955 resultados para Engrenagens - Processos de fabricação
Resumo:
Sistemas produtivos industriais podem combinar, em células de manufatura, diferentes características de automação de processos permitindo interfaceamento e possibilitando a flexibilização e otimização da manufatura. Nos processos de fabricação, as dificuldades para a execução de processos de usinagem convencional ou mesmo através de comando numérico, quando se dispõe de máquinas adequadas para a fabricação de peças de geometrias complexas, podem limitar a criatividade, bem como dificultar o desenvolvimento do processo produtivo de forma otimizada. As dificuldades encontradas vão desde fixação das peças, necessidades de dispositivos especiais, restrições nos volumes de trabalho de máquinas CNC e mesmo a geração de trajetórias complexas para máquinas com limitações de eixos. Este trabalho propõe uma metodologia alternativa para usinagem, especialmente fresamento, com desenvolvimento de um algoritmo capaz de, através da utilização de recursos de sistemas CAD/CAM, traduzir arquivos gráficos para uma linguagem de programação utilizada em robôs. Na aplicação utilizam-se recursos dos sistemas CAD/CAM para gerar, numa primeira etapa, o código de programação para máquinas-ferramenta de comando numérico e posterior adaptação, para aplicação em sistemas robóticos. Informações de caminhos de ferramenta para usinagem em máquinas CNC são convertidos, através de uma interface computacional, em trajetórias a serem seguidas por uma ferramenta guiada por um manipulador de robô industrial. Os parâmetros de processo são também adequados as restrições dos sistemas robotizados. A viabilidade do sistema proposto é confirmada através de testes realizados em modelos de superfícies complexas, onde o objetivo do referido trabalho foi alcançado.
Resumo:
A concepção dos sistemas eletrônicos previstos para o futuro próximo implica em uma atividade multidisciplinar, a qual demanda, para o projeto de sistemas eletrônicos, o uso de métodos e técnicas provenientes de diversos domínios do conhecimento humano. Esses domínios podem variar desde a especificação de aplicações, até a realização física de circuitos integrados. A constante evolução dos processos de fabricação de circuitos integrados permite a criação de circuitos bastante complexos, seja em relação ao número de componentes eletrônicos e de suas inter-relações, seja em relação à heterogeneidade funcional presente nas aplicações alvo, previstas para estes sistemas. Para os próximos anos está prevista a possibilidade da inclusão de mais de um bilhão de transistores em uma única pastilha de silício, inaugurando a era da “gigaescala”. Devido a essa situação, a comunidade científica vem demonstrando preocupação em relação às novas técnicas que se fazem necessárias para a concepção dos “gigacircuitos”. Essas técnicas envolvem o uso de diferentes níveis de abstração na concepção e análise das funcionalidades da aplicação alvo, além de abordagens para explorar o grande espaço de busca, inerente à disponibilidade de um grande número de componentes para a implementação da arquitetura alvo, a qual deve ser otimizada para as restrições de projeto. As idéias apresentadas nesse trabalho vão de encontro à necessidade por novas técnicas para a concepção de circuitos eletrônicos complexos. Este trabalho procura contribuir para que esta classe de circuitos possa tornar-se realidade em um futuro próximo, avalizando a disponibilidade de informação, de entretenimento e de serviços para a sociedade. Para tanto, um novo método é proposto, onde um fluxo de projeto considera as ferramentas necessárias para a exploração do espaço de busca em componentes de processamento e de comunicação, visando à sua otimização. As ferramentas seguem os princípios do projeto baseado em plataformas, onde componentes podem ser reutilizadas para aplicações da mesma classe, em diferentes níveis de abstração. Além disso, os princípios da especificação baseada em interface são considerados, visando explicitar a especificação de funcionalidades heterogêneas para componentes arquiteturais, bem como permitir a avaliação dinâmica do comportamento destes.
