• Acta Optica Sinica
  • Vol. 42, Issue 16, 1606002 (2022)
Guolu Yin1、2、*, Zhou Xu1, and Tao Zhu1、2
Author Affiliations
  • 1Key Laboratory of Optoelectronic Technology & Systems, Ministry of Education, Chongqing University,Chongqing 400044, China
  • 2State Key Laboratory of Coal Mine Disaster Dynamics and Control, Chongqing University, Chongqing 400044, China
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    DOI: 10.3788/AOS202242.1606002 Cite this Article Set citation alerts
    Guolu Yin, Zhou Xu, Tao Zhu. Distributed Real-Time Monitoring of Residual Stress During Packaging Process of Optical Fiber Shape Sensor[J]. Acta Optica Sinica, 2022, 42(16): 1606002 Copy Citation Text show less
    References

    [1] Amanzadeh M, Aminossadati S M, Kizil M S et al. Recent developments in fibre optic shape sensing[J]. Measurement, 128, 119-137(2018).

    [2] Zheng Y, Zhu Z W, Xiao W et al. Review of fiber optic sensors in geotechnical health monitoring[J]. Optical Fiber Technology, 54, 102127(2020).

    [3] Wu C F, Sun K K, Xu Y M et al. Concrete crack detection method based on optical fiber sensing network and microbending principle[J]. Safety Science, 117, 299-304(2019).

    [4] Park Y L, Elayaperumal S, Daniel B et al. Real-time estimation of 3-D needle shape and deflection for MRI-guided interventions[J]. IEEE/ASME Transactions on Mechatronics, 15, 906-915(2010).

    [5] Zhuang W, Sun G K, Li H et al. FBG based shape sensing of a silicone octopus tentacle model for soft robotics[J]. Optik, 165, 7-15(2018).

    [6] Sun G K, Li H, Dong M L et al. Optical fiber shape sensing of polyimide skin for a flexible morphing wing[J]. Applied Optics, 56, 9325-9332(2017).

    [7] Moore J P, Rogge M D. Shape sensing using multi-core fiber optic cable and parametric curve solutions[J]. Optics Express, 20, 2967-2973(2012).

    [8] Khan F, Denasi A, Barrera D et al. Multi-core optical fibers with Bragg gratings as shape sensor for flexible medical instruments[J]. IEEE Sensors Journal, 19, 5878-5884(2019).

    [9] Khan F, Donder A, Galvan S et al. Pose measurement of flexible medical instruments using fiber Bragg gratings in multi-core fiber[J]. IEEE Sensors Journal, 20, 10955-10962(2020).

    [10] Yi J C, Zhu X J, Zhang H S et al. Spatial shape reconstruction using orthogonal fiber Bragg grating sensor array[J]. Mechatronics, 22, 679-687(2012).

    [11] Moon H, Jeong J, Kang S et al. Fiber-Bragg-grating-based ultrathin shape sensors displaying single-channel sweeping for minimally invasive surgery[J]. Optics and Lasers in Engineering, 59, 50-55(2014).

    [12] Parent F, Loranger S, Mandal K K et al. Enhancement of accuracy in shape sensing of surgical needles using optical frequency domain reflectometry in optical fibers[J]. Biomedical Optics Express, 8, 2210-2221(2017).

    [13] Yi X H, Chen X Y, Fan H C et al. Separation method of bending and torsion in shape sensing based on FBG sensors array[J]. Optics Express, 28, 9367-9383(2020).

    [14] van der Heiden M S, Henken K R, Chen L K et al. Accurate and efficient fiber optical shape sensor for MRI compatible minimally invasive instruments[J]. Proceedings of SPIE, 8550, 85500L(2012).

    [15] Ledermann C, Pauer H, Woern H. Fiber optical sensor system for shape and haptics for flexible instruments in minimally invasive surgery: overview and status quo[J]. Proceedings of SPIE, 9157, 915766(2014).

    [16] Araújo F M, Ferreira L A, Santos J L. Simultaneous determination of curvature, plane of curvature, and temperature by use of a miniaturized sensing head based on fiber Bragg gratings[J]. Applied Optics, 41, 2401-2407(2002).

    [17] Kang J M, Sun L L, Wang J H et al. Three-dimensional finite element simulation of temperature and strain in epoxy resin used to electronic packaging during curing[J]. Acta Materiae Compositae Sinica, 36, 2330-2340(2019).

    [18] Giordano M, Laudati A, Nasser J et al. Monitoring by a single fiber Bragg grating of the process induced chemo-physical transformations of a model thermoset[J]. Sensors and Actuators A: Physical, 113, 166-173(2004).

    [19] Kalamkarov A L, Fitzgerald S B, MacDonald D O. The use of Fabry Perot fiber optic sensors to monitor residual strains during pultrusion of FRP composites[J]. Composites Part B: Engineering, 30, 167-175(1999).

    [20] O’Dwyer M J, Maistros G M, James S W et al. Relating the state of cure to the real-time internal strain development in a curing composite using in-fibre Bragg gratings and dielectric sensors[J]. Measurement Science and Technology, 9, 1153-1158(1998).

    [21] Martin J M M, Munoz-Esquer P, Rodriguez-Lence F et al. Fiber optic sensors for process monitoring of composite aerospace structures[J]. Proceedings of SPIE, 4694, 53-64(2002).

    [22] Shao C, Yin G L, Lü L et al. OFDR with local spectrum matching method for optical fiber shape sensing[J]. Applied Physics Express, 12, 082010(2019).

    [23] Shen W L, Zhu Q R, Xie M R et al. Experimental study of monitoring of curing process of epoxy resin based on fiber Bragg grating sensing network[J]. Modern Scientific Instruments, 183-186(2013).

    [24] Gentile C, Bernardini G. Radar-based measurement of deflections on bridges and large structures[J]. European Journal of Environmental and Civil Engineering, 14, 495-516(2010).

    [25] Li X Q, Zhou Y J, Zhang Z L et al. Curing shrinkage monitoring in epoxy resin by fiber Bragg grating sensors[J]. Journal of Materials Engineering, 40, 73-77(2012).

    [26] Weiss M, Rolfe B, Hodgson P D et al. Effect of residual stress on the bending of aluminium[J]. Journal of Materials Processing Technology, 212, 877-883(2012).

    [27] Kang J M. Research on curing process optimization of epoxy resins used for electronic packaging[D](2019).

    [28] Yin G L, Xu Z, Jiang R et al. Optical fiber distributed three-dimensional shape sensing technology based on optical frequency-domain reflectometer[J]. Acta Optica Sinica, 42, 0106002(2022).

    Guolu Yin, Zhou Xu, Tao Zhu. Distributed Real-Time Monitoring of Residual Stress During Packaging Process of Optical Fiber Shape Sensor[J]. Acta Optica Sinica, 2022, 42(16): 1606002
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