Nondestructive evaluation of hidden damages in glass fiber reinforced plastic by using the terahertz spectroscopy

In this work, the terahertz (THz) spectroscopy system was used for the detecting and evaluation of hidden damages in a glass fiber reinforced plastic (GFRP). The interaction between THz and the GFRP was analyzed including the effects of reflecting, scattering and absorption of THz radiations with re...

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Published inInternational Journal of Precision Engineering and Manufacturing-Green Technology, 4(2) Vol. 4; no. 2; pp. 211 - 219
Main Authors Kim, Do-Hyoung, Ryu, Chung-Hyeon, Park, Sung-Hyun, Kim, Hak-Sung
Format Journal Article
LanguageEnglish
Published Seoul Korean Society for Precision Engineering 01.04.2017
Springer Nature B.V
한국정밀공학회
Subjects
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ISSN2288-6206
2198-0810
DOI10.1007/s40684-017-0026-x

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Abstract In this work, the terahertz (THz) spectroscopy system was used for the detecting and evaluation of hidden damages in a glass fiber reinforced plastic (GFRP). The interaction between THz and the GFRP was analyzed including the effects of reflecting, scattering and absorption of THz radiations with respect to the type of hidden damage. Both the transmission and reflective configurations were used to investigate the hidden damages including the delamination, fiber fracture and moisture absorption. Finally, the hidden damages inside of the composite laminates were successfully imaged simultaneously based on the time-domain spectroscopy of THz radiation. Additionally, the moisture absorption damage in the GFRP could be detected by analyzing of the frequency domain spectrum. It is expected that the developed THz nondestructive evaluation (NDE) technique can be widely used to evaluate the health of the composite structures.
AbstractList In this work, the terahertz (THz) spectroscopy system was used for the detecting and evaluation of hidden damages in a glass fiber reinforced plastic (GFRP). The interaction between THz and the GFRP was analyzed including the effects of reflecting, scattering and absorption of THz radiations with respect to the type of hidden damage. Both the transmission and reflective configurations were used to investigate the hidden damages including the delamination, fiber fracture and moisture absorption. Finally, the hidden damages inside of the composite laminates were successfully imaged simultaneously based on the time-domain spectroscopy of THz radiation. Additionally, the moisture absorption damage in the GFRP could be detected by analyzing of the frequency domain spectrum. It is expected that the developed THz nondestructive evaluation (NDE) technique can be widely used to evaluate the health of the composite structures. KCI Citation Count: 5
In this work, the terahertz (THz) spectroscopy system was used for the detecting and evaluation of hidden damages in a glass fiber reinforced plastic (GFRP). The interaction between THz and the GFRP was analyzed including the effects of reflecting, scattering and absorption of THz radiations with respect to the type of hidden damage. Both the transmission and reflective configurations were used to investigate the hidden damages including the delamination, fiber fracture and moisture absorption. Finally, the hidden damages inside of the composite laminates were successfully imaged simultaneously based on the time-domain spectroscopy of THz radiation. Additionally, the moisture absorption damage in the GFRP could be detected by analyzing of the frequency domain spectrum. It is expected that the developed THz nondestructive evaluation (NDE) technique can be widely used to evaluate the health of the composite structures.
Author Park, Sung-Hyun
Ryu, Chung-Hyeon
Kim, Do-Hyoung
Kim, Hak-Sung
Author_xml – sequence: 1
  givenname: Do-Hyoung
  surname: Kim
  fullname: Kim, Do-Hyoung
  organization: Department of Mechanical Convergence Engineering, Hanyang University
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  givenname: Chung-Hyeon
  surname: Ryu
  fullname: Ryu, Chung-Hyeon
  organization: Department of Mechanical Convergence Engineering, Hanyang University
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  givenname: Sung-Hyun
  surname: Park
  fullname: Park, Sung-Hyun
  organization: Department of Mechanical Convergence Engineering, Hanyang University
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  givenname: Hak-Sung
  surname: Kim
  fullname: Kim, Hak-Sung
  email: kima@hanyang.ac.kr
  organization: Department of Mechanical Convergence Engineering, Hanyang University, Institute of Nano Science and Technology, Hanyang University
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Delamination
Non-destructive evaluation
Failure modes
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SubjectTerms Absorption
Composite structures
Damage assessment
Energy Efficiency
Engineering
Glass fiber reinforced plastics
Industrial and Production Engineering
Laminates
Moisture
Moisture absorption
Nondestructive testing
Radiation damage
Regular Paper
Spectroscopy
Spectrum analysis
Sustainable Development
기계공학
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