Resumo:
Parafusos utilizados para fixação de partes submetidos a carregamentos cíclicos, inerentemente estão sujeitos à falhas por fadiga. O presente trabalho está apoiado no estudo do conjunto carcaça/corrediça de um compressor fixado por parafusos prisioneiros - ISO M24x3. Os prisioneiros que fixam o flange da corrediça falham prematuramente por fadiga. Assim, este trabalho tem como objetivos desenvolver uma metodologia para otimizar o desempenho em fadiga do conjunto parafusado. Numa primeira fase foram realizados ensaios em parafusos de mesmas dimensões, porém de classes e processos de fabricação diferentes, para poder-se avaliar o melhor processo de fabricação no desempenho em fadiga. Observou-se que o processo de laminação da rosca seguido de tratamento térmico é o mais adequado para o caso em estudo. Em uma etapa seguinte, instrumentaram-se os prisioneiros utilizando strain gauges com os componentes em condições de serviço, para avaliar a deformação dos parafusos desde a aplicação do torque de aperto durante a montagem e acionamento do compressor até a operação em sua carga máxima. Observou-se que, apesar dos parafusos estarem submetidos à cargas dentro do regime de segurança, apresentam dispersão da pré-carga e baixa protensão de aperto. Posteriormente, foram realizados outros ensaios em laboratório com dispositivos projetados especialmente para reconstruir o flange do compressor em estudo. O dispositivo procurou traçar as características dimensionais e materiais semelhantes do conjunto carcaça/corrediça. Tem-se como conclusão principal deste trabalho, que na configuração atual de união do flange com a carcaça, resulta num baixo índice de aperto que é verificado através das cargas máximas que são transferidas diretamente ao parafuso. Por fim, verificou-se que aumentando o comprimento do parafuso através da inserção de uma bucha extensora, aumenta a vida em fadiga dos componentes de união.
Resumo:
O conhecimento da física de semicondutores foi usado para desenvolver e otimizar um sensor ótico de silício capaz de determinar com precisão a posição bidimensional de incidência de um feixe de luz em sua superfície. O sensor usa o efeito de fototensão lateral para gerar um sinal elétrico de saída que é função da posição de incidência da luz. Tecnologia planar do silício foi usada na fabricação do dispositivo, incluindo implantação iônica, difusão, fotolitografia, deposição de filmes metálicos e crescimento de dielétricos. A caracterização elétrica do sensor inclui medidas estáticas, com a distribuição de portadores em regime estacionário, medidas dinâmicas, onde é analisado o transiente do sinal elétrico e medidas espectroscópicas para analisar a resposta do sensor em função do comprimento de onda da luz incidente. Simulações dos processos de fabricação, parâmetros dos passos tecnológicos, distribuição dos portadores e do potencial elétrico bidimensional no sensor foram usadas para a otimização das características do sensor.
Resumo:
A model of a solar oven with a reflective surface composed of two mirror segments is presented, constituting a two semi-parabolic surfaces made of fiberglass, applied on a ceramic mold, intended to be used in residential and commercial cooking. The reflective surface of the semi-parable is obtained with the use of multiple plain segments of 2 mm wide mirrors. The semi-parabolic structure has visible movements that are comparable to that of the sun. The technical details of the manufacturing and assembling processes will be presented with an analysis of the viability of thermal, economic, and materials of such prototype. This prototype has important social implications and primordial aspects, which combats the ecological damages caused by the wide-scale use of firewood during cooking. It has been demonstrated that the solar oven has the capacity to cook simultaneous two meals distinct for a family of four
Resumo:
An cylinder-parabolic solar concentrator is presented to produce steam for different applications. This prototype was built in glass fiber with dimensions that follow a study of optimization of parameters inherent in the optical reflection of sunlight by the surface of reflection and absorption of the same by tubing that leads the fluid of work. The surface of the concentrator of 2.24 m² has been covered by layers of mirror with 1.0 m of lenght and 2.0 cm wide. The absorb tubing consists of a copper tube diameter equal to 28 mm. The concentrator is moving to follow the apparent motion of the sun. It will be presented the processes of manufacturing and assembly of the concentrator proposed, which has as main characteristics the facilities construction and assembly, in addition to reduced cost. Will be presented data from tests performed to produce steam setting up some parameters that diagnose the efficiency of the concentrator. It will be demonstrated the viabilities thermal, economic and of materials of the proposed system.The maximum temperature achieved in the vacuum tube absorber was 232.1°C and average temperature for 1 hour interval was 171.5°C, obtained in a test with automation. The maximum temperature achieved in the output of water was 197.7°C for a temperature of 200.0°C in the absorber tube. The best average result of the water exit temperature to interval of 1 hour was 170.2°C for a temperature of 171.2°C, in the absorber tube, obtained in test with automation. Water exit mean temperatures were always above of the water steaming temperature. The concentrator present a useful efficiency of 38% and a production cost of approximately R$ 450,00 ( $ 160.34)
Resumo:
The manufacture of prostheses for lower limb amputees (transfemural and transtibial) requires the preparation of a cartridge with appropriate and custom fit to the profile of each patient. The traditional process to the patients, mainly in public hospitals in Brazil, begins with the completion of a form where types of equipment, plugins, measures, levels of amputation etc. are identified. Currently, such work is carried out manually using a common metric tape and caliper of wood to take the measures of the stump, featuring a very rudimentary, and with a high degree of uncertainty geometry of the final product. To address this problem, it was necessary to act in two simultaneously and correlated directions. Originally, it was developed an integrated tool for viewing 3D CAD for transfemoral types of prostheses and transtibial called OrtoCAD I. At the same time, it was necessary to design and build a reader Mechanical equipment (sort of three-dimensional scanner simplified) able to obtain, automatically and with accuracy, the geometric information of either of the stump or the healthy leg. The methodology includes the application of concepts of reverse engineering to computationally generate the representation of the stump and/or the reverse image of the healthy member. The materials used in the manufacturing of prostheses nor always obey to a technical scientific criteria, because, if by one way it meets the criteria of resistance, by the other, it brings serious problems mainly due to excess of weight. This causes to the user various disorders due to lack of conformity. That problem was addressed with the creation of a hybrid composite material for the manufacture of cartridges of prostheses. Using the Reader Fitter and OrtoCAD, the new composite material, which aggregates the mechanical properties of strength and rigidity on important parameters such as low weight and low cost, it can be defined in its better way. Besides, it brings a reduction of up steps in the current processes of manufacturing or even the feasibility of using new processes, in the industries, in order to obtain the prostheses. In this sense, the hybridization of the composite with the combination of natural and synthetic fibers can be a viable solution to the challenges offered above
