1000 resultados para PROGRAMA INGENIERÍA INDUSTRIAL


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This paper analyses how the internal resources of small- and medium-sized enterprises determine access (learning processes) to technology centres (TCs) or industrial research institutes (innovation infrastructure) in traditional low-tech clusters. These interactions basically represent traded (market-based) transactions, which constitute important sources of knowledge in clusters. The paper addresses the role of TCs in low-tech clusters, and uses semi-structured interviews with 80 firms in a manufacturing cluster. The results point out that producer–user interactions are the most frequent; thus, the higher the sector knowledge-intensive base, the more likely the utilization of the available research infrastructure becomes. Conversely, the sectors with less knowledge-intensive structures, i.e. less absorptive capacity (AC), present weak linkages to TCs, as they frequently prefer to interact with suppliers, who act as transceivers of knowledge. Therefore, not all the firms in a cluster can fully exploit the available research infrastructure, and their AC moderates this engagement. In addition, the existence of TCs is not sufficient since the active role of a firm's search strategies to undertake interactions and conduct openness to available sources of knowledge is also needed. The study has implications for policymakers and academia.

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The geometrical factors defining an adhesive joint are of great importance as its design greatly conditions the performance of the bonding. One of the most relevant geometrical factors is the thickness of the adhesive as it decisively influences the mechanical properties of the bonding and has a clear economic impact on the manufacturing processes or long runs. The traditional mechanical joints (riveting, welding, etc.) are characterised by a predictable performance, and are very reliable in service conditions. Thus, structural adhesive joints will only be selected in industrial applications demanding mechanical requirements and adverse environmental conditions if the suitable reliability (the same or higher than the mechanical joints) is guaranteed. For this purpose, the objective of this paper is to analyse the influence of the adhesive thickness on the mechanical behaviour of the joint and, by means of a statistical analysis based on Weibull distribution, propose the optimum thickness for the adhesive combining the best mechanical performance and high reliability. This procedure, which is applicable without a great deal of difficulty to other joints and adhesives, provides a general use for a more reliable use of adhesive bondings and, therefore, for a better and wider use in the industrial manufacturing processes.

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The adhesives used for applications in marine environments are subject to particular chemical conditions, which are mainly characterised by an elevated chlorine ion content and intermittent wetting/drying cycles, among others.These conditions can limit the use of adhesives due to the degradation processes that they experience. In this work, the chemical degradation of two different polymers, polyurethane and vinylester, was studied in natural seawater under immersion for different periods of time.The diffusion coefficients and concentration profiles of water throughout the thickness of the adhesiveswere obtained.Microstructural changes in the polymer due to the action of water were observed by SEM, and the chemical degradation of the polymer was monitored with the Fourier transform infrared spectroscopy (FTIR) and differential scanning calorimetry (DSC). The degradation of the mechanical properties of the adhesive was determined by creep tests withMixed Cantilever Beam (MCB) specimens at different temperatures. After 180 days of immersion of the specimens, it was concluded that the J-integral value (depending on the strain) implies a loss of stiffness of 51% and a decrease in the failure load of 59% for the adhesive tested.

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Commercial computer-aided design systems support the geometric definition of product, but they lack utilities to support initial design stages. Typical tasks such as customer need capture, functional requirement formalization, or design parameter definition are conducted in applications that, for instance, support ?quality function deployment? and ?failure modes and effects analysis? techniques. Such applications are noninteroperable with the computer-aided design systems, leading to discontinuous design information flows. This study addresses this issue and proposes a method to enhance the integration of design information generated in the early design stages into a commercial computer-aided design system. To demonstrate the feasibility of the approach adopted, a prototype application was developed and two case studies were executed.

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The numerical analysis of certain safety related problems presents serious difficulties, since the large number of components present leads to huge finite elementmodels that can only be solved by using large and expensive computers or by making rough approaches to the problem. Tangling, or clashing, in the turbine of a jet engine airplane is an example of such problems. This is caused by the crash and friction between rotor and stator blades in the turbine after an eventual shaft failure. When facing the study of an event through numerical modelling, the accurate simulation of this problem would require the engineer to model all the rotor and stator blades existing in the turbine stage, using a small element size in all pieces. Given that the number of stator and rotor blades is usually around 200, such simulations would require millions of elements. This work presents a new numerical methodology, specifically developed for the accurate modelling of the tangling problem that, depending on the turbine configuration, is able to reduce the number of nodes up to an order of magnitude without losing accuracy. The methodology, which benefits from the cyclic configuration of turbines, is successfully applied to the numerical analysis of a hypothetical tangling event in a turbine, providing valuable data such as the rotating velocity decrease of the turbine, the braking torque and the damage suffered by the blades. The methodology is somewhat general and can be applied to any problem in which damage caused by the interaction between a rotating and static piece is to be analysed.

