Damage Growth Prediction of Unidirectional CFRP Composites Using Discrete Electrical Resistance Models
スポンサーリンク
概要
著者
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Park Jae
The University Of Tokyo
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Takeda Nobuo
Graduate School Of Frontier Sciences The University Of Tokyo
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Song Dong
Graduate School Of Frontier Science Univ. Of Tokyo
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Takeda Nobuo
The University of Tokyo
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PARK Jae
Graduate School of Frontier Science, Univ. of Tokyo
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OKABE Tomonaga
Graduate School of Frontier Science, Univ. of Tokyo
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Okabe Tomonaga
Smart Structure Research Center Aist
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Takeda Nobuo
Graduate School Of Frontier Sciences C
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Song Dong
Graduate Program of Photonics and Applied Physics, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea
関連論文
- Damage mechanics analysis for predicting mechanical behavior of general composite laminates containing transverse cracks
- Experimental characterization of the effects of stacking sequence on the transverse crack behavior in quasi-isotropic interleaved CFRP laminates
- Transverse cracking in CFRP cross-ply laminates with interlaminar resin layers
- Experimental characterization of microscopic damage progress in quasi-isotropic CFRP laminates : effect of interlaminar-toughened layers
- Analysis of stress and displacement fields in interlaminar-toughened composite laminates with transverse cracks
- Microscopic fatigue failure process in interleaved and toughness-improved CFRP cross-ply laminates
- Experimental characterization of microscopic damage progress in AS4/PEEK cross-ply laminates under thermal cycling
- Compensation of Incomplete Round Trip in an Herriott Multipass-Based Kerr-Lens Mode-Locked Ti:Sapphire Oscillator via an Output Coupler Position
- 229 Experimental evaluation of fragmentation behavior in single carbon fiber composite
- Damage Growth Prediction of Unidirectional CFRP Composites Using Discrete Electrical Resistance Models
- Composition and Characterization of Femtosecond Optical Lattices Using Double Axicon Holographic Pattern
- 217 Nonlinear stress-strain behavior in CFRP laminates
- Evaluation of the measurement method for the electrical resistance change of unidirectional CFRP composites using electrical potential theory
- 126 Analysis of Electrically Conductive Internal Network in CFRP Composites Using Anisotropy of Electrical Conductivity
- 213 Prediction of the Whole Stress-strain Curve and Final Composite Strength of GFRP Cross-ply Laminates
- Preface
- Preface