浏览全部资源
扫码关注微信
1. 重庆理工大学 光纤传感与光电检测重庆市重点实验室 重庆,400054
2. 重庆理工大学 重庆市现代光电检测技术与仪器重点实验室 重庆,400054
收稿日期:2015-11-26,
修回日期:2016-02-01,
纸质出版日期:2016-05-25
移动端阅览
钟年丙, 李超楠, 刘洋等. 老化处理对塑料光纤传感器光传输及灵敏度的影响[J]. 光学精密工程, 2016,24(5): 971-978
ZHONG Nian-bing, LI Chao-nan, LIU Yang etc. Effects of ageing treatment on light transmission and sensitivity of plastic optical fiber sensors[J]. Editorial Office of Optics and Precision Engineering, 2016,24(5): 971-978
钟年丙, 李超楠, 刘洋等. 老化处理对塑料光纤传感器光传输及灵敏度的影响[J]. 光学精密工程, 2016,24(5): 971-978 DOI: 10.3788/OPE.20162405.0971.
ZHONG Nian-bing, LI Chao-nan, LIU Yang etc. Effects of ageing treatment on light transmission and sensitivity of plastic optical fiber sensors[J]. Editorial Office of Optics and Precision Engineering, 2016,24(5): 971-978 DOI: 10.3788/OPE.20162405.0971.
为了提高正规包层-纤芯类倏逝波塑料光纤传感器的灵敏度
本文对传感器敏感区在真空和水浴中进行了老化处理。老化处理时
先将光纤部分区域的保护层去除;然后将这种裸光纤作为传感器的敏感区
对其进行真空和蒸馏水老化处理。对比研究了传感器敏感区经真空和蒸馏水老化不同时间后的光传输特性及灵敏度
分析了老化处理对传感器光传输特性与灵敏度的影响机理。研究表明:老化处理后
塑料光纤纤芯折射率及材料成分发生了变化
由此改变了光纤内部光传输模式及光纤表面有效倏逝场透射深度与传播长度
从而降低了传感器的光传输性能。传感器对葡萄糖溶液的灵敏度随着老化时间的延长先增大后减少
在真空中105℃老化处理20 min后的灵敏度达到最高-0.0042/g·(100 mL)
-1
高于蒸馏水老化处理后的传感器灵敏度。研究结果对高灵敏度正规包层-纤芯类塑料光纤倏逝波传感器的研制提供了技术支撑。
To improve the sensitivity of a plastic optical fiber (POF) evanescent wave sensor with the normal core-cladding structure
the sensitive region of the sensor was aged in vacuum and distilled water. In the ageing treatment
the partial coating of the POF was removed firstly
the uncoated region with the normal core-cladding structure was employed as the sensing region of the sensor
then the sensing region of the sensor was aged in vacuum and distilled water
respectively. The light transmission and sensitivity of the sensor after ageing different time in vacuum and distilled water were compared
and the effects of ageing treatment on the light transmission and sensitivity of the sensor were analyzed. The research indicates that after ageing treatment
the core refractive index of the POF and the material composition are changed
which allows the light transmission mode in the optic fiber
the penetration depth and transmission length of the effective evanescent wave at the surface of sensing region to be changed
so that the light transmission property is dropped. The experimental results also show that the sensitivity of the aged sensor in the glucose solutions firstly is increased
subsequently decreased with the increase of the ageing time
and the maximum sensitivity in the vacuum has reached -0.0042/g·(100 mL)
-1
at temperature of 105℃ and ageing time for 20 min
higher than that of sensors with the ageing treatment in the distilled water. The research provides technological supports for developments of POF evanescent wave sensors with higher sensitivity and normal core-cladding structures.
GARITO A F, WANG J, GAO R. Effects of random perturbations in plastic optical fibers[J]. Science, 1998, 281(5379):962-967.
MIZUNO Y, HAYASHI N, TANAKA H,et al.. Propagation mechanism of polymer optical fiber fuse[J].Scientific Reports, 2014, 4:4800.
CHENG C, LIU J, ZHANG C, et al.. An overview of infrared spectroscopy based on continuous wavelet transform combined with machine learning algorithms:application to Chinese medicines, plant classification, and cancer diagnosis[J]. Applied Spectroscopy Reviews, 2010, 45(2):148-164.
