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Fiber optic Fabry-Perot pressure sensor based on lensed fiber and polymeric diaphragm

机译:基于透镜纤维和聚合物膜片的光纤Fabry-Perot压力传感器

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A novel optical fiber-based Fabry-Perot pressure sensor fabricated with a lensed fiber and a polymeric diaphragm is proposed for application in the medical field. The lensed fiber was constructed at the tip of a single mode fiber, for use with a deformable flexible polymeric diaphragm. The sensor can reduce the loss of optical power of the back-reflected light, and the flexible diaphragm can increase deformation sensitivity. The lensed fiber was fabricated from a careless silica fiber attached to a single mode fiber by splicing using a fusion splicing method, and arc discharge. The polymeric diaphragm consists of layered PDMS, parylene and gold mirror. The intermediate parylene layer is helpful to prevent cracking of the mirror when the diaphragm is deformed by external pressure. The polymeric diaphragm was fabricated by MEMS processing including spin-coating, vaporization, and sputtering. The deformation of the polymeric diaphragm was evaluated through numerical simulation. The change in cavity length between the lensed fiber and the polymeric diaphragm with external pressure was estimated using the interference generated from two reflected lights. Experimental results showed that the proposed pressure sensor has a sensitivity of 1.41 mu m/kPa over a pressure range from 0 kPa to 4 kPa with good linearity, and its minimum detection resolution is less than 0.03 kPa. The proposed sensor could be used for reliable low-pressure measurement, especially in medical applications. (C) 2015 Elsevier B.V. All rights reserved.
机译:提出了一种新颖的基于光纤的法布里-珀罗压力传感器,该透镜由透镜光纤和聚合物膜片制成,可用于医疗领域。带透镜的光纤构造在单模光纤的尖端,用于可变形的柔性聚合物隔膜。传感器可以减少背反射光的光功率损失,而柔性膜片可以提高变形灵敏度。透镜光纤是通过使用熔接方法进行熔接,并通过电弧放电将附着于单模光纤的粗心石英纤维制成的。聚合物膜片由分层的PDMS,聚对二甲苯和金镜组成。中间的聚对二甲苯层有助于防止膜片在外部压力作用下变形时镜面破裂。通过包括旋涂,汽化和溅射的MEMS处理来制造聚合物隔膜。通过数值模拟评估聚合物隔膜的变形。利用两个反射光产生的干涉,可以估计透镜纤维和聚合物膜片之间的腔长随外部压力的变化。实验结果表明,所提出的压力传感器在0 kPa至4 kPa的压力范围内灵敏度为1.41μm / kPa,线性良好,最小检测分辨率小于0.03 kPa。所提出的传感器可用于可靠的低压测量,尤其是在医疗应用中。 (C)2015 Elsevier B.V.保留所有权利。

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