity involves the usage of nondestructive testing techniques. These are often expensive and time consuming. Nowadays, many industries look to increase the reliability of the structures used. By using leading edge techniques it is possible to monitoring these structures and in some cases, detect incipient damage that could trigger catastrophic failures. Unfortunately, as the complexity of the structures, components and systems increases, the risk of damages and failures also increases. At the same time, the detection of such failures and defects becomes more difficult. In recent years, the aerospace industry has done great efforts to integrate the sensors within the structures and, to develop algorithms for determining the structural integrity in real time. The ‘philosophy’ has being called “Structural Health Monitoring” and these structures have been called “smart structures”. These new types of structures integrate materials, sensors, actuators and algorithms to detect, quantify and locate damage within itself. A novel methodology for damage detection in structures is proposed. The methodology is based on strain measurements and consists in the development of strain field pattern recognition techniques. The aforementioned are based on PCA (Principal Component Analysis) and other dimensional reduction techniques. The use of fiber Bragg gratings and distributed sensing as strain sensors is proposed. The methodology have been validated by using laboratory scale tests and real scale tests with complex structures. The effects of the variable load conditions were studied and several experiments were performed for static and dynamic load conditions, demonstrating that the methodology is robust under unknown load conditions.

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Ternary Cu(Sb,Bi)S2 semiconductors are a group of materials with a wide variety of applications, especially photovoltaic. An analysis of the structural, electronic, and optical properties obtained from first-principles is presented. The microscopic justification of the high absorption coefficients is carried out by splitting the optical properties on chemical species contributions according to the symmetry. Focusing on photovoltaic applications, and from first-principles results, the efficiencies for several solar spectra are obtained as a function of the device thickness. This study indicates the great potential of these materials for photovoltaic and other optical devices.

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Como consecuencia de los procesos de globalización el mundo empresarial está sometido a constantes cambios que han originado la necesidad en las empresas de evaluar su funcionamiento, con el objeto de adecuar su gestión a las mejores prácticas gerenciales y operativas, en función de adaptarse a las exigencias presentes en los escenarios en que están inmersas. La presente investigación tiene como propósito desarrollar un modelo explicativo de la relación entre la productividad y los valores organizacionales, teniendo como premisa los distintos planteamientos o teorías que destacan la importancia que tienen los valores organizacionales para que las empresas logren sus metas. Específicamente se tomó como referencia la clasificación de los valores organizacionales, que contempla el modelo de gestión de Dirección por Valores (DPV), de García y Dolan (2001). Las PYMES, al considerar el efecto que tienen los valores organizacionales en la productividad, pueden apoyar su gestión a través del compromiso de las personas para lograr los resultados de productividad que quieren o necesitan alcanzar. El abordaje del estudio se ha basado en la investigación explicativa, a través de la cual se exponen las razones de ocurrencia de un fenómeno o se muestran los mecanismos por los que se relacionan dos o más variables, lo que permitió conjugar definiciones y supuestos de las relaciones encontradas entre los valores organizacionales identificados de acuerdo a la opinión de los entrevistados y que resultaron ser significativos con los resultados de productividad que presentan las empresas que fueron objeto de esta investigación La población estuvo conformada por 40 empresas activas del sector metalúrgico y minero de Ciudad Guayana, Estado Bolívar, Venezuela, pertenecientes a la Asociación de Industriales Metalúrgicos y de Minería de la región Guayana (AIMM) y al directorio de la Cámara de Industriales y Mineros de Guayana. La muestra estudiada corresponde a 25 empresas que representan el 62% de la población. El proceso que se siguió para generar el modelo explicativo contempla tres etapas. La primera consiste en la fase descriptiva donde se recogió la información referente a la productividad de las empresas y a la determinación de los valores organizacionales identificados a través del análisis cualitativo de las entrevistas que se realizaron a los informantes de las empresas de la muestra. Para ello se utilizó el software Atlas ti 6.0. La segunda etapa, denominada comparativa, consistió en determinar la relación entre la productividad y los valores organizacionales, a través de las tablas de contingencias, de acuerdo con el grado de significancia