5,657 research outputs found

    Design, fabrication and test of integrated micro-scale vibration based electromagnetic generator

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    This paper discusses the design, fabrication and testing of electromagnetic microgenerators. Three different designs of power generators are partially microfabricated and assembled. Prototype A having a wire-wound copper coil, Prototype B, an electrodeposited copper coil both on a Deep Reactive Ion etched (DRIE) silicon, beam and paddle. Prototype C uses moving NdFeB magnets in between two microfabricated coils. The integrated coil, paddle and beam were fabricated using standard micro-Electro-Mechanical Systems (MEMS) processing techniques. For Prototype A, the maximum measured power output was 148 nW at 8.08 kHz resonant frequency and 3.9 m/s2 acceleration. For prototype B, the microgenerator gave a maximum load power of 23 nW for an acceleration of 9.8 m/s2, at a resonant frequency of 9.83 kHz. This is a substantial improvement in power generated over other microfabricated silicon based generators reported in literature. This generator has a volume of 0.1 cm3 which is lowest of all the silicon based microfabricated electromagnetic power generators reported. To verify the potential of integrated coils in electromagnetic generators, Prototype C was assembled. This generated a maximum load power of 5

    An investigation of PDMS structures for optimized ferroelectret performance

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    This paper reports the ANSYS simulation and fabrication processes for optimising PDMS ferroelectret performance. The proposed model extends the previously published analytical models and compares this with simulation of individual void geometry. The ferroelectret material is fabricated from PDMS using 3D-printed plastic moulds. The analytical model and Ansys simulation results predict the variation in performance of the PDMS ferroelectret with the different void geometry and surface charge density. The theoretical maximum piezoelectric coefficient d33 achieved was about 220 pC/N. The experimental maximum d33 obtained was 172 pC/N

    Novel thick-foam ferroelectret with engineered voids for energy harvesting applications

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    This work reports a novel thick-foam ferroelectret which is designed and engineered for energy harvesting applications. We fabricated this ferroelectret foam by mixing a chemical blowing agent with a polymer solution, then used heat treatment to activate the agent and create voids in the polymer foam. The dimensions of the foam, the density and size of voids can be well controlled in the fabrication process. Therefore, this ferroelectret can be engineered into optimized structure for energy harvesting applications

    Ressenyes

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    Index de les obres ressenyades: Basil HATIM; Ian MASON, The Translator as Communicator. London and New York: Routledge, 199

    Designing a foreign language course for trainee translators

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    Language learning for translators, like any other learning process, can only be discussed meaningfully in context. The general context of the proposal presented in this chapter is language learning as a part of an undergraduate degree designed to train professional translators. The main difficulty in designing this kind of syllabus is to combine very specific learning objectives at each level within a meaningful, communicative, discourse approach. This paper proposes a three-stage process to design a syllabus for different learning situations: 1) A translation-based pre-syllabus; 2) A translation-oriented, discourse-based pre-syllabus; 3) A genre and task-based syllabus integrating stages one and two.L'aprenentatge de llengües per part dels traductors, com qualsevol altre procés d'aprenentatge, només es pot abordar d'una manera vàlida en context. El context general de la proposta presentada en aquest capítol és l'aprenentatge de llengües com a part d'uns estudis universitaris pensats per preparar traductors professionals. En dissenyar aquesta mena de programa d'estudis, la principal dificultat és conjuminar uns objectius didàctics molt específics en cada nivell amb un enfocament discursiu, comunicatiu i significatiu vàlid. Aquest article proposa un procés en tres fases per a dissenyar un programa per a situacions d'aprenentatge diferents: 1) un preprograma basat en la traducció; 2) un preprograma basat en el discurs i orientat vers la traducció, i 3) un programa basat en gènere i objectiu que integri les fases 1 i 2

    Thick-film Piezoelectric Vibration Harvesting –A HUMS Application

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    A vibration energy scavenger, manufactured entirely by thick-film construction, has been developed to power autonomous subsystems in an embedded health and useage system. The device is constrained to a 2mm thickness and has been designed for a specific helicopter application. The resulting power output is capable of powering an ‘off-the-shelf’ microcontroller based system

    Strategies for increasing the operating frequency range of vibration energy harvesters: a review

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    This paper reviews possible strategies to increase the operational frequency range of vibration-based micro-generators. Most vibration-based micro-generators are spring-mass-damper systems which generate maximum power when the resonant frequency of the generator matches the frequency of the ambient vibration. Any difference between these two frequencies can result in a significant decrease in generated power. This is a fundamental limitation of resonant vibration generators which restricts their capability in real applications. Possible solutions include the periodic tuning of the resonant frequency of the generator so that it matches the frequency of the ambient vibration at all times or widening the bandwidth of the generator. Periodic tuning can be achieved using mechanical or electrical methods. Bandwidth widening can be achieved using a generator array, a mechanical stopper, non-linear (e.g. magnetic) springs or bi-stable structures. Tuning methods can be classified into intermittent tuning (power is consumed periodically to tune the device) and continuous tuning (the tuning mechanism is continuously powered). This paper presents a comprehensive review of the principles and operating strategies for increasing the operating frequency range of vibration-based micro-generators presented in the literature to date. The advantages and disadvantages of each strategy are evaluated and conclusions are drawn regarding the relevant merits of each approach

    A new 2-D model of a thin annular disk using a modified assumption

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    The work describes an improved 2-D model for a thin annulus by using a modified assumption with regard to coupled vibration. With this approach, the impedance spectrum and displacements due to radial modes, both in radial and thickness direction of a thin ring, are obtained. Bending displacement is investigated by finite element analysis (FEA) and matches our model. The bending in the thickness direction is coupled to radial modes and shows several node circles in the high radial overtone frequency range. The model is validated by FEA with excellent agreement between the new theory and FEA result
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