928 resultados para Automotive parts


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Pós-graduação em Engenharia Mecânica - FEG

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The Property and Equipment Department has a central supply of automotive parts, tools, and maintenance supplies. This central supply is used to supply the repair shop and also to supply parts to the various field garages and all departments of the Commission. The old procedure involved keeping track manually of all of the parts, which involved some 22,000 items. All records, billings, arid re-order points were kept manually. Mani times the re-order points were located by reaching into a bin and finding nothing there. Desiring to improve this situation, an inventory control system was established for use on the computer. A complete record of the supplies that are stored in the central warehouse was prepared and this information was used to make a catalog. Each time an item is issued or received, it is processed through the inventory program. When the re-order point is reached, a notice is given to reorder. The procedure for taking inventory has been improved. A voucher invoice is now prepared by the computer for all issues to departments. These are some of the many benefits that have been de rived from this system.

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Los trastornos musculoesqueléticos (TME) tienen alta relación con la industria automotriz afectando a los trabajadores en quienes se puede encontrar varias patologías como Síndrome Del Túnel Del Carpo, Epicondilitis, Síndrome del Manguito Rotador, discopatía lumbar y lumbalgias, entre otros. Entre los factores de riesgo asociados a estos trastornos están los movimientos repetitivos, posturas inadecuadas, vibración, uso manual de herramientas, tareas físicas demandantes y el mal levantamiento de pesos. Todas estas patologías son causa de ausentismo laboral en todo el mundo, lo que conlleva a un aumento en el costo económico por incapacidades, ayudas diagnósticas y tratamientos. Se realizó una revisión de la literatura científica de artículos publicados del año 2000 a 2016 con relación a los trastornos musculoesqueléticos en la industria automotriz en las bases de datos de Pubmed, Ebsco Host, ScienceDirect y Embase. La evidencia encontrada sugiere que la patología lumbar es la que presenta mayor prevalencia en la industria, con 65% en la población Europea, 42% en Asia, Norteamérica en un 20% y en América Latina en un 46%. A pesar que en la industria automotriz predominan como fuerza laboral los hombres, se reportó que las mujeres eran las que tenían mayores factores de riesgo para desarrollar un TME y dentro de estos las posturas inadecuadas, movimientos repetitivos, sobrecarga laboral y levantamiento de pesos, sumado al tiempo de exposición que fue un común denominador en cada uno de los estudios analizados. Las conclusiones fueron que la prevalencia de TME en esta industria es elevada y esto amerita la implementación de programas de prevención más enfocados en este tema. Además no se encontró en la literatura la existencia de un método eficiente para análisis postural y de sobrecarga física, lo que habla de una necesidad urgente de realizar más investigaciones enfocadas en este tipo de población.

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A representative from Buick and what is likely a representative from the New York Trade School show a part in front of the Royal Buick Showroom located at 1356 2nd Avenue near 65th Street. Black and white photograph.

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The objective of this research is to identify the benefits of ergonomic improvements in workstations and in planned parts supply in an automotive assembly line. Another aim is to verify to what extent it is possible to create competitive advantages in the manufacturing area with reduction in vehicle assembly time by using technological investments in ergonomics with benefits to the worker and to the company. The Methods Time Measurement (MTM) methodology is chosen to measure the process time differences. To ensure a reliable comparison, a company in Brazil that has two different types of assembly line installations in the same plant was observed, and both assembly lines were under the same influences in terms of human resources, wages, food, and educational level of the staff. In this article, the first assembly line is called ""new"" and was built 6 years ago, with high investments in ergonomic solutions, in the supply system, and in the process. The other is called ""traditional"" and was built 23 years ago with few investments in the area. (C) 2010 Wiley Periodicals, Inc.

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This work focused on the study of the impact event on molded parts in the framework of automotive components. The influence of the impact conditions and processing parameters on the mechanical behavior of talc-filled polypropylene specimens was analyzed. The specimens were lateral-gate discs produced by injection molding, and the mechanical characterization was performed through instrumented falling weight impact tests concomitantly assisted with high-speed videography. Results analyzed using the analysis of variance (ANOVA) method have shown that from the considered parameters, only the dart diameter and test temperature have significant influence on the falling weight impact properties. Higher dart diameter leads to higher peak force and peak energy results. Conversely, higher levels of test temperatures lead to lower values of peak force and peak energy. By means of high-speed videography, a more brittle fracture was observed for experiments with higher levels of test velocity and dart diameter and lower levels of test temperature. The injection-molding process conditions assessed in this study have an influence on the impact response of moldings, mainly on the deformation capabilities of the moldings.

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Materials selection is a matter of great importance to engineering design and software tools are valuable to inform decisions in the early stages of product development. However, when a set of alternative materials is available for the different parts a product is made of, the question of what optimal material mix to choose for a group of parts is not trivial. The engineer/designer therefore goes about this in a part-by-part procedure. Optimizing each part per se can lead to a global sub-optimal solution from the product point of view. An optimization procedure to deal with products with multiple parts, each with discrete design variables, and able to determine the optimal solution assuming different objectives is therefore needed. To solve this multiobjective optimization problem, a new routine based on Direct MultiSearch (DMS) algorithm is created. Results from the Pareto front can help the designer to align his/hers materials selection for a complete set of materials with product attribute objectives, depending on the relative importance of each objective.

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Thermoplastic matrix composites are receiving increasing interest in last years. This is due to several advantageous properties and speed of processing of these materials as compared to their thermoset counterparts. Among thermoplastic composites, Long Fibre Thermoplastics (LFTs) have seen the fastest growth, mainly due to developments in the automotive sector. LFTs combine the (semi-)structural material properties of long (>1 cm) fibres, with the ease and speed of thermoplastic processing. This paper reports a study of a novel low-cost LFT technology and resulting composites. A patented powder-coating machine able to produce continuously pre-impregnated materials directly from fibre rovings and polymer powders was used to process glass-fibre reinforced polypropylene (GF/PP) towpregs. Such pre-impregnated materials were then chopped and used to make LFTs in a patented low-cost piston-blender developed by the Centre of Lightweight Structures, TUD-TNO, the Netherlands. The work allowed studying the most relevant towpreg production parameters and establishing the processing window needed to obtain a good quality GF/PP powder coated material. Finally, the processing window that allows producing LFTs of good quality in the piston-blender and the mechanical properties of final stamped GF/PP composite parts were also determined.