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タイトル一方向強化CFRP複合材の斜め方向引張試験における破断延性に関するマルチスケールモデリング
その他のタイトルMultiscale Modeling of Failure Strain in Off-Axis Tensile Testing of UD-CFRP
著者(日)吉岡, 健一; 熊谷, 裕太; 樋口, 諒; Lee, Dongyeon; 岡部, 朋永
著者(英)Yoshioka, Kenichi; Kumagai, Yuta; Higuchi, Ryo; Lee, Dongyeon; Okabe, Tomonaga
著者所属(日)Toray Composites (America), Inc. (TCA); 東北大学; 東北大学; Toray Composites (America), Inc. (TCA); 東北大学
著者所属(英)Toray Composites (America), Inc. (TCA); Tohoku University; Tohoku University; Toray Composites (America), Inc. (TCA); Tohoku University
発行日2016-03-15
発行機関など金沢工業大学材料システム研究所
Materials System Research Laboratory, Kanazawa Institute of Technology
刊行物名材料システム
Materials System
34
開始ページ7
終了ページ13
刊行年月日2016-03-15
言語jpn
eng
抄録Fiber-reinforced polymer matrix composites are fractured by accumulation of microscopic damage in fiber length scale. Therefore, accurate prediction of microscopic crack initiation is extremely important to predict failure of composite structures. In this study, multiscale modeling approach that consists of a macroscopic scale analysis and a microscopic scale analysis is proposed, and is applied to tensile testing of unidirectional off-axis specimens of carbon fiber reinforced plastic (CFRP) to predict their failure strain. On a macroscopic analysis, off-axis specimen is modeled as a homogeneous body, and 3D finite element analyses (FEA) are performed using an anisotropic elasto-plastic constitutive law to obtain accurate deformation field under off-axis loading. On a microscopic scale, 3D periodic unit cell (PUC) analyses are conducted by applying strain history obtained from macroscopic FEA to predict initial cracking strain. Two failure criteria are employed for matrix resin in PUC analysis. The first is the dilatational energy criterion for brittle failure, and the second is the ductile damage growth law for ductile failure. In order to validate the accuracy of proposed multiscale approach, predicted results are compared with the experimental results.
内容記述形態: 図版あり
Physical characteristics: Original contains illustrations
キーワードマルチスケールモデリング; CFRP; 破断延性; 周期セル解析; 斜め方向引張試験; Multiscale Modeling; CFRP; Failure Strain; Periodic Unit Cell Simulation; Off-Axis Tensile Testing
資料種別Journal Article
NASA分類Composite Materials
ISSN0286-6013
NCIDAN00027831
SHI-NOAA1640023001
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/571963


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