que mostró el estadístico Chi- cuadrado. La tercera y última etapa del proceso es la fase explicativa que consistió en estimar la magnitud de la relación entre las variables productividad y valores organizacionales utilizando el coeficiente de contingencia de Pearson, y en establecer las asociaciones de acuerdo a las proximidades observadas que resultaron del análisis de correspondencias múltiples. Entre los hallazgos del estudio desarrollado se encontró que la productividad de las empresas puede fijarse en tres categorías: alta, media y baja y entre los factores que afectan a la productividad destacan, en el contexto externo: el gobierno, los clientes y los proveedores y en el contexto interno: la mano de obra, los materiales y los suministros. Según la opinión de los gerentes entrevistados, los valores organizacionales que caracterizan a las empresas del sector estudiado se agrupan en veintisiete categorías, que se clasifican en los siguientes componentes: entorno mercado, clientes, proveedores y otras empresas aliadas, medio ambiente, forma de tratar la Dirección al resto de empleados, forma de trabajar cotidiana y gestión de los recursos económicos. Los valores organizacionales que resultaron ser significativos fueron la innovación, la honestidad y el orden y limpieza. La magnitud de la relación encontrada del valor innovación fue moderadamente fuerte. Se infiere que las empresas, al tener una Productividad baja, deciden innovar en el desarrollo de nuevos productos. El valor honestidad arrojó una relación moderadamente fuerte, determinando que las empresas de Productividad alta basan sus relaciones con los proveedores en la honestidad. Finalmente, el valor orden y limpieza muestra una relación moderadamente débil, lo que hace suponer que las empresas de Productividad media tienen alguna preferencia por mantener el orden y limpieza en las áreas de trabajo. El modelo explicativo de la relación entre productividad y valores organizacionales, en las PYMES del sector metalúrgico y minero de Ciudad Guayana, quedó conformado por los siguientes componentes: mercado, clientes, proveedores y otras empresas aliadas, y medio ambiente. No se encontraron relaciones en los componentes forma de tratar la Dirección al resto de empleados, forma de trabajar cotidiana y gestión de los recursos económicos. ABSTRACT As a result of globalization processes, the business world is subject to constant change. This has resulted in the need for companies to evaluate their performance in order to adjust their processes to the best managerial and operational practices, with the goal to adapt to the demands present in the scenarios in which they are embedded. This research aimed to develop an explanatory model of the relationship between productivity and organizational values. In addition, it was based on the different approaches or theories that relate the importance for enterprises of the organizational values to achieve their goals. Specifically, reference was made to the classification of organizational values, which includes the model of Management by Values (DPV) following García and Dolan (1997). The SMEs, considering the effect of organizational values on productivity, can support their management through the commitment of their people to achieve productivity results that they want or need to accomplish. The study approach was based on explanatory research, which presents the reasons for occurrence of a phenomenon and the mechanisms through which two or more variables are related. This allowed to combine definitions and assumptions about the relationship found between organizational values and the productivity results of the companies that took part in this research. Organizational values were identified in the opinion of the managers interviewed, and were found to be significant with the productivity results. The population consisted of 40 active enterprises of the metallurgical and mining industry of Ciudad Guayana, Estado Bolivar, Venezuela. These enterprises were members of the Association of Metallurgical and Mining Industry of the Guayana Region (AIMM, by its acronym in Spanish) and the Directory of the Chamber of Industrial and Mining of Guayana. The sample of the study is comprised of 25 enterprises, which represent 62% of the total population. The process which has been followed to generate the explanatory model involves three stages. The first stage is the descriptive phase where the information about enterprises productivity and the determination of organizational values is gathered. These organizational values were identified by a qualitative analysis of the interviews conducted with managers of each enterprise. This analysis was performed using the Atlas ti 6.0 software. The second stage, denominated comparative, consisted in determining the relationship between productivity and organizational values through contingency tables, and according to the degree of significance showed by the Chi-Square, statistic. The third, and final stage of the process, is the explanatory phase. This consisted in estimating the magnitude of the relationship between productivity and organizational values variables using the Pearson's contingency