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An efficient approach is presented to improve the local and global approximation and modelling capability of Takagi-Sugeno (T-S) fuzzy model. The main aim is obtaining high function approximation accuracy. The main problem is that T-S identification method cannot be applied when the membership functions are overlapped by pairs. This restricts the use of the T-S method because this type of membership function has been widely used during the last two decades in the stability, controller design and are popular in industrial control applications. The approach developed here can be considered as a generalized version of T-S method with optimized performance in approximating nonlinear functions. A simple approach with few computational effort, based on the well known parameters' weighting method is suggested for tuning T-S parameters to improve the choice of the performance index and minimize it. A global fuzzy controller (FC) based Linear Quadratic Regulator (LQR) is proposed in order to show the effectiveness of the estimation method developed here in control applications. Illustrative examples of an inverted pendulum and Van der Pol system are chosen to evaluate the robustness and remarkable performance of the proposed method and the high accuracy obtained in approximating nonlinear and unstable systems locally and globally in comparison with the original T-S model. Simulation results indicate the potential, simplicity and generality of the algorithm.

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In this paper, we present the use of D-higraphs to perform HAZOP studies. D-higraphs is a formalism that includes in a single model the functional as well as the structural (ontological) components of any given system. A tool to perform a semi-automatic guided HAZOP study on a process plant is presented. The diagnostic system uses an expert system to predict the behavior modeled using D-higraphs. This work is applied to the study of an industrial case and its results are compared with other similar approaches proposed in previous studies. The analysis shows that the proposed methodology fits its purpose enabling causal reasoning that explains causes and consequences derived from deviations, it also fills some of the gaps and drawbacks existing in previous reported HAZOP assistant tools.

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Diseño y fabricación de una cubertería adaptada a personas discapacitadas.

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La información que soportan los actuales sistemas PLM/CAD está relacionada principalmente con las fases de diseño de forma y de diseño de detalle y la información relacionada con la fase de diseño conceptual se limita mayoritariamente a la documentación de especificación de requerimientos. Los sistemas comerciales CAD están pensados para soportar la definición geométrica de producto, pero carecen de utilidades que les permitan soportar las etapas iniciales del diseño. Las tareas típicas del diseño conceptual tales como: la captura de necesidades del cliente, la formalización de requerimientos funcionales o la definición de parámetros de diseño, son realizadas en aplicaciones no interoperables con los sistemas CAD. Esta situación causa una discontinuidad en el flujo de información de diseño: necesidades del cliente – requerimientos funcionales – parámetros de diseño – características críticas – parámetros geométricos. Para solventar este aspecto y facilitar el reuso del conocimiento, en este trabajo se propone un marco para desarrollar una aplicación basada en el conocimiento (KBA) e integrar las herramientas de diseño: despliegue de la función de calidad (QFD), diseño axiomático, análisis de modos y efectos de fallo (FMEA) y la metodología MOKA. El objetivo de esta propuesta es ayudar en la integración de aspectos del diseño conceptual en el proceso de diseño, así como su flujo de información asociado dentro de un sistema CAD comercial. Esta tesis propone mejorar la integración de la información de diseño generado en las etapas más tempranas del diseño dentro de un sistema CAD. Esta investigación presenta la metodología para realizar el desarrollo, el entorno de una aplicación informática, el modelado de información de la aplicación propuesta y la conducción de resultados de la implementación de dicha aplicación informática. Dos casos de estudio son llevados a cabo para validar la metodología propuesta y para evaluar el desarrollo de una aplicación con una interfaz de programación dentro del sistema CAD comercial, todo ello para soportar el flujo de información. El primer caso de estudio está relacionado con el desarrollo de un KBA para el diseño de un componente del embrague de fricción de un automóvil a combustión. El segundo caso trata sobre el desarrollo de una aplicación KBA para el diseño de un componente estructural del fuselaje posterior de un avión comercial de pasajeros. Los resultados obtenidos muestran como la implementación del marco integrado en el sistema KBA podría beneficiar al diseñador en una forma práctica.

