986 resultados para component engineering
Resumo:
Elektroniikka alalla tuotteet sisältävät yhä enemmän ja enemmän komponentteja joiden käyttöä yrityksen tulee hallita. Viime-aikaiset ympäristömääräykset ja lainsäädännöt ovat lisänneet yritysten painetta hallita käyttämiään komponentteja ja niiden tietoa tehokkaasti. Tässä työssä on tutkittu kolmen palveluntarjoajan tarjoamaa komponentinhallinta palvelua verrattunamahdolliseen talon omaan komponentti-insinööriin. Jotta tutkittuja vaihtoehtoja pystyisi vertailemaan, selvitettiin asiantuntija haastatteluja käyttäen komponenttien hallinnan erityispiirteet. Erityispiirteet yhdessä yrityksen vaatimuksien kanssa muodostivat kriteristön johon tutkittuja palveluja vertaillaan. Kriteeristö koostuu kahdeksasta osasta jotka puolestaan voidaan jaotella kolmeen ryhmään niiden keston ja luonteen mukaan. Neljän kriteerin katsottiin olevan tärkeämpiä kuin toiset, joten niille annettiin suurempi painoarvo palveluja vertailtaessa. Kaikki tutkitut palvelut täyttävät osan kriteereistä mutta mikään ei yksistään tarjoa riittävän kattavaa ratkaisua kohdeyrityksen ongelmiin. Suurimmat ongelmat yrityksellä ovat sisäisessä tiedonkulussa ja tietokantojen ja järjestelmien ylläpidossa ja hallinnassa. Jotta nämä ongelmat saataisiin ratkaistua on yrityksen saatava komponenttiprosessit toimimaan sekä tietokanta ajantasalle. Nämä tavoitteet saavutetaan vain jos yrityksessä on joku hoitamassa asiaa sisältä päin. Tutkitut kolme palvelua eivät tällaista sisäistä resurssia tarjoa vaan keskittyvät vain ulkoapäin tapahtuvaan tiedon välitykseen ja hallinnointiin.
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Työn päätavoitteena on arvioida hissien automaattiovien usein toistuvien asiakaskohtaisesti räätälöityjen tuoteominaisuuksien vakioimisen kannattavuutta KONEen Hyvinkään tehtaalla. Työssä arvioidaan myös massaräätälöinnin periaatteiden soveltuvuutta erikoisovien toimitusprosessiin sekä toimintoperusteisen kustannustiedon tarpeellisuutta tuoteominaisuuksia koskevien päätösten teossa. Asiakaskohtaisesti räätälöity ovituotanto jaettiin kategorioihin, joiden volyymeja ja tuotemuutosten tekoon käytettyjä suunnittelutuntimääriä analysoimalla selvitettiin, muodostaako jokin räätälöitävä tuoteominaisuus riittävän suuren kappalemääräisen kysynnän tai suunnittelutuntien kulutuskohteen, jotta ominaisuuden vakiointi olisi kannattavaa. Ovien kustannusrakenne-esimerkkien avulla selvitettiin myös suunnittelun osuus kokonaiskustannuksista. Analyysien perusteella todettiin asiakaskohtaisten muutosten olevan hajanaisia ja vain muutaman ominaisuuden osalta muodostuvan tarpeeksi suuri ja yhtenäinen kokonaisuus, joka olisi taloudellisesti kannattavaavakioida. Monimutkaisen tuoterakenteen vuoksi massaräätälöinnin opit eivät ole suoraan kopioitavissa hissien erikoisovien toimitusprosessiin, mutta sisältävät hyödyllisiä toimintamalleja prosessin kehittämiseen.
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This paper develops a novel full analytic model for vibration analysis of solid-state electronic components. The model is just as accurate as finite element models and numerically light enough to permit for quick design trade-offs and statistical analysis. The paper shows the development of the model, comparison to finite elements and an application to a common engineering problem. A gull-wing flat pack component was selected as the benchmark test case, although the presented methodology is applicable to a wide range of component packages. Results showed very good agreement between the presented method and finite elements and demonstrated the usefulness of the method in how to use standard test data for a general application. © 2013 Elsevier Ltd.
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A simple and effective demonstration to help students comprehend phase diagrams and understand phase equilibria and transformations is created using common chemical solvents available in the laboratory. Common misconceptions surrounding phase diagram operations, such as components versus phases, reversibility of phase transformations, and the lever rule are addressed. Three different binary liquid mixtures of varying compatibility create contrastive phase equilibrium cases, where colorful dyes selectively dissolved in each of corresponding phases allow for quick and unambiguous perceptions of solubility limit and phase transformations. Direct feedback and test scores from a group of students show evidence of the effectiveness of the visual and active teaching tool.
Resumo:
Over the past years, component-based software engineering has become an established paradigm in the area of complex software intensive systems. However, many techniques for analyzing these systems for critical properties currently do not make use of the component orientation. In particular, safety analysis of component-based systems is an open field of research. In this chapter we investigate the problems arising and define a set of requirements that apply when adapting the analysis of safety properties to a component-based software engineering process. Based on these requirements some important component-oriented safety evaluation approaches are examined and compared.
