A typical intensity-modulated optical fiber sensor system consists of a light source, a sensing device, within which the intensity of light is altered by the measurand in some way, a detector to measure the intensity of the transmitted signal and optical fibers to carry light between these components. The optical fiber coating interaction with the host material plays a major role in determining the proper transfer of load from the structure to the optical fiber. Three-dimensional (3D) finite element (FE) model of the structure was performed to study and predict the behaviour of the stress/strain fields in and around acrylate coated embedded optical fibers in flexural test coupons of carbon fiber composite. The modeling results and the fracture surface scanning electron micrographs suggest that the soft acrylate coating is debonding.
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Dongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South KoreaDongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South Korea
Kim, Heung Soo
Lee, Jaehun
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Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 151742, South KoreaDongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South Korea
Lee, Jaehun
Cho, Maenghyo
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Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 151742, South KoreaDongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South Korea
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Wuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Foshan Xianhu Lab, Natl Energy Key Lab New Hydrogen Ammonia Energy Te, Foshan 528000, Peoples R China
Wuhan Univ Technol, Sch Sci, Hubei Key Lab Theory & Applicat Adv Mat Mech, Wuhan 430070, Peoples R ChinaWuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Duan, Qingfeng
Cao, Dongfeng
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Wuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Foshan Xianhu Lab, Natl Energy Key Lab New Hydrogen Ammonia Energy Te, Foshan 528000, Peoples R ChinaWuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Cao, Dongfeng
Hu, Haixiao
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Wuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Foshan Xianhu Lab, Natl Energy Key Lab New Hydrogen Ammonia Energy Te, Foshan 528000, Peoples R China
Wuhan Univ Technol, Sch Sci, Hubei Key Lab Theory & Applicat Adv Mat Mech, Wuhan 430070, Peoples R ChinaWuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Hu, Haixiao
Cai, Wei
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Wuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Foshan Xianhu Lab, Natl Energy Key Lab New Hydrogen Ammonia Energy Te, Foshan 528000, Peoples R ChinaWuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Cai, Wei
Li, Shuxin
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Wuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
Foshan Xianhu Lab, Natl Energy Key Lab New Hydrogen Ammonia Energy Te, Foshan 528000, Peoples R China
Wuhan Univ Technol, Sch Sci, Hubei Key Lab Theory & Applicat Adv Mat Mech, Wuhan 430070, Peoples R ChinaWuhan Univ Technol, State Key Lab Mat Synth & Proc, Wuhan 430070, Peoples R China
机构:
Dongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South KoreaDongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South Korea
Huang, Bin
Kim, Heung Soo
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Dongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South KoreaDongguk Univ Seoul, Dept Mech Robot & Energy Engn, Seoul 100715, South Korea