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This proposed project aims to design a Model of Public Policy for R&D &I to lead, coordinate and direct the Regional Innovation System (RIS) in support of the SMI sector. The case study of the Bolivar State, Venezuela, is analyzed. The project represents a no- experimental research of projective type and is divided into two parts. In the first one, the current state of the SRI and its relationship with the SMIs is diagnosed, evaluated and described. In the second part, a model of public policy for R&D&I is designed and proposed in order to strengthen the capacity for innovation in SMIs.

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Laser Shock Processing is developing as a key technology for the improvement of surface mechanical and corrosion resistance properties of metals due to its ability to introduce intense compressive residual stresses fields into high elastic limit materials by means of an intense laser driven shock wave generated by laser with intensities exceeding the 109 W/cm2 threshold, pulse energies in the range of 1 Joule and interaction times in the range of several ns. However, because of the relatively difficult-to-describe physics of shock wave formation in plasma following laser-matter interaction in solid state, only limited knowledge is available in the way of full comprehension and predictive assessment of the characteristic physical processes and material transformations with a specific consideration of real material properties. In the present paper, an account of the physical issues dominating the development of LSP processes from a moderately high intensity laser-matter interaction point of view is presented along with the theoretical and computational methods developed by the authors for their predictive assessment and new experimental contrast results obtained at laboratory scale.

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La presente sección especial está dedicada a la Visión por Computador y Modelado 3D, y está compuesta por seis trabajos que abordan tanto novedosos algoritmos como relevantes aplicaciones. Es necesario destacar que la visión 3D se encuentra en un momento de importante desarrollo, ya que la aparición de nuevos equipos (cámaras ToF, escáneres láseres...) está permitiendo el planteamiento y la resolución de nuevos problemas. Por otro lado, la creación de modelos 3D es una fase fundamental para la resolución de estos problemas. Además de las ya tradicionales aplicaciones industriales, destacan las aportaciones en el guiado y modelado de sistemas autónomos, su interacción con humanos o el reconocimiento y modelado de objetos en entornos complejos.

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Directive 2008/98/EC released by the European Union represents a significant step forward in all relevant aspects of waste management. Under the already established, extended produced responsibility (EPR) principle, new policies have been enunciated to continuously achieve better overall environmental performance of key products throughout their life phases. This paper discusses how the directive is being articulated in Spain by the main integrated management system (IMS) for end-of-life (EOL) tyres since its creation in 2006. Focusing on the IMS technological, economic and legal aspects, the study provides a global perspective and evaluation of how the IMS is facing the current issues to resolve, the new challenges that have appeared and the management vision for the coming years.

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La investigación tiene como objetivo establecer los valores organizacionales que afectan la productividad. El trabajo empírico se desarrolló en una muestra intencional de 142 PYMES del sector metalmecánico de Venezuela. Se consultó a un panel de expertos a fin de determinar la importancia relativa de estos valores en la productividad. Fueron sometidos a evaluación 22 valores. Los valores que resultaron más importantes son: Recurso Humano, Calidad, Trabajo en equipo, Responsabilidad y Seguridad. Se recomienda a la PYME metalmecánica Venezolana, orientar esfuerzos hacia la promoción y puesta en práctica de este Sistema de Valores, pues tan sólo Recurso Humano y Calidad son los valores que tienen una mayor presencia en sus filosofías de gestión.

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Choosing an appropriate accounting system for manufacturing has always been a challenge for managers. In this article we try to compare three accounting systems designed since 1980 to address problems of traditional accounting system. In the first place we are going to present a short overview on background and definition of three accounting systems: Activity Based costing, Time-Driven Activity Based Costing and Lean Accounting. Comparisons are made based on the three basic roles of information generated by accounting systems: financial reporting, decision making, and operational control and improvement. The analysis in this paper reveals how decisions are made over the value stream in the companies using Lean Accounting while decisions under the ABC Accounting system are taken at individual product level, and finally we will show how TD-ABC covers both product and process levels for decision making. In addition, this paper shows the importance of nonfinancial measures for operational control and improvement under the Lean Accounting and TD-ABC methods whereas ABC relies mostly on financial measures in this context.