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膜片式微型F-P腔光纤压力传感器
引用本文:于清旭,贾春艳.膜片式微型F-P腔光纤压力传感器[J].光学精密工程,2009,17(12).
作者姓名:于清旭  贾春艳
作者单位:大连理工大学,物理与光电工程学院,辽宁,大连,116024
基金项目:国家自然科学基金资助项目 
摘    要:为满足工业和生物医学领域对微型化传感器的需求,实验研究了基于Fabry-Perot(F-P)干涉仪原理的膜片式微型光纤压力传感器的制作工艺.在单模光纤端面上直接熔接外径约175 μm的毛细石英管,在石英管的另一端制作敏感膜片,从而使光纤端面与膜片内表面之间形成F-P干涉腔.采用电弧熔接、切割、腐蚀膜片等方法制作了石英膜片式压力传感器,该传感器在0~3.1 MPa内F-P腔的腔长变化灵敏度为41.09 nm/MPa,压强测量分辨率为681 Pa,并具有很小的温度敏感系数.在30~140 ℃,温度交差敏感<1.07 kPa/℃.为了克服石英膜片减薄困难的缺点,选用聚合物材料(PSQ)作为压力敏感膜片制作了F-P传感器.室温下在0.1~2.1 MPa,PSQ膜片的F-P腔长变化灵敏度达到1 886.85 nm/MPa,压强测量分辨率达到53 Pa,十分接近人类或其他动物的体内压强测量水平.

关 键 词:光纤Fabry-Perot腔  微型压力传感器  石英膜片  聚合物膜片

Diaphragm based miniature fiber optic pressure sensor with F-P cavity
YU Qing-xu,JIA Chun-yan.Diaphragm based miniature fiber optic pressure sensor with F-P cavity[J].Optics and Precision Engineering,2009,17(12).
Authors:YU Qing-xu  JIA Chun-yan
Affiliation:YU Qing-xu,JIA Chun-yan (School of Physics and Optoelectronic Engineering,Dalian University of Technology,Dalian 116024,China)
Abstract:In order to meet the requirements of both industry and biomedicine for miniature pressure sensors,the miniature fiber optic pressure sensors based on Fabry-Perot (F-P) interferometric principle are manufactured. A piece of hollow fiber with a 175 μm outer diameter is fused directly onto a fiber tip and a thin diaphragm is fused onto the other end of the hollow fiber, then the F-P cavity is formed between the fiber tip and the diaphragm. An miniature entire quartz fiber optic pressure sensor is fabricated by cleaving, fused splicing and etching. The pressure response of the sensor is tested, test results show that the cavity pressure sensitivity is 41.09 nm/MPa in the full pressure scale of 0-3.1 MPa,and the pressure resolution is 681 Pa. The temperature sensitivity of the sensor has also been tested under atmospheric pressure, and a weak temperature dependence of 1.07 kPa/℃ is obtained in the test temperature from 20 ℃ to 140 ℃. Since it is hard to further decrease the thickness of the quartzose diaphragm,a polymer(PSQ) diaphragm is used as a pressure diaphragm to increase the sensitivity of the sensor. The pressure response of the PSQ diaphragm based sensor has also been tested under room temperature, it shows the cavity pressure sensitivity is 1 886.85 nm/MPa in the full pressure scale of 0.1-2.1 MPa, and the pressure resolution is 53 Pa.These results are very closed to the resolution of the pressure measurement in human being and animals.
Keywords:optical fiber Fabry-Perot cavity  miniature pressure sensor  quartzose diaphragm  polymer diaphragm
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