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Non-contact torsion transducer based on the measurement of Moire patterns using plastic optical fibers

机译:基于使用塑料光纤测量莫尔条纹的非接触式扭矩传感器

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摘要

An angular and displacement sensor that uses a polymer optical fiber and Moire patterns is demonstrated. Moire fringes are generated using two transparent superimposed planar gratings placed in front of an optical mirror. Moire patterns with periods ranging from 0.4 to 2 mm have been obtained in this way with lmm-diameter plastic optical fibers for torsion angles ranging from 10° to 20° have been compared with theoretical calculations and a good agreement has been confirmed. Measuring the period length and the number of periods, both the relative angle between the gratings and the displacement of the fiber with respect to the mirror are obtained. With this technique very low angles can be measured with a very high resolution. The sensor principle has been successfully checked in the laboratory. Finally, the effect of employing different plastic fibers is also discussed. Besides, other possible applications of this measurement technique are presented and discussed.
机译:演示了使用聚合物光纤和莫尔条纹的角度和位移传感器。莫尔条纹是使用放置在光学镜前面的两个透明叠加平面光栅生成的。这样,用直径为1mm的塑料光纤以10°至20°的扭转角获得了周期范围为0.4至2mm的莫尔图案,并与理论计算进行了比较,并且已经确认了良好的一致性。通过测量周期长度和周期数,可以获得光栅之间的相对角度和光纤相对于反射镜的位移。利用这种技术,可以以非常高的分辨率测量非常小的角度。传感器原理已在实验室中成功检查。最后,还讨论了使用不同塑料纤维的效果。此外,提出并讨论了该测量技术的其他可能的应用。

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