980 resultados para Warren Motor Car Company


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O projeto foi realizado na Toyota (divisão fabril de Ovar), no ano letivo 2014/2015, teve por base um estágio extracurricular que foi realizado para que desta forma tomasse contacto com uma realidade concreta e absoluta no contexto empresarial. O estágio serviu, principalmente, como uma experiência na compreensão do funcionamento de uma indústria de automóveis. Este projeto desenvolve-se no âmbito do 2ºano do Mestrado de Logística e apresenta os contributos desenvolvidos no departamento de logística para a reorganização da mesma para a produção de um novo modelo automóvel. Atualmente, a Toyota, para os modelos de automóveis que produz, recebe os componentes em CKD (Completed Knocked Down) provenientes do Japão em lotes de cinco unidades. Estes lotes são armazenados no armazém, de onde só saem quando for dada ordem para serem produzidos. Cada lote tem várias caixas, que são colocadas à vez numa zona comum de abertura. São retidos os componentes das caixas CKD e colocados nos transportadores próprios dos postos correspondentes (supermercado de linha). Isto significa que sempre que é solicitado uma viatura de um determinado lote, são obrigados a produzir as cinco unidades. Isto significa que as restantes unidades do lote terão que ficar em parque aberto a aguardar venda futura, para além de ter um stock desnecessário, estas unidades ficam vulneráveis e sofrem desgaste, pois estão expostas à intempérie, causando graves problemas de qualidade e respetivos custos associados. Recentemente, foi decidida a produção do modelo Land Cruiser 70 na unidade industrial de Ovar, Portugal, o que obrigou a uma reorganização da produção e processos logísticos para a sua produção. Os objetivos que a empresa pretende com a entrada de um novo projeto Land Cruiser 70, são os seguintes: Alterar o sistema de abastecimento, implementando o abastecimento unitário em toda a fábrica para o novo modelo, garantindo o “one by one production”; Definir o funcionamento do processo logístico desde a chegada dos componentes até ficarem disponíveis no supermercado de linha. Para isso será necessário dimensionar armazém e zona de abertura, definir layouts e quantidade de stocks, bem como definir sistemas de comunicação entre abertura e supermercado; Verificar as peças que vão fazer parte do chassi por posto e contabilizar os dolly´s1 necessários; Fazer o layout de abastecimento da linha do chassi; Calcular o tempo de abertura, de abastecimento e de picking do chassi e de triming. Este projeto tem em conta a política de melhoria contínua de forma a conseguir satisfazer o cliente (ser eficaz) utilizando cada vez menos recursos quer físicos quer humanos (ser eficiente, detetar e eliminar os desperdícios). O presente projeto foi inserido na equipa de melhoria contínua da logística, maioritariamente no chassi. Em termos globais, os objetivos propostos neste estágio foram atingidos com êxito.

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This work project explores how a male luxury (fashion) brand (subsidiary) that is associated with a luxury car brand (parent company) should develop its communication strategy in order to increase awareness in Europe. For this purpose a quantitative research was conducted. The aim was to find out whether the company in question had low brand awareness among European luxury consumers. Hereafter, a qualitative research revealed important insights in regard to luxury communication among male luxury consumers. Both the results of the research and the recommendations of luxury experts laid the foundation for the development of a solution-oriented communication strategy. The result of the analysis crystallizes the importance of the shared heritage and the synergistic effects, of which the subsidiary should make vast use when communicating.

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Warren Hartman was born in 1942 in Toronto, Ontario. He received a B.A. in Fine Arts and Drama from Brock University in 1981 and a Masters of Arts in Humanities at the State University of New York at Buffalo in 1987. In the 1950s he did considerable work as a child-actor both in theatre and television. From 1953 to 1961 he was in the New Play Society under the direction of Dora Mavor Moore. His last two years there were spent as a scholarship student. From 1963 to 1966 he did an apprenticeship with Suzanne Mess, Head of Costume Design at The Canadian Opera Company in Toronto. In 1976 Warren attended a Master Class in Scenography at the Banff School of Fine Arts with Josef Svoboda. In the spring of 1970 Warren was a guest designer at Brock University and from 1970 to 1972 he remained at Brock as resident designer and special lecturer. During this time he was also an instructor and costume designer at Sheridan College in Oakville. It was in 1972 that he became the designer-in-residence at Brock University. From 1984 he held the position of Associate Professor at The Department of Fine Arts at Brock University until the fall of 1996. Some of the highlights of Warren’s career also include: stage managager with the Street Hat Players in Port Carling, Ontario, 1960-1961; a freelance designer for over 100 shows; costume coordinator(production manager) for the Canadian Opera Company, 1964 -1970; resident costume designer for The Canadian Opera Company, 1965- 1970; founder and artistic director of Dei Gelosi Campagnia, St.Catharines, Ontario, 1970-1973; freelance director of some thirty-five shows; co-producer for Quebec City Summer Stock Company, Quebec City, Quebec, 1975; a consultant with Alberta Culture for the Provincial Government of Alberta, 1986-1987 and associate artistic director at Theatre Network, Edmonton, Alberta, 1986-1987. Warren Hartman was the recipient of the Jean Chalmers Award for contributions to Canadian Theatre for persons 25 years of age or under, in 1965. He was a founding member of Associated Designers of Canada and was affiliated with Canadian Actors Equity. Warren Hartman died on Feb. 11, 1998 several days after suffering a massive stroke. A memorial service was held at Brock University in May of 1998 and a bursary fund was established in his name.