Resumo:
Due to advances in the manufacturing process of orthopedic prostheses, the need for better quality shape reading techniques (i.e. with less uncertainty) of the residual limb of amputees became a challenge. To overcome these problems means to be able in obtaining accurate geometry information of the limb and, consequently, better manufacturing processes of both transfemural and transtibial prosthetic sockets. The key point for this task is to customize these readings trying to be as faithful as possible to the real profile of each patient. Within this context, firstly two prototype versions (α and β) of a 3D mechanical scanner for reading residual limbs shape based on reverse engineering techniques were designed. Prototype β is an improved version of prototype α, despite remaining working in analogical mode. Both prototypes are capable of producing a CAD representation of the limb via appropriated graphical sheets and were conceived to work purely by mechanical means. The first results were encouraging as they were able to achieve a great decrease concerning the degree of uncertainty of measurements when compared to traditional methods that are very inaccurate and outdated. For instance, it's not unusual to see these archaic methods in action by making use of ordinary home kind measure-tapes for exploring the limb's shape. Although prototype β improved the readings, it still required someone to input the plotted points (i.e. those marked in disk shape graphical sheets) to an academic CAD software called OrtoCAD. This task is performed by manual typing which is time consuming and carries very limited reliability. Furthermore, the number of coordinates obtained from the purely mechanical system is limited to sub-divisions of the graphical sheet (it records a point every 10 degrees with a resolution of one millimeter). These drawbacks were overcome by designing the second release of prototype β in which it was developed an electronic variation of the reading table components now capable of performing an automatic reading (i.e. no human intervention in digital mode). An interface software (i.e. drive) was built to facilitate data transfer. Much better results were obtained meaning less degree of uncertainty (it records a point every 2 degrees with a resolution of 1/10 mm). Additionally, it was proposed an algorithm to convert the CAD geometry, used by OrtoCAD, to an appropriate format and enabling the use of rapid prototyping equipment aiming future automation of the manufacturing process of prosthetic sockets.
Resumo:
It presents a solar collector to be used in a system for heating water for bathing, whose main characteristics are its low cost and easy manufacturing and assembly. The absorbing surface of the collector is formed by an aluminum plate with eight flaps where they lodge PVC pipes. The catchment area of solar radiation corresponds to 1.3 meters. The collector box was made of wood, is covered by transparent glass and thermal insulation of tire chips and expanded polystyrene (EPS). Absorber tubes were connected in parallel through the use of PVC fittings and fixed to the plate by the use of metal poles and rivets. The entire absorber received paint flat black for better absorption of sunlight. The system worked on a thermosiphon assembly and absorber of the collector has been tested in two configurations: with the tubes facing up, directly exposed to the impact of sunlight and facing down, exchanging heat with the plate by conduction. It was determined the most efficient configuration for the correct purpose. The solar collector was connected to a thermal reservoir, also alternative, low-cost forming the system of solar water heating. We evaluated thermal parameters that proved the viability of the heating system studied
Resumo:
It presents a solar collector to be used in a system for heating water for bathing, whose main characteristics are low cost and easy manufacturing and assembly. The system operates under natural convection or thermosiphon. The absorbing surface of the collector is formed by twelve PVC pipes of 25 mm outside diameter connected in parallel via connections in T of the same material. The tubes were covered with absorbing fins made with recycled aluminum cans. We studied eight settings between absorber plate, thermal insulating EPS boards and thermal reservoirs 150 and 200 liters. It was determined the most efficient configuration for the correct purpose. We evaluated thermal parameters that proved the viability of the heating system studied
Resumo:
The technical and economic viability of solar heating for swimming pools is unquestionable, besides there it replaces the high costs and environmental impacts of conventional supply of energy, and it improves an optimization in the pool heating uses. This work applies the principles of the greenhouse effect: advanced thermodynamics, heat retention and equalization of temperature, to optimize the solar heating equipment, reducing the area required by collectors as much as 40% (still estimated value) for commercial collectors, with minor architectural and aesthetic impacts on the environment. It features a solar heating alternative in pools, whose main characteristics: low cost, simplicity in manufacturing and assembly and a faster heating. The system consists of two collectors spiral hoses made of polyethylene with a hundred meters each, and working on a forced flow, with only one pass of the working fluid inside the coils, and is used to pump itself treatment of pool water to obtain the desired flow. One of the collectors will be exposed to direct solar radiation, and the other will be covered by a glass slide and closed laterally, so providing the greenhouse effect. The equipment will be installed in parallel and simultaneously exposed to the sun in order to obtain comparative data on their effectiveness. Will be presented results of thermal tests for this the two cases, with and without transparent cover. Will be demonstrated, by comparison, the thermal, economic and material feasibility of these systems for heating swimming pools.
