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    Evaluation of Subsurface Defects in Fiber Glass Composite Plate using Lock-in Technique

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    https://www.riss.kr/link?id=A104365554

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In this paper, the lock-in algorithm from lock-in thermography was applied in digital shearography to evaluate the subsurface defects in fiber glass composite plate. Lock-in thermography is one of active infrared thermography which is based on propagation and reflection of thermal wave while lock-in shearography is one of optical interferometric imaging technique which is based on displacement gradient changes in a fringe pattern by mechanical or thermal loading. By applying the lock-in method to digital shearography, its sensitivity can be enhanced by phase sensitive narrow-band filtering as well as the improved signal to noise ratio, selective defects detection. Artificial defects in fiber glass composite plate were evaluated by digital shearography and lock-in shearography NDE techniques to compare their detection capacity. The experimental results confirmed that lock-in method’s efficiency on subsurface defects detection in composite plate specimen.
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    In this paper, the lock-in algorithm from lock-in thermography was applied in digital shearography to evaluate the subsurface defects in fiber glass composite plate. Lock-in thermography is one of active infrared thermography which is based on propaga...

    In this paper, the lock-in algorithm from lock-in thermography was applied in digital shearography to evaluate the subsurface defects in fiber glass composite plate. Lock-in thermography is one of active infrared thermography which is based on propagation and reflection of thermal wave while lock-in shearography is one of optical interferometric imaging technique which is based on displacement gradient changes in a fringe pattern by mechanical or thermal loading. By applying the lock-in method to digital shearography, its sensitivity can be enhanced by phase sensitive narrow-band filtering as well as the improved signal to noise ratio, selective defects detection. Artificial defects in fiber glass composite plate were evaluated by digital shearography and lock-in shearography NDE techniques to compare their detection capacity. The experimental results confirmed that lock-in method’s efficiency on subsurface defects detection in composite plate specimen.

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    참고문헌 (Reference)

    1 박정학, "금속재료 시편의 결함평가에 대한 전단위상 Lock-in 적외선열화상 연구" 한국비파괴검사학회 30 (30): 91-97, 2010

    2 Hung, Y. Y., "Unified approach for holography and shearography in surface deformation measurement and nondestructive testing" 42 (42): 1197-1207, 2003

    3 Ruzek, R., "Ultrasound C-Scan and shearography NDI techniques evaluation of impact defects identification" 39 (39): 132-142, 2006

    4 Busse, G., "Thermal wave imaging with phase sensitive modulated thermography" 71 (71): 3962-3965, 1992

    5 Gerhard, H., "Thermal Waves for Imaging of Defects with Lockin-Speckle Interferometry" 43 (43): 229-234, 2007

    6 Hung, Y. Y., "Review and comparison of shearography and active thermography for nondestructive evaluation" 64 (64): 73-112, 2009

    7 Bates, D., "Rapid thermal nondestructive testing of aircraft components" 31 (31): 175-185, 2000

    8 Choi, M. Y., "Quantitative determination of a subsurface defect of reference specimen by lock-in infrared thermography" 41 (41): 119-124, 2008

    9 Yang, L. X., "Precision measurement and nondestructive testing by means ofdigital phase shifting speckle pattern and speckle patternshearing interferometry" 16 (16): 149-160, 1995

    10 Wu, D., "Phase-sensitive modulation thermography and its applicationsfor NDE" 3056 : 176-182, 1997

    1 박정학, "금속재료 시편의 결함평가에 대한 전단위상 Lock-in 적외선열화상 연구" 한국비파괴검사학회 30 (30): 91-97, 2010

    2 Hung, Y. Y., "Unified approach for holography and shearography in surface deformation measurement and nondestructive testing" 42 (42): 1197-1207, 2003

    3 Ruzek, R., "Ultrasound C-Scan and shearography NDI techniques evaluation of impact defects identification" 39 (39): 132-142, 2006

    4 Busse, G., "Thermal wave imaging with phase sensitive modulated thermography" 71 (71): 3962-3965, 1992

    5 Gerhard, H., "Thermal Waves for Imaging of Defects with Lockin-Speckle Interferometry" 43 (43): 229-234, 2007

    6 Hung, Y. Y., "Review and comparison of shearography and active thermography for nondestructive evaluation" 64 (64): 73-112, 2009

    7 Bates, D., "Rapid thermal nondestructive testing of aircraft components" 31 (31): 175-185, 2000

    8 Choi, M. Y., "Quantitative determination of a subsurface defect of reference specimen by lock-in infrared thermography" 41 (41): 119-124, 2008

    9 Yang, L. X., "Precision measurement and nondestructive testing by means ofdigital phase shifting speckle pattern and speckle patternshearing interferometry" 16 (16): 149-160, 1995

    10 Wu, D., "Phase-sensitive modulation thermography and its applicationsfor NDE" 3056 : 176-182, 1997

    11 Steinchen, W., "Nondestructive testing of aerospace composite materials usingdigital shearography" 212 (212): 21-30, 1998

    12 Gerhard, H., "Lockin-ESPI interferometric imaging for remote non-destructive testing" 39 (39): 627-635, 2006

    13 Wu, D., "Lock-in thermography for nondestructive evaluation of materials" 37 (37): 693-703, 1998

    14 Meola, C., "Geometrical Limitations to Detection of Defects in Composites by Means of Infrared Thermography" 23 (23): 125-132, 2004

    15 Bai, W., "Evaluation of defects in composite plates under convective environments using lock-in thermography" 12 (12): 142-150, 2001

    16 Hung, Y. Y., "Evaluating the soundness of bonding using shearography" 50 (50): 353-362, 2000

    17 Dolinko, A. E., "Enhancement in flaw detectability by means of lockin temporal speckle pattern interferometry and thermal waves" 45 (45): 690-694, 2007

    18 Lanza di Scalea, F., "Electronic Shearography with Thermal Loading for Detecting Debonds in Thick Polyurethane/Steel Panels for Marine Applications" 12 (12): 43-51, 2000

    19 Kyeong-Suk Kim, "Determination of Poisson’s Ratio of a Beam by Time-Average ESPI and Euler-Bernoulli Equation" 한국정밀공학회 11 (11): 979-982, 2010

    20 Diamanti, K., "Detection of low-velocity impact damage in composite plates using Lamb waves" 3 (3): 33-41, 2004

    21 Potel, C., "Characterization of composite materials by ultrasonicmethods : modelization and application to impact damage" 29 (29): 159-169, 1998

    22 Ambu, R., "Assessment of NDT interferometric techniques for impact damage detection in composite laminates" 66 (66): 199-205, 2006

    23 Avdelidis, N. P., "Aircraft composites assessment by means of transient thermal NDT" 40 (40): 143-162, 2004

    24 Fletcher, M. J., "A review of optical inspection methods" 38 (38): 270-275, 1996

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