• Acta Photonica Sinica
  • Vol. 47, Issue 4, 406001 (2018)
BAO Teng-fei1、2、*, ZHAO Jin-lei3, and LI Jian-ming1、2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
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    DOI: 10.3788/gzxb20184704.0406001 Cite this Article
    BAO Teng-fei, ZHAO Jin-lei, LI Jian-ming. Experiment of Optical Response Characteristics of Plastic Optical Fibers under Shear and Torsion Loading[J]. Acta Photonica Sinica, 2018, 47(4): 406001 Copy Citation Text show less
    References

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    [2] QIAN Fei, TONG Jian-jie. Study on multiplex capacity of distributed optical fiber monitoring for cracks of concrete dam[J]. Water Resources and Power, 2010, 28(1): 70-72+109.

    [3] ZHAO Jin-lei, BAO Teng-fei, KUNDU T. Wide range fiber displacement sensor based on bending loss[J]. Journal of Sensors, 2016,2016: 4201870.

    [4] BAO Teng-fei, ZHAO Jin-lei, ZHANG Wan-zhu, et al. Bend type fiber Bragg grating crack sensor with big measurement range[J]. Scientia Sinica(Technologica), 2014, 10(44): 1013-1019.

    [5] LAFLAMME S, KOLLOSCHE M, CONNOR J, et al. Soft capacitive sensor for structural health monitoring of large-scale systems[J]. Structural Control and Health Monitoring, 2012, 19(1): 70-81.

    [6] ZHAO Jin-lei, BAO Teng-fei, CHEN Rui. Crack monitoring capability of plastic optical fibers for concrete structures[J]. Optical Fiber Technology, 2015,(24): 70-76.

    [7] BAO Teng-fei, ZHAO Jin-lei, QI Dan. Properties of plastic optical fibers in crack monitoring[J]. Acta Photonica Sinica, 2015, 44(10): 1006001.

    [8] ZHAO Jin-lei, BAO Teng-fei, QI Dan. Feasibility study on application of plastic optical fiber in crack monitoring[J]. Journal of Optoelectronics·Laser, 2014, 25(10): 1943-1948.

    [9] TAKEDA N, KOSAKA T, ICHIYAMA T. Detection of transverse cracks by embedded plastic optical fiber in FRP laminates[A]. Smart Structures and Materials 1999: Sensory Phenomena and Measurement Instrumentation for Smart Structures and Materials[C]. Newport Beach: 1999.

    [10] KUANG C, CANTWELL J, THOMAS C. Crack detection and vertical deflection monitoring in concrete beams using plastic optical fibre sensors[J]. Measurement Science and Technology, 2003, 14(2): 205-216.

    [11] KUANG C, QUEK T, MAALEJ M. Assessment of an extrinsic polymer-based optical fibre sensor for structural health monitoring[J]. Measurement Science and Technology, 2004, 15(10): 2133-2141.

    [12] LIEHR S, LENKE P, KREBBER K, et al. Distributed strain measurement with polymer optical fibers integrated into multifunctional geotextiles[C]. Optical Sensors 2008, Strasbourg: 2008.

    [13] LIEHR S, LENKE P, WENDT M, et al. Distributed polymer optical fiber sensors in geotextiles for monitoring of earthwork structures[C]. 4th International Conference on Structural Health Monitoring of Intelligent Infrastructure (SHMII-4), Zurich: 2009.

    [14] LIEHR S, LENKE P, WENDT M, et al. Polymer optical fiber sensors for distributed strain measurement and application in structural health monitoring[J]. IEEE Sensors Journal. 2009, 9(11): 1330-1338.

    [15] LIEHR S, WENDT M, KREBBER K. Distributed perfluorinated POF strain sensor using OTDR and OFDR techniques[C]. 20th International Conference on Optical Fibre Sensors, Edinburgh: 2009.

    [16] ZUBIA J, ARRUE J, MENDIOROZ A. Theoretical analysis of the torsion-induced optical effect in a plastic optical fiber[J]. Optical Fiber Technology, 1997, 3(2): 162-167.

    BAO Teng-fei, ZHAO Jin-lei, LI Jian-ming. Experiment of Optical Response Characteristics of Plastic Optical Fibers under Shear and Torsion Loading[J]. Acta Photonica Sinica, 2018, 47(4): 406001
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