Resumo:
It is presented a solar cooker made with a parabolic reflector composed by a composite material. For this purpose, it was utilized a cast concrete with a parabolic profile obtained by means of modeling. It will be demonstrated the manufacturing process and settings, as well as tests results, in order to determine the contact temperature and cooking time of some foods. This solar cooker presents the following main characteristics: the concentration method, low cost and easy manufacturing process. It was performed by employing recycled materials such as cement, plaster, crushed polystyrene and wheels. The captation area measures 1 square meter and its parabole was covered with a mirrors measuring 25 cm2. A temperature higher than 650°C was obtained. Furthermore, it has been demonstrated that the cooking viability for several type of foods such as beans, potatoes, rice, yams and pasta can be used in two meals for a family of four. In addition, the advantages of this cooker were analysed in comparison with others described in literature as well as those operating on gas. Especially in Northeast of Brazil, where there is a potential for solar energy, this prototype is an important tool, because it avoids not only desertification, but also pollutants from burning firewoods which cause ecological imbalance
Resumo:
It presents a direct exposure to solar dryer for drying of food, built from a scrap of luminaire. The dryer works under direct exposure to natural circulation. Will be presented their methods of construction and assembly of that dryer that allows the reuse of materials, constituting a environmentally correct recycling dryer main features proposed are its low cost and simple manufacturing processes and assembly. Test results will be presented for the drying of foods that prove the feasibility and cost of thermal solar drying alternative system proposed. It is worth emphasizing the social importance that such application is for the most excluded since the value-added fruits, vegetables, legumes and other foods in relation to fresh may represent an option of income generation. It will also study the transformation of some of dry food meal and demonstrated that the drying times for the foods tested are competitive and sometimes pointed in the solar literature
Resumo:
It presents a new type of insulation for ductwork hot water, which can be used in solar systems for heating water, which consists of a composite of different compositions based on plaster, cement and EPS ground, palm and water. This composite has as its main features easy assembly and manufacturing processes and low cost. Comparative results will be presented on the tests of materials and thermal tubes proposed. Four formulations were used to manufacture tubes with three diameters 70, 65 and 42mm. It was also tested conventionally used for elastomeric foam insulation to 110 ° C, for a comparative analysis with the composite pipe insulator proposed. It will demonstrate that the cost of manufacturing of such tubes is competitive with alternative elastomeric foam tested, but results of the composite tube to the temperature range studied, are lower. Another drawback of the composite insulator tube is its large mass. It would be important to test such a composite for greater levels of temperature to a diagnostic technique competitive with conventionally used insulators. A positive factor of using the proposed composite-tube would be the recycling of EPS so damaging to the environment, representing an environmentally friendly application of science
Resumo:
Presents a composite formed by orthophthalic resin and fiber loading of carnauba straw. The fibers were first dried in direct sun exposure and subsequently ground into fodder for the reduction in size. Various formulations of the composite were preliminarily tested by choosing the one presenting the best processability in applying the mold. The composite produced is used for the manufacture of a parabolic surface subsequently coated with mirror segments, flexible plastic, for reflecting the solar rays incident on it. The reflective parable represents the main element of the solar cooker that works with the concentration of sunlight and has dimensions of 1.14 m in diameter and area of 1.0 m². Manufacturing processes and assembly of solar cooker concentration produced are presented. The results of tests for cooking and baking various foods, including rice, pasta, beans, cake, cassava, shrimp, beef, breaded demonstrating the competitiveness of solar cooker studied with other stoves already manufactured and tested in Brazil are presented and in the world. It was also demonstrated the feasibility of the proposed composite for Prototypes manufacture of solar and other structures that do not require great efforts resistance