超音波伝ぱの可視化による有孔CFRP積層板中の層間はく離検出
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Published in | 日本機械学会論文集 A編 Vol. 72; no. 724; pp. 1882 - 1887 |
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Main Authors | , , , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本機械学会
2006
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Online Access | Get full text |
ISSN | 0387-5008 1884-8338 |
DOI | 10.1299/kikaia.72.1882 |
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Author | 高坪, 純治 遠山, 暢之 矢代, 茂樹 岡部, 朋永 武田, 展雄 |
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Author_xml | – sequence: 1 fullname: 武田, 展雄 organization: 東京大学大学院新領域創成科学研究科 – sequence: 1 fullname: 遠山, 暢之 organization: 産業技術総合研究所計測フロンティア研究部門 – sequence: 1 fullname: 高坪, 純治 organization: 産業技術総合研究所計測フロンティア研究部門 – sequence: 1 fullname: 岡部, 朋永 organization: 東北大学大学院工学研究科 – sequence: 1 fullname: 矢代, 茂樹 organization: 産業技術総合研究所計測フロンティア研究部門 |
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References | (2) Chang, K.Y. et al., Damage tolerance of laminated composites containing an open hole and subjected to tensile loadings, Journal of Composite Materials, Vol. 25, No. 3 (1991), pp. 274-301. (6) Okabe, Y. et al., Detection of transverse cracks in CFRP composites using embedded fiber Bragg grating sensors, Smart Materials and Structures, Vol. 9, No. 6 (2000), pp. 832-838. (7) Takeda, S. et al., Delamination detection in CFRP laminates with embedded small-diameter fiber Bragg grating sensors, Composites Part A, Vol. 33, No. 7 (2002), pp. 971-980. (11) Wevers, M., Listening to the sound of materials : Acoustic emission for the analysis of material behaviour, NDT & E International, Vol. 30, No. 2 (1997), pp. 99-106. (15) Toyama, N. et al., Lamb wave evaluation and localization of transverse cracks in cross-ply laminates, Journal of Materials Science, Vol. 38, No. 8 (2003), pp. 1765-1771. (5) Takeda, N., Research and development of structural health monitoring technology (in Japanese), Aeronautical and Space Science Japan, Vol. 52, No. 605 (2004), pp. 142-148. (16) Takatsubo, J. et al., Visualization of elastic waves by digital laser ultrasonics (in Japanese), Transactions of the Japan Society of Mechanical Engineers, Series C, Vol. 65, No. 639 (1999), pp. 4299-4304. (17) Takatsubo, J. et al., Generation laser scanning method for the visualization of ultrasounds propagating on a 3-D object with an arbitrary shape (in Japanese), Transactions of the Japan Society of Mechanical Engineers, Series A, Vol. 72, No. 718 (2006), pp. 945-950. (18) Rose, J. L., Ultrasonic waves in solid media, (1999), p. 101, Cambridge University Press. (1) Kortschot, M.T. and Beaumont, P.W.R., Damage mechanics of composite materials : I-measurements of damage and strength, Composites Science and Technology, Vol. 39, No. 4 (1990), pp. 289-301. (3) Yashiro, S. et al., A new approach to predicting multiple damage states in composite laminates with embedded FBG sensors, Composites Science and Technology, Vol. 65, No. 3-4 (2005), pp. 659-667. (8) Kageyama, K. et al., Smart marine structures : an approach to the monitoring of ship structures with fiber-optic sensors, Smart Materials and Structures, Vol. 7, No. 4 (1998), pp. 472-478. (14) Johnson, M. and Gudmundson, P., Broad-band transient recording and characterization of acoustic emission events in composite laminates, Composites Science and Technology, Vol. 60, No. 15 (2000), pp. 2803-2818. (9) Kosaka, T. et al., Strain monitoring of braided composites by using embedded fiber-optic strain sensors, Advanced Composite Materials, Vol. 13, No. 3-4 (2004), pp. 157-170. (13) Mizutani, Y. et al., Fracture mechanism characterization of cross-ply carbon-fiber composites using acoustic emission analysis, NDT & E International, Vol. 33, No. 2 (2000), pp. 101-110. (19) Toyama, N. et al., Stiffness evaluation and damage identification in composite beam under tension using Lamb waves, Acta Materialia, Vol. 53, No. 16 (2005), pp. 4389-4397. (12) Tsuda, H. et al., Damage monitoring of carbon fiberreinforced plastics with Michelson interferometric fiber-optic sensors, Journal of Materials Science, Vol. 34, No. 17 (1999), pp. 4163-4172. (4) Chang, F.K. ed., Structural Health Monitoring 2003, (2003), p. 1, DEStech Publications. (10) Gorman, M.R. and Ziola, S. M., Plate waves produced by transverse matrix cracking, Ultrasonics, Vol. 29, No. 3 (1991), pp. 245-251. |