钟年丙,廖强,朱恂,等. 超声技术在石英光纤腐蚀中的运用[J]. 光学精密工程, 2012,20(5):988-995. ZHONG N B, LIAO Q, ZHU X,et al.. Application of ultrasonic technology to etching silica optical fiber[J]. Opt. Precision Eng., 2012, 20(5):988-995. (in Chinese)
AVINO S, RICHMOND C, GIORGINI A,et al.. High-sensitivity ring-down evanescent-wave sensing in fiber resonators[J]. Optics Letters, 2014, 39(19):5725-5728.
LOU J, XU H Z, XU B, et al.. Fiber-optic evanescent wave sensor with a segmented structure[J]. Applied Optics, 2014, 53(19):4200-4205.
ZHONG N B, LIAO Q, ZHU X, et al.. A fiber-optic sensor for accurately monitoring biofilm growth in a hydrogen production photobioreactor[J]. Analytical Chemistry, 2014, 86(8):3994-4001.
LUO J, YAO J, LU Y G, et al.. A silver nanoparticle-modified evanescent field optical fiber sensor for methylene blue detection[J]. Sensors, 2013, 13(3):3986-3997.
刘洋,钟年丙,陈明,等. 准确测量微藻生物量的塑料光纤倏逝波传感器[J]. 光学精密工程,2015, 23(10z):151-158. LIU Y, ZHONG N B, CHEN M, et al.. Plastic optical fiber evanescent wave sensor for accurate measurement of microalgae biomass[J]. Opt. Precision Eng., 2015, 23(10z):151-158. (in Chinese)
ZHANG Q L, HOOGENBOOM R. Polymers with upper critical solution temperature behavior in alcohol/water solvent mixtures[J].Progress in Polymer Science, 2015, 48:122-142.
YANG Y H, DAN Y. Preparation of PMMA/SiO2 composite particles via emulsion polymerization[J]. Colloid and Polymer Science, 2003, 281(8):794-799.
SATO M, ISHIGURE T, KOIKE Y. Thermally stable high-bandwidth graded-index polymer optical fiber[J]. Journal of Lightwave Technology, 2000, 18(7):952-958.
TANIO N, KATO H, KOIKE Y, et al.. Physical aging and light scattering of low-loss poly (methyl methacrylate) glass[J]. Polymer Journal, 1998, 30:56-59.
储九荣, 钟力生, 徐传骧. 热老化对PMMA塑料光纤损耗的影响[J]. 塑料工业, 2005, 33:190-195. CHU J R, ZHONG L SH, XU CH X. Influence of heat aging on attenuation of PMMA polymer optical fiber[J]. China Plastics Industry, 2005, 33:190-195. (in Chinese)
ISHIGURE T, SATO M, KONDO A, et al.. Graded-index polymer optical fiber with high temperature and high humidity stability[J].Journal of Lightwave Technology,2002, 20:1818-1825.
ZHONG N B, LIAO Q, ZHU X, et al.. Temperature-independent polymer optical fiber evanescent wave sensor[J]. Scientific Reports, 2015, 5:11508.
TAKEZAWA Y, TANNO S, TAKETANI N, et al.. Analysis of thermal degradation for plastic optical fibers[J]. Journal of Applied Polymer Science, 1991, 42:2811-2817.
WATANABE T, OOBA N, HIDA Y,et al.. Influence of humidity on refractive index of polymers for optical waveguide and its temperature dependence[J]. Applied Physics Letters, 1998, 72(13):1533-1535.
LUO S W, CHANG T L, TSAI H Y.Fabrication of glass micro-prisms using ultra-fast laser pulses with chemical etching process[J]. Optics and Lasers in Engineering, 2012, 50(2):220-225.
ZHONG N B, LIAO Q, ZHU X, et al.. Effects of surface roughness on optical properties and sensitivity of fiber-optic evanescent wave sensors[J]. Applied Optics, 2013, 52(17):3937-3945.
0
浏览量
371
下载量
1
CSCD
关联资源
相关文章
相关作者
相关机构