7 resultados para CAVITIES

em Archivo Digital para la Docencia y la Investigación - Repositorio Institucional de la Universidad del País Vasco


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In many micro- and nano-scale technological applications high sensitivity displacement sensors are needed, especially in ultraprecision metrology and manufacturing. In this work a new way of sensing displacement based on radio frequency resonant cavities is presented and experimentally demonstrated using a first laboratory prototype. The principle of operation of the new transducer is summarized and tested. Furthermore, an electronic interface that can be used together with the displacement transducer is designed and proved. It has been experimentally demonstrated that very high and linear sensitivity characteristic curves, in the range of some kHz/nm; are easily obtainable using this kind of transducer when it is combined with a laboratory network analyzer. In order to replace a network analyzer and provide a more affordable, self-contained, compact solution, an electronic interface has been designed, preserving as much as possible the excellent performance of the transducer, and turning it into a true standalone positioning sensor. The results obtained using the transducer together with a first prototype of the electronic interface built with cheap discrete elements show that positioning accuracies in the micrometer range are obtainable using this cost-effective solution. Better accuracies would also be attainable but using more involved and costly electronics interfaces.

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6 p. Paper of the 17th Conference on Sensors and Their Applications held in Dubrovnik, Croatia. Sep 16-18, 2013

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[Es]Este documento muestra un análisis de los requisitos para el micro-fresado de un molde. Es importante remarcar que este molde será usado para producir micro-lentes. La herramienta realizará una matriz de cavidades en una pieza cilíndrica y el tamaño de estas coincidirá con el tamaño de las microlentes. Este proyecto será programado mediante el software de MATLAB. El objetivo es calcular tanto la trayectoria de la herramienta, como su inclinación, velocidad, aceleración y jerk. Además este programa calculará las fuerzas de corte en cada instante del mecanizado. Por último, cabe mencionar que los resultados de este proyecto darán soporte a otros proyectos.

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Abstract de congreso: Póster presentado en 12th International Conference on Materials Chemistry (MC12), 20 - 23 July 2015, York, United Kingdom