coefficient. In addition, this stage comprises the establishment of the associations according to the observed proximities that resulted from the multiple correspondence analysis. Among the findings of this study, it was found that the productivity of enterprises can be set in three categories: high, medium and low. Additionally, it was found that in the external context the factors that stand out affecting productivity are: government policy, customers and suppliers, while in the domestic context they are: labor, materials and supplies. According to the opinion of the managers interviewed the organizational values that characterize the companies that were studied are grouped into twenty seven categories. These categories are classified into the following components: market environment, customers, suppliers and other allied companies, the environment, how Management deals with of the employees, way to work every day, and management of economic resources. Organizational values that were found to be significant were innovation, honesty and order and cleanliness. The magnitude of the relation of the innovation value was found to be moderately strong. It is inferred that companies that have low productivity decide to innovate in the development of new products. The honesty value showed a moderately strong relation, determining that high productivity enterprises base their relationships with suppliers on honesty. Lastly, the order and cleanliness value showed a moderately weak relation, which suggests that average productivity enterprises have a preference to maintain order and cleanliness in the work areas. The explanatory model of the relationship between productivity and organizational values, in the SMEs of the metallurgical and mining sector of Ciudad Guayana, was composed of the following components: market, customers, suppliers and other allied companies, and the environment. No relationships were found in the following components: how Management deals with employees, way to work every day, and management of economic resources.

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In this study two YBa2Cu3O7−δ bulk superconductors were evaluated, with the aim of analyzing the influence of the processing method (TSMG and Bridgman) and the test temperature on their mechanical behavior. The relationship between their mechanical properties and fracture micromechanisms has also been studied. Both materials were tested at room and at service temperature. TPB tests were carried out to determine their mechanical behavior, strength and toughness. Moreover, one of the two materials, characterized by transversal microstructural anisotropy, was tested in two directions. Hardness of both materials at nano and micro scale was studied. The results show that the mechanical behavior of the materials is controlled by the defects and cracks that have been introduced during the processing of the materials. A good degree of agreement was found between the experimental crack defects detected by means of SEM and those gathered from the fracture mechanical analysis of the experimental data

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En el presente trabajo se plantea el estudio de las características acústicas del ladrillo artesanal e industrial fabricado en Ecuador, considerando las características particulares respecto a la calidad de la materia prima, además del hecho de que a nivel artesanal su producción no está regularizada, si bien existen una serie de reglamentos no siempre son acatados por el productor artesanal, lo que hace que presente propiedades particulares. La idea principal de este trabajo es generar datos referenciales e iniciales, sobre las propiedades acústicas del ladrillo artesanal e industrial ya que en Ecuador, no existe ningún estudio de esta naturaleza sobre el tema. Además de crear los mecanismos necesarios para una posible ampliación del estudio a otros materiales propios de Ecuador que permitan generar una base de datos sobre sus propiedades acústicas. Otro aspecto importante sobre esta investigación es el familiarizarse con el uso de técnicas de medición, manejo de equipamiento y software diverso, del manejo y comparación de normativa. ABSTRACT. The purpose of this paper is the study of the acoustic characteristics of artisanal and industrial brick manufactured in Ecuador, considering the particular characteristics regarding the quality of raw materials, besides the fact that artisanal production level is unregulated, although there are a number of regulations are not always complied with by the artisan producer, which makes this particular properties. The main idea of this paper is to generate reference and baseline data on the acoustic properties of artisanal and industrial brick as in Ecuador, there is no study of this nature on the subject. In addition to creating the necessary mechanisms for a possible extension of the study to other materials from Ecuador that will generate a database on its acoustic properties. Another important aspect of this research is to get familiar with the use of measurement techniques, equipment and miscellaneous management software, management and comparison of legislation.