電磁超音波センサによるアルミニウム‐GFRP積層板の界面はく離の検出

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Published in日本機械学会論文集 Vol. 89; no. 919; p. 22-00252
Main Authors 中谷, 隼人, 藪内, 祐樹, 和田, 明浩, 山崎, 友裕
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本機械学会 2023
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Online AccessGet full text
ISSN2187-9761
DOI10.1299/transjsme.22-00252

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Author 山崎, 友裕
和田, 明浩
藪内, 祐樹
中谷, 隼人
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  organization: 大阪公立大学大学院 工学研究科
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  organization: 大阪広域環境施設組合
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  fullname: 和田, 明浩
  organization: 大阪産業大学 工学部
– sequence: 1
  fullname: 山崎, 友裕
  organization: 大阪公立大学大学院 工学研究科
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References Urabe, T., Takatsubo, J., Toyama, N., Tsuda, H. and Nagai, H., Flaw inspection of CFRP with a contact-free visualization system of ultrasound wave propagations using laser generation and air-coupled receiver, Journal of the Japan Society for Composite Materials, Vol. 38, No. 5 (2012), pp. 183-192 (in Japanese).
Ibarra-Castanedo, C., Avdelidis, N. P., Grinzato, E. G., Bison, P. G., Marinetti, S., Plescanu, C. C., Bendada, A. and Maldague, X. P., Delamination detection and impact damage assessment of GLARE by active thermography, International Journal of Materials and Product Technology, Vo. 41, No. 1-4 (2011), pp. 5-16, DOI: 10.1504/IJMPT.2011.040282.
Kikuchi, M. and Ichikawa, S., Estimation of the delamination shape of CFRP composite by transverse loading, Transactions of the Japan Society of Mechanical Engineers, Series A, Vol. 62, No. 596 (1996), pp. 930-936 (in Japanese).
Pei, C., Liu, T., Chen H. and Chen, Z., Inspection of delamination defect in first wall with a flexible EMAT-scanning system, Fusion Engineering and Design, Vol.136 (2018), pp. 549-553, DOI: 10.1016/j.fusengdes.2018.03.018.
Toyama, N. and Takatsubo, J., Lamb wave method for quantitative inspection of impact-induced delamination in CFRP plates, Journal of The Japanese Society for Non-Destructive Inspection Vol. 52, No. 11 (2003), pp. 633-638 (in Japanese).
Sinke, J., Some inspection methods for quality control and in-service inspection of GLARE, Applied Composite Materials, Vol. 10 (2003), pp. 277–291, DOI: 10.1023/A:1025537229801.
Wu, G., Yang, J. -M. and Hahn, H. T., The impact properties and damage tolerance and of bi-directionally reinforced fiber metal laminates, Journal of Materials Science, Vol. 42 (2007), pp. 948-957, DOI: 10.1007/s10853-006-0014-y.
Jakubczak, P. and Bienias, J. Non-destructive damage detection in fibre metal laminates, Journal of Nondestructive Evaluation, Vol. 38 (2019), Article number: 49, DOI:10.1007/s10921-019-0588-3.
Montinaro, N., Pitarresi, G. and Cerniglia, D., Detection and characterization of disbonds on fibre metal laminate hybrid composites by flying laser spot thermography, Composites Part B, No. 108 (2017), pp. 164–173.
Sinke, J., Development of fibre metal laminates: Concurrent multi-scale modeling and testing, Journal of Materials Science, Vol. 41, No. 20 (2006), pp. 6777–6788.
Yamasaki, T., Nishino, H. and Katayama, T., Cure monitoring in resin transfer molding by electromagnetic acoustic transducer, Transactions of the Japan Society of Mechanical Engineers, Series A, Vol. 76, No. 762 (2010), pp. 145-150 (in Japanese).
Pärnänen, T., Kanerva, M., Sarlin, E. and Saarela, O., Debonding and impact damage in stainless steel fibre metal laminates prior to metal fracture, Composite Structures, Vol. 119 (2015), pp.777-786, DOI: 10.1016/j.compstruct.2014.09.056.
Leonard, F. and Withers, P. J., Impact damage characterization of fibre metal laminates by x-ray computed tomography, Proceedings of the 5th Conference on Industrial Computed Tomography (iCT) 2014 (2014), pp. 123-130.