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Introducción. Los pintores de vehículos automotores están expuestos a solventes puros o mezclas de estos, los cuales se han asociado con efectos neurológicos y mutacarcinogénicos. Materiales y Métodos. Se realizó un estudio descriptivo de corte transversal para caracterizar las condiciones de salud y trabajo de individuos expuestos a solventes orgánicos en talleres de lámina y pintura en Bogotá. Se comparó un grupo de expuestos a solventes orgánicos con un grupo no expuestos. Se determinaron concentraciones de benceno, tolueno y xileno (BTX) en aire, se aplicó una encuesta individual y se midieron en orina, los ácidos fenil mercaptúrico, hipúrico, orto-para metilhipúrico como metabolitos de benceno, tolueno y xileno. Los resultados de las mediciones y de la encuesta se correlacionaron para establecer el panorama de exposición. Resultados: hubo diferencias estadísticamente significativas entre la población expuesta y la población no expuesta a solventes (p = 0,00) para los tres metabolitos de BTX. Se encontraron correlaciones positivas entre el tolueno en aire y ácido hipúrico en orina de los expuestos, (Spearman de 0,82) y entre el xileno en aire y el ácido o-metilhipúrico (Spearman de 0,76). Se encontraron valores de ácido hipúrico por encima de los límites permisibles en 11 2 trabajadores y de ácido p-metilhipúrico en 8 de ellos. No hubo valores para ácido fenilmercapturico fuera de límite. Discusión: los pintores de carros se encuentran expuestos a niveles altos de solventes orgánicos en sus sitios de trabajo y no cuentan con condiciones adecuadas de higiene y seguridad industrial para realizar sus labores.

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Resumen tomado de la publicaci??n

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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A man wearing no protective helmet was struck by a motor vehicle while riding a bicycle. He was loaded on his left side, and the impact point of his head was his occiput on the car roof girder. He was immediately transported to the general hospital, where he passed away. Postmortem examination using multi-slice computed tomography (MSCT) revealed an extensively comminuted fracture of the posterior part and the base of the skull. Observed were deep direct and contrecoup brain bruises, with the independent fractures of the roof of the both orbits. Massive subdural and subarachnoidal hemorrhage with cerebral edema and shifting of the mid-line towards left side were also detected. MSCT and autopsy results were compared and the body injuries were correlated to vehicle damages. In conclusion, postmortem imaging is a good forensic visualization tool with great potential for documentation and examination of body injuries and pathology.

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During the past years, the industry has shifted position and moved towards “the luxury universe” whose customers are demanding, treating individuals as unique and valued customer for the business, offering vehicles produced with the state of the art technologies and implementing the highest finishing standards. Due to the competitive level in the market, motor makers enable processes which equalizes customer services to E.R. management, being dealt with the maximum urgency that allows the comparison between both, car workshops and emergency rooms, where workshop bays or ramps will be equal to emergency boxes and skilled technicians are equivalent to the health care specialist, who will carry out tests and checks prior to afford any final operation, keeping the “patient” under control before it is back to normal utilization. This paper ratify a valid model for the automotive industry to estimate customer service demand forecasting under variable demand conditions using analogies with patient demand models used for the medical ER

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streets in local residential areas in large cities, real traffic tests for pollutant emissions and fuel consumption have been carried out in Madrid city centre. Emission concentration and car activity were simultaneously measured by a Portable Emissions Measurement System. Real life tests carried out at different times and on different days were performed with a turbo-diesel engine light vehicle equipped with an oxidizer catalyst and using different driving styles with a previously trained driver. The results show that by reducing the speed limit from 50 km h-1 to 30 km h-1, using a normal driving style, the time taken for a given trip does not increase, but fuel consumption and NOx, CO and PM emissions are clearly reduced. Therefore, the main conclusion of this work is that reducing the speed limit in some narrow streets in residential and commercial areas or in a city not only increases pedestrian safety, but also contributes to reducing the environmental impact of motor vehicles and reducing fuel consumption. In addition, there is also a reduction in the greenhouse gas emissions resulting from the combustion of the fuel.

