• Photonic Sensors
  • Vol. 9, Issue 4, 367 (2019)
Bin LIU1、*, Shihai ZHANG2, and and Jianping HE3
Author Affiliations
  • 1School of Electronic and Electrical Engineering, Nanyang Institute of Technology, Nanyang 473001, China
  • 2School of Civil Engineering, Nanyang Institute of Technology, Nanyang 473001, China
  • 3School of Civil Engineering, Dalian University of Technology, Dalian 116024, China
  • show less
    DOI: 10.1007/s13320-019-0534-0 Cite this Article
    Bin LIU, Shihai ZHANG, and Jianping HE. Deformation Measurement of Glass Structure Using FBG Sensor[J]. Photonic Sensors, 2019, 9(4): 367 Copy Citation Text show less
    References

    [1] V. Beatini and G. R. Carfagni, “Glass as a material,” Materia, 2011, 69: 36-43.

    [2] B. Massimo, B. Luigi, R. C. Gianni, and S. Walter, “Safety factors for the structural design of glass,” Construction and Building Materials, 2014, 55: 114-127.

    [3] W. G. Guo and F. F. Shi, “Deformation and failure behavior of MDYB-3 oriented PMMA glass under different loading conditions,” Acta Aeronautica et Astronautica Sinica, 2008, 29(6): 1517-1525.

    [4] H. Y. Wu, G. Ma, and Y. M. Xia, “Experimental study of tensile properties of PMMA at intermediate strain rate,” Master of Letters, 2004, 58(29): 3681-3685.

    [5] G. S. Guan, S. H. Wang, and F. Y. Cheng, “Compression failure and mechanics behavior of PMMA under different loading strain rates,” Journal of Aeronautical Materials, 2012, 32(6): 96-101.

    [6] L. Biolzi, S. Cattaneo, and G. Rosati, “Progressive damage and fracture of laminated glass beams,” Construction and Building Materials, 2010, 24(6): 77-84.

    [7] W. Roundi, A. E. Mahi, A. E. Gharad, and J. L. Rebiere, “Acoustic emission monitoring of damage progression in glass/epoxy composites during static and fatigue tensile tests,” Applied Acoustics, 2018, 132: 124-134.

    [8] Y. Kuang, Y. X. Guo, L. Xiong, and W. L. Liu, “Packaging and temperature compensation of fiber Bragg grating for strain sensing: a survey,” Photonic Sensors, 2018, 8(4): 320-331.

    [9] T. H. T. Chan, L. Yu, H. Y. Tam, Y.Q. Ni, S. Y. Liu, W. H. Chung, et al., “Fiber Bragg grating sensors for structural health monitoring of Tsing Ma bridge: background and experimental observation,” Engineering Structures, 2006, 28(5): 648-659.

    [10] K. Schroeder, W. Ecke, J. Apitz, and E. Lembke, “A fiber Bragg grating sensor system nonitors operational load in a wind turbin rotor blade,” Measurement Science and Technology, 2006, 17(5): 1167-1172.

    [11] P. Schubel, R. Umer, and E. K. G. Boateng, “Modeling heat transfer through an FBG optical fibre,” Composites Part A: Applied Science and Manufacturing, 2018, 109: 184-196.

    [12] M. A. Tarawneh, Y. Huang, P. Lu, and D. Tolliver, “Vehicle classification system using in-pavement fiber Bragg grating sensors,” IEEE Sensors Journal, 2018, 18(7): 2807-2815.

    [13] Z. Zhou, J. P. He, K. Yan, and J. P. Ou, “Fiber-reinforced polymer-packaged optical fiber sensors based on Brillouin optical time-domain analysis,” Optical Engineering, 2008, 47(1): 014401-1-014401-10.

    [14] K. O. Hill, B. Malo, F. Bilodeau, D. C. Johnson, and J. Albert, “Bragg grating fabricated in monomode photosensitive optical fiber by UV exposure through a phase mask,” Applied Physics Letters, 1993, 62(10): 1035-1037.

    [15] S. I. Takeda, J. Koyanagi, S. Utsunomiya, Y. Kinoshita, Y. Arao, and H. Kawada, “Monitoring of internal residual strain changes in CFRP using FBG sensors,” SPIE, 2010, 7522: 75223N-1-75223N-8.

    [16] J. P. He, Z. Zhou, and J. P. Ou, “Simultaneous measurement of strain and temperature using a hybrid local and distributed optical fiber sensing system,” Measurement, 2014, 47: 698-706.

    [17] S. H. Zhang, J. P. He, and Z. Zhou, “Temperature sensing characteristics of FBG under different level stress and boundary conditions,” Pacific Science Review, 2011, 13(3): 222-226.

    Bin LIU, Shihai ZHANG, and Jianping HE. Deformation Measurement of Glass Structure Using FBG Sensor[J]. Photonic Sensors, 2019, 9(4): 367
    Download Citation