Nakatani, H., Kosaka, T., Osaka, K. and Sawada, Y., Effect of titanium layer on low-velocity impact damage behavior on Ti/GFRP laminates, Journal of the Society of Materials Science Japan, Vol. 59, No. 10 (2010), pp. 792-799 (in Japanese).
References_xml – reference: Sinke, J., Development of fibre metal laminates: Concurrent multi-scale modeling and testing, Journal of Materials Science, Vol. 41, No. 20 (2006), pp. 6777–6788.
– reference: Jakubczak, P. and Bienias, J. Non-destructive damage detection in fibre metal laminates, Journal of Nondestructive Evaluation, Vol. 38 (2019), Article number: 49, DOI:10.1007/s10921-019-0588-3.
– reference: Pei, C., Liu, T., Chen H. and Chen, Z., Inspection of delamination defect in first wall with a flexible EMAT-scanning system, Fusion Engineering and Design, Vol.136 (2018), pp. 549-553, DOI: 10.1016/j.fusengdes.2018.03.018.
– reference: Toyama, N. and Takatsubo, J., Lamb wave method for quantitative inspection of impact-induced delamination in CFRP plates, Journal of The Japanese Society for Non-Destructive Inspection Vol. 52, No. 11 (2003), pp. 633-638 (in Japanese).
– reference: Yamasaki, T., Nishino, H. and Katayama, T., Cure monitoring in resin transfer molding by electromagnetic acoustic transducer, Transactions of the Japan Society of Mechanical Engineers, Series A, Vol. 76, No. 762 (2010), pp. 145-150 (in Japanese).
– reference: Pärnänen, T., Kanerva, M., Sarlin, E. and Saarela, O., Debonding and impact damage in stainless steel fibre metal laminates prior to metal fracture, Composite Structures, Vol. 119 (2015), pp.777-786, DOI: 10.1016/j.compstruct.2014.09.056.
– reference: Wu, G., Yang, J. -M. and Hahn, H. T., The impact properties and damage tolerance and of bi-directionally reinforced fiber metal laminates, Journal of Materials Science, Vol. 42 (2007), pp. 948-957, DOI: 10.1007/s10853-006-0014-y.
– reference: Urabe, T., Takatsubo, J., Toyama, N., Tsuda, H. and Nagai, H., Flaw inspection of CFRP with a contact-free visualization system of ultrasound wave propagations using laser generation and air-coupled receiver, Journal of the Japan Society for Composite Materials, Vol. 38, No. 5 (2012), pp. 183-192 (in Japanese).
– reference: Leonard, F. and Withers, P. J., Impact damage characterization of fibre metal laminates by x-ray computed tomography, Proceedings of the 5th Conference on Industrial Computed Tomography (iCT) 2014 (2014), pp. 123-130.
– reference: Ibarra-Castanedo, C., Avdelidis, N. P., Grinzato, E. G., Bison, P. G., Marinetti, S., Plescanu, C. C., Bendada, A. and Maldague, X. P., Delamination detection and impact damage assessment of GLARE by active thermography, International Journal of Materials and Product Technology, Vo. 41, No. 1-4 (2011), pp. 5-16, DOI: 10.1504/IJMPT.2011.040282.
– reference: Sinke, J., Some inspection methods for quality control and in-service inspection of GLARE, Applied Composite Materials, Vol. 10 (2003), pp. 277–291, DOI: 10.1023/A:1025537229801.
– reference: Kikuchi, M. and Ichikawa, S., Estimation of the delamination shape of CFRP composite by transverse loading, Transactions of the Japan Society of Mechanical Engineers, Series A, Vol. 62, No. 596 (1996), pp. 930-936 (in Japanese).
– reference: Montinaro, N., Pitarresi, G. and Cerniglia, D., Detection and characterization of disbonds on fibre metal laminate hybrid composites by flying laser spot thermography, Composites Part B, No. 108 (2017), pp. 164–173.
– reference: Nakatani, H., Kosaka, T., Osaka, K. and Sawada, Y., Effect of titanium layer on low-velocity impact damage behavior on Ti/GFRP laminates, Journal of the Society of Materials Science Japan, Vol. 59, No. 10 (2010), pp. 792-799 (in Japanese).
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SubjectTerms Debonding
Electromagnetic aouustic transducer
Fiber metal laminate
Nondestructive testing
Shear wave
Title 電磁超音波センサによるアルミニウム‐GFRP積層板の界面はく離の検出
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