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En este proyecto se desarrolla un sistema electrónico para variar la geometría de un motor de un monoplaza que participa en la competición Fórmula SAE. Fórmula SAE es una competición de diseño de monoplazas para estudiantes, organizado por “Society of Automotive Enginners” (SAE). Este concurso busca la innovación tecnológica de la automoción, así como que estudiantes participen en un trabajo real, en el cual el objetivo es obtener resultados competitivos cumpliendo con una serie de requisitos. La variación de la geometría de un motor en un vehículo permite mejorar el rendimiento del monoplaza consiguiendo elevar el par de potencia del motor. Cualquier mejora en del vehículo en un ámbito de competición puede resultar determinante en el desenlace de la misma. El objetivo del proyecto es realizar esta variación mediante el control de la longitud de los tubos de admisión de aire o “runners” del motor de combustión, empleando un motor lineal paso a paso. A partir de la información obtenida por sensores de revoluciones del motor de combustión y la posición del acelerador se debe controlar la distancia de dichos tubos. Integrando este sistema en el bus CAN del vehículo para que comparta la información medida al resto de módulos. Por todo esto se realiza un estudio aclarando los aspectos generales del objetivo del trabajo, para la comprensión del proyecto a realizar, las posibilidades de realización y adquisición de conocimientos para un mejor desarrollo. Se presenta una solución basada en el control del motor lineal paso a paso mediante el microcontrolador PIC32MX795F512-L. Dispositivo del fabricante Microchip con una arquitectura de 32 bits. Este dispone de un módulo CAN integrado y distintos periféricos que se emplean en la medición de los sensores y actuación sobre el motor paso a paso empleando el driver de Texas Instruments DRV8805. Entonces el trabajo se realiza en dos líneas, una parte software de programación del control del sistema, empleando el software de Microchip MPLABX IDE y otra parte hardware de diseño de una PCB y circuitos acondicionadores para la conexión del microcontrolador, con los sensores, driver, motor paso a paso y bus CAN. El software empleado para la realización de la PCB es Orcad9.2/Layout. Para la evaluación de las medidas obtenidas por los sensores y la comprobación del bus CAN se emplea el kit de desarrollo de Microchip, MCP2515 CAN Bus Monitor Demo Board, que permite ver la información en el bus CAN e introducir tramas al mismo. ABSTRACT. This project develops an electronic system to vary the geometry of a car engine which runs the Formula SAE competition. Formula SAE is a design car competition for students, organized by "Society of Automotive Engineers" (SAE). This competition seeks technological innovation in the automotive industry and brings in students to participate in a real job, in which the objective is to obtain competitive results in compliance with certain requirements. Varying engine’s geometry in a vehicle improves car’s performance raising engine output torque. Any improvement in the vehicle in a competition field can be decisive in the outcome of it. The goal of the project is the variation by controlling the length of the air intake pipe or "runners" in a combustion engine, using a linear motor step. For these, uses the information gathered by speed sensors from the combustion engine and by the throttle position to control the distance of these tubes. This system is integrated in the vehicle CAN bus to share the information with the other modules. For all this is made a study to clarify the general aspects of the project in order to understand the activities developed inside the project, the different options available and also, to acquire knowledge for a better development of the project. The solution is based on linear stepper motor control by the microcontroller PIC32MX795F512-L. Device from manufacturer Microchip with a 32-bit architecture. This module has an integrated CAN various peripherals that are used in measuring the performance of the sensors and drives the stepper motor using Texas Instruments DRV8805 driver. Then the work is done in two lines, first, control programming software system using software MPLABX Microchip IDE and, second, hardware design of a PCB and conditioning circuits for connecting the microcontroller, with sensors, driver stepper motor and CAN bus. The software used to carry out the PCB is Orcad9.2/Layout. For the evaluation of the measurements obtained by the sensors and CAN bus checking is used Microchip development kit, MCP2515 CAN Bus Monitor Demo Board, that allows you to see the information on the CAN bus and enter new frames in the bus.

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Transportation Department, Office of the Assistant Secretary for Policy and International Affairs, Washington, D.C.

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National Highway Traffic Safety Administration, Washington, D.C.

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National Highway Traffic Safety Administration, Washington, D.C.