高強度GFRP積層板における内部欠陥からの層間き裂と貫通層間き裂の疲労進展特性の関係
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Published in | 日本機械学会論文集 A編 Vol. 72; no. 717; pp. 712 - 719 |
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Main Authors | , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本機械学会
01.05.2006
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Online Access | Get full text |
ISSN | 0387-5008 1884-8338 |
DOI | 10.1299/kikaia.72.712 |
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Author | 田中, 啓介 松原, 剛 |
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Author_xml | – sequence: 1 fullname: 田中, 啓介 organization: 名古屋大学大学院工学研究科 – sequence: 1 fullname: 松原, 剛 organization: 川崎重工業 (株) 技術研究所 |
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References | (9) S. N. Chatterjee, R. B. Pipes and R.A. Blake, Jr, Growth of elliptic delaminations in laminates under cycle transverse shear stresses, ASTM SIP, 972, (1988), 281-297 (6) Kikuchi, M. and Ichikawa, S, Estimation of the Delamination Shape of OFRP Composite by Transverse Loading Transactions of the Japan Society of Mechanical Engineers, Series A, 62-596, A (1996), 930-936 (11) D.Hull and T. W. Clyne, An Introduction to Composite Materials Second Edition, Baifukan, (2003), 26-28 (7) Ogihara, S, Takeda, S, Kobayashi, S and Kobayashi, A, Experimatal Characterization of the Microscopic Damage Initiation and Growth in Quasi-Isotropic CFRP Laminates, Transactions of the Japan Society ofMechanical Engineers, Series A, 62-602, A (1995), 2250-2255 (10) Rybicki, E.F. and Kannnine, M.F., A Finite Element Calculation of Stress Intensity Factors by a Modified Crack Closure Integral, Engineering Fracture Mechanics, Vol. 9 (1977), 931-938 (3) Matsubara, G. and Tanaka, K. Effect of Stress Ratio on Growth Behavior of Mode III Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 72-717, A (2006), 704-711 (5) Kamiya, S, Sekine, H and Yanada, K, A Numerical Approach to the Interlaminar Crack Formatin Process in Cross-Ply Laminates due to Transverse Loading, Transactions of the Japan Society of Mechanical Engineers, Series A, 62-593, A (1996), 18-25 (8) S. N. Chatterjee, V. Ramanath, W. A. Dick and Y. Chen Criticality of disbonds in laminated composites, ASTM SIP, 836, (1984), 161-174 (4) Matsubara, G., Nishikawa, H., Nihei, K. and Tanaka, K., Mode-Mixty Effect on Growth Behavior of Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 70-700 (2004), 1733-1740 (1) Matsubara, G., Ono, H. and Tanaka, K., Effect of Fiber Bridging on Growth Behavior of Mode I Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 70-695 (2004), 928-935. (2) Matsubara, G., Ono, H. and Tanaka, K., Effect of Stress Ratio on Growth Behavior of Mode II Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 70-692 (2004), 580-587. |
References_xml | – reference: (1) Matsubara, G., Ono, H. and Tanaka, K., Effect of Fiber Bridging on Growth Behavior of Mode I Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 70-695 (2004), 928-935. – reference: (10) Rybicki, E.F. and Kannnine, M.F., A Finite Element Calculation of Stress Intensity Factors by a Modified Crack Closure Integral, Engineering Fracture Mechanics, Vol. 9 (1977), 931-938 – reference: (11) D.Hull and T. W. Clyne, An Introduction to Composite Materials Second Edition, Baifukan, (2003), 26-28 – reference: (3) Matsubara, G. and Tanaka, K. Effect of Stress Ratio on Growth Behavior of Mode III Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 72-717, A (2006), 704-711 – reference: (8) S. N. Chatterjee, V. Ramanath, W. A. Dick and Y. Chen Criticality of disbonds in laminated composites, ASTM SIP, 836, (1984), 161-174 – reference: (2) Matsubara, G., Ono, H. and Tanaka, K., Effect of Stress Ratio on Growth Behavior of Mode II Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 70-692 (2004), 580-587. – reference: (9) S. N. Chatterjee, R. B. Pipes and R.A. Blake, Jr, Growth of elliptic delaminations in laminates under cycle transverse shear stresses, ASTM SIP, 972, (1988), 281-297 – reference: (5) Kamiya, S, Sekine, H and Yanada, K, A Numerical Approach to the Interlaminar Crack Formatin Process in Cross-Ply Laminates due to Transverse Loading, Transactions of the Japan Society of Mechanical Engineers, Series A, 62-593, A (1996), 18-25 – reference: (6) Kikuchi, M. and Ichikawa, S, Estimation of the Delamination Shape of OFRP Composite by Transverse Loading Transactions of the Japan Society of Mechanical Engineers, Series A, 62-596, A (1996), 930-936 – reference: (7) Ogihara, S, Takeda, S, Kobayashi, S and Kobayashi, A, Experimatal Characterization of the Microscopic Damage Initiation and Growth in Quasi-Isotropic CFRP Laminates, Transactions of the Japan Society ofMechanical Engineers, Series A, 62-602, A (1995), 2250-2255 – reference: (4) Matsubara, G., Nishikawa, H., Nihei, K. and Tanaka, K., Mode-Mixty Effect on Growth Behavior of Interlaminar Fatigue Cracks in High Strength GFRP, Transactions of the Japan Society of Mechanical Engineers, Series A, 70-700 (2004), 1733-1740 |
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Title | 高強度GFRP積層板における内部欠陥からの層間き裂と貫通層間き裂の疲労進展特性の関係 |
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