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Dissertação apresentada para a obtenção do Grau de Doutor em Informática pela Universidade Nova de Lisboa, Faculdade de Ciências e Tecnologia
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State-of-the-art production technologies for conjugate vaccines are complex, multi-step processes. An alternative approach to produce glycoconjugates is based on the bacterial N-linked protein glycosylation system first described in Campylobacter jejuni. The C. jejuni N-glycosylation system has been successfully transferred into Escherichia coli, enabling in vivo production of customized recombinant glycoproteins. However, some antigenic bacterial cell surface polysaccharides, like the Vi antigen of Salmonella enterica serovar Typhi, have not been reported to be accessible to the bacterial oligosaccharyltransferase PglB, hence hamper development of novel conjugate vaccines against typhoid fever. In this report, Vi-like polysaccharide structures that can be transferred by PglB were evaluated as typhoid vaccine components. A polysaccharide fulfilling these requirements was found in Escherichia coli serovar O121. Inactivation of the E. coli O121 O antigen cluster encoded gene wbqG resulted in expression of O polysaccharides reactive with antibodies raised against the Vi antigen. The structure of the recombinantly expressed mutant O polysaccharide was elucidated using a novel HPLC and mass spectrometry based method for purified undecaprenyl pyrophosphate (Und-PP) linked glycans, and the presence of epitopes also found in the Vi antigen was confirmed. The mutant O antigen structure was transferred to acceptor proteins using the bacterial N-glycosylation system, and immunogenicity of the resulting conjugates was evaluated in mice. The conjugate-induced antibodies reacted in an enzyme-linked immunosorbent assay with E. coli O121 LPS. One animal developed a significant rise in serum immunoglobulin anti-Vi titer upon immunization.
Resumo:
The curriculum of the Bucknell University Chemical Engineering Department includes a required senior year capstone course titled Process Engineering, with an emphasis on process design. For the past ten years library research has been a significant component of the coursework, and students working in teams meet with the librarian throughout the semester to explore a wide variety of information resources required for their project. The assignment has been the same from 1989 to 1999. Teams of students are responsible for designing a safe, efficient, and profitable process for the dehydrogenation of ethylbenzene to styrene monomer. A series of written reports on their chosen process design is a significant course outcome. While the assignment and the specific chemical technology have not changed radically in the past decade, the process of research and discovery has evolved considerably. This paper describes the solutions offered in 1989 to meet the information needs of the chemical engineering students at Bucknell University, and the evolution in research brought about by online databases, electronic journals, and the Internet, making the process of discovery a completely different experience in 1999.
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Report published in the Proceedings of the National Conference on "Education and Research in the Information Society", Plovdiv, May, 2015
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The project aims to gather an understanding of additive manufacturing and other manufacturing 4.0 techniques with an eyesight for industrialization. First the internal material anisotropy of elements created with the most economically feasible FEM technique was established. An understanding of the main drivers for variability for AM was portrayed, with the focus on achieving material internal isotropy. Subsequently, a technique for deposition parameter optimization was presented, further procedure testing was performed following other polymeric materials and composites. A replicability assessment by means of the use of technology 4.0 was proposed, and subsequent industry findings gathered the ultimate need of developing a process that demonstrate how to re-engineer designs in order to show the best results with AM processing. The latest study aims to apply the Industrial Design and Structure Method (IDES) and applying all the knowledge previously stacked into fully reengineer a product with focus of applying tools from 4.0 era, from product feasibility studies, until CAE – FEM analysis and CAM – DfAM. These results would help in making AM and FDM processes a viable option to be combined with composites technologies to achieve a reliable, cost-effective manufacturing method that could also be used for mass market, industry applications.
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The canonical representation of speech constitutes a perfect reconstruction (PR) analysis-synthesis system. Its parameters are the autoregressive (AR) model coefficients, the pitch period and the voiced and unvoiced components of the excitation represented as transform coefficients. Each set of parameters may be operated on independently. A time-frequency unvoiced excitation (TFUNEX) model is proposed that has high time resolution and selective frequency resolution. Improved time-frequency fit is obtained by using for antialiasing cancellation the clustering of pitch-synchronous transform tracks defined in the modulation transform domain. The TFUNEX model delivers high-quality speech while compressing the unvoiced excitation representation about 13 times over its raw transform coefficient representation for wideband speech.
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Force measurement in hypervelocity expansion tubes is not possible using conventional techniques. The stress wave force balance technique can be applied in expansion tubes to measure forces despite the short test times involved. This paper presents a new calibration technique for multiple-component stress wave force balances where an impulse response created using a load distribution is required and no orthogonal surfaces on the model exist.. This new technique relies on the tensorial superposition of single-component impulse responses analogous to the vectorial superposition of the calibration loads. The example presented here is that of a scale model of the Mars Pathfinder, but the technique is applicable to any geometry and may be useful for cases where orthogonal loads cannot be applied.
Resumo:
PHWAT is a new model that couples a geochemical reaction model (PHREEQC-2) with a density-dependent groundwater flow and solute transport model (SEAWAT) using the split-operator approach. PHWAT was developed to simulate multi-component reactive transport in variable density groundwater flow. Fluid density in PHWAT depends not on only the concentration of a single species as in SEAWAT, but also the concentrations of other dissolved chemicals that can be subject to reactive processes. Simulation results of PHWAT and PHREEQC-2 were compared in their predictions of effluent concentration from a column experiment. Both models produced identical results, showing that PHWAT has correctly coupled the sub-packages. PHWAT was then applied to the simulation of a tank experiment in which seawater intrusion was accompanied by cation exchange. The density dependence of the intrusion and the snow-plough effect in the breakthrough curves were reflected in the model simulations, which were in good agreement with the measured breakthrough data. Comparison simulations that, in turn, excluded density effects and reactions allowed us to quantify the marked effect of ignoring these processes. Next, we explored numerical issues involved in the practical application of PHWAT using the example of a dense plume flowing into a tank containing fresh water. It was shown that PHWAT could model physically unstable flow and that numerical instabilities were suppressed. Physical instability developed in the model in accordance with the increase of the modified Rayleigh number for density-dependent flow, in agreement with previous research. (c) 2004 Elsevier Ltd. All rights reserved.