• Acta Photonica Sinica
  • Vol. 50, Issue 9, 0906002 (2021)
Li SUN, Xinxin SUN, Tianqi LIANG, Chuang LI, and Chunwei ZHANG
Author Affiliations
  • School of Civil Engineering, Shenyang Jianzhu University, Shenyang110168, China
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    DOI: 10.3788/gzxb20215009.0906002 Cite this Article
    Li SUN, Xinxin SUN, Tianqi LIANG, Chuang LI, Chunwei ZHANG. Study on Strain Transfer Mechanism of Three Dimensions Printing Encapsulated Fiber Bragg Grating Sensor[J]. Acta Photonica Sinica, 2021, 50(9): 0906002 Copy Citation Text show less

    Abstract

    The fiber grating strain sensor is developed by using the 3D-printing method. A separate model of strain coupling and transmission between the bare fiber Bragg grating sensor, 3D-printing encapsulation layer and the measured matrix structure is established. The strain transfer relationship between the fiber grating sensor and the measured matrix structure is deduced. The influencing factors of the strain transfer rate of the clamped 3D-printing fiber grating strain sensor are analyzed, including the elastic modulus of the encapsulation layer, the thickness of the encapsulation layer and the bonding length. The research results show that the average strain transfer rate is positively correlated with the elastic modulus and bonding length of the encapsulation layer, negatively correlated with the thickness of the encapsulation layer. The research results can be used as a reference for the clamped fiber Bragg grating strain measurement, error correction and sensor design, as well as the feasibility of 3D-printing technology for packaging fiber Bragg gratings.
    4r2-πrg2σc+2πrg0Lτgx,rgdx-4r0Lτx,rdx=0(1)

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    τu,r=πrg2rτgu,rg(2)

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    δmu=δgu+δpu(3)

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    τu,r=Gpγpu,r(4)

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    γpu,r=dudr=τu,rGp=πrg2Gprτgu,rg(5)

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    δpu=uu+δpdx=rgrmγpu,rdr=rgrmπrg2Gprτgu,rgdr=πrg2Gpτgu,rglnrmrg(6)

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    δmu=0uεmxdx=0uσmuEmdx(7)

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    δgu=0uεgxdx=1πrg2Eg0uTgxdx(8)

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    Tgu=πrg2σg-2πrg0uτgx,rgdx(9)

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    0uσmuEmdx=1πrg2Eg0uπrg2σg-2πrg0uτgx,rgdxdx+πrg2Gpτgu,rglnrmrg(10)

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    σmuEm=σgEg-2Egrg0uτgx,rgdx+πrg2Gpτg'u,rglnrmrg(11)

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    2Egrg0uτgx,rgdx=πrg2Gpτg'u,rglnrmrg(12)

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    τg''u,rg-k2β2τgu,rg=0(13)

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    τgu,rg=-kβrgσm2sinhkLcoshku=-2GprgσmβπEgrg2sinhkLcoshku(14)

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    Tgu=πEgσmrg2Em1-sinhkβusinhkβL(15)

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    εgu=σmEm1-sinhkβusinhkβL(16)

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    μ(z)=εg(z)εm(17)

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    μ(z)=1-sinhkβusinhkβL(18)

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    μ(z)¯=0Lεg(z)εmdzL=1-cosh(kβL)kLsinh(kβL)(19)

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    ε=(λ-1555.5)/0.0002(20)

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    eL=±ΔλmaxyFS×100%(21)

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    eH=ΔHmaxyFS×100%(22)

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    σ=i=1nyi-y¯2n-1(23)

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    eZ=±ασmaxyFS×100%(24)

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    eS=eL2+eH2+eZ2(25)

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    Li SUN, Xinxin SUN, Tianqi LIANG, Chuang LI, Chunwei ZHANG. Study on Strain Transfer Mechanism of Three Dimensions Printing Encapsulated Fiber Bragg Grating Sensor[J]. Acta Photonica Sinica, 2021, 50(9): 0906002
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