References_xml | – reference: (16) Takatsubo, J. et al., Visualization of elastic waves by digital laser ultrasonics (in Japanese), Transactions of the Japan Society of Mechanical Engineers, Series C, Vol. 65, No. 639 (1999), pp. 4299-4304. – reference: (18) Rose, J. L., Ultrasonic waves in solid media, (1999), p. 101, Cambridge University Press. – reference: (9) Kosaka, T. et al., Strain monitoring of braided composites by using embedded fiber-optic strain sensors, Advanced Composite Materials, Vol. 13, No. 3-4 (2004), pp. 157-170. – reference: (3) Yashiro, S. et al., A new approach to predicting multiple damage states in composite laminates with embedded FBG sensors, Composites Science and Technology, Vol. 65, No. 3-4 (2005), pp. 659-667. – reference: (13) Mizutani, Y. et al., Fracture mechanism characterization of cross-ply carbon-fiber composites using acoustic emission analysis, NDT & E International, Vol. 33, No. 2 (2000), pp. 101-110. – reference: (11) Wevers, M., Listening to the sound of materials : Acoustic emission for the analysis of material behaviour, NDT & E International, Vol. 30, No. 2 (1997), pp. 99-106. – reference: (17) Takatsubo, J. et al., Generation laser scanning method for the visualization of ultrasounds propagating on a 3-D object with an arbitrary shape (in Japanese), Transactions of the Japan Society of Mechanical Engineers, Series A, Vol. 72, No. 718 (2006), pp. 945-950. – reference: (14) Johnson, M. and Gudmundson, P., Broad-band transient recording and characterization of acoustic emission events in composite laminates, Composites Science and Technology, Vol. 60, No. 15 (2000), pp. 2803-2818. – reference: (7) Takeda, S. et al., Delamination detection in CFRP laminates with embedded small-diameter fiber Bragg grating sensors, Composites Part A, Vol. 33, No. 7 (2002), pp. 971-980. – reference: (12) Tsuda, H. et al., Damage monitoring of carbon fiberreinforced plastics with Michelson interferometric fiber-optic sensors, Journal of Materials Science, Vol. 34, No. 17 (1999), pp. 4163-4172. – reference: (1) Kortschot, M.T. and Beaumont, P.W.R., Damage mechanics of composite materials : I-measurements of damage and strength, Composites Science and Technology, Vol. 39, No. 4 (1990), pp. 289-301. – reference: (6) Okabe, Y. et al., Detection of transverse cracks in CFRP composites using embedded fiber Bragg grating sensors, Smart Materials and Structures, Vol. 9, No. 6 (2000), pp. 832-838. – reference: (10) Gorman, M.R. and Ziola, S. M., Plate waves produced by transverse matrix cracking, Ultrasonics, Vol. 29, No. 3 (1991), pp. 245-251. – reference: (15) Toyama, N. et al., Lamb wave evaluation and localization of transverse cracks in cross-ply laminates, Journal of Materials Science, Vol. 38, No. 8 (2003), pp. 1765-1771. – reference: (5) Takeda, N., Research and development of structural health monitoring technology (in Japanese), Aeronautical and Space Science Japan, Vol. 52, No. 605 (2004), pp. 142-148. – reference: (19) Toyama, N. et al., Stiffness evaluation and damage identification in composite beam under tension using Lamb waves, Acta Materialia, Vol. 53, No. 16 (2005), pp. 4389-4397. – reference: (8) Kageyama, K. et al., Smart marine structures : an approach to the monitoring of ship structures with fiber-optic sensors, Smart Materials and Structures, Vol. 7, No. 4 (1998), pp. 472-478. – reference: (2) Chang, K.Y. et al., Damage tolerance of laminated composites containing an open hole and subjected to tensile loadings, Journal of Composite Materials, Vol. 25, No. 3 (1991), pp. 274-301. – reference: (4) Chang, F.K. ed., Structural Health Monitoring 2003, (2003), p. 1, DEStech Publications. |
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Title | 超音波伝ぱの可視化による有孔CFRP積層板中の層間はく離検出 |
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