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A micromachined intensity-modulated fiber optic sensor for strain measurements: working principle and static calibration

机译:用于应变测量的微机械强度调制光纤传感器:工作原理和静态校准

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This paper describes an intensity-modulated fiber optic sensor for strain measurements. The sensing element is a polydimetilsiloxane (PDMS) micro-diffraction grating, 15 mm long, 2 mm thick, with channels 150 μm wide, spaced apart 200 μm. The working principle of the sensor can be summarized as follows: when the sensing element is strained perpendicularly to the grating plane, light passing through the grating undergoes a modulation caused by the phenomenon of diffraction. Since the grating is interposed between a laser source and a fiber optic, the coupled radiation intensity between these two optical elements can be considered as an indirect measure of strain. A static calibration of the measuring system has been performed, showing that the device, with measuring range of about 0.04, is capable to discriminate strain of 0.005 and it presents a sensitivity increase with strain in the whole range of measurements.
机译:本文介绍了一种强度调制的用于应变测量的光纤传感器。传感元件是聚二醚硅氧烷(PDMS)微衍射光栅,15mm长,2mm厚,通道150μm宽,间隔开200μm。传感器的工作原理可以概括如下:当传感元件垂直于光栅平面紧张时,通过光栅的光经历由衍射现象引起的调制。由于光栅插入在激光源和光纤之间,因此这两个光学元件之间的耦合辐射强度可以被认为是间接测量的应变。已经进行了测量系统的静态校准,表明该装置具有约0.04的测量范围,能够区分0.005的菌株,并且它在整个测量范围内具有应变的敏感性增加。

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