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Stress dependence of indentation modulus for carbon fiber in polymer composite
http://hdl.handle.net/2241/00157407
http://hdl.handle.net/2241/001574071b7ea45a-3af7-4766-9786-d6f939527472
名前 / ファイル | ライセンス | アクション |
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STAM_20-1-412 (1.7 MB)
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Item type | Journal Article(1) | |||||
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公開日 | 2019-08-26 | |||||
タイトル | ||||||
言語 | en | |||||
タイトル | Stress dependence of indentation modulus for carbon fiber in polymer composite | |||||
言語 | ||||||
言語 | eng | |||||
資源タイプ | ||||||
資源 | http://purl.org/coar/resource_type/c_6501 | |||||
タイプ | journal article | |||||
著者 |
河井, 昌道
× 河井, 昌道× Wang, Hongxin× Zhang, Han× Tang, Daiming× Goto, Kenta× Watanabe, Ikumu× Kitazawa, Hideaki× Mamiya, Hiroaki× Fujita, Daisuke |
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抄録 | ||||||
内容記述タイプ | Abstract | |||||
内容記述 | Elastic modulus measured through atomic force microscopy (AFM)-based indentation on single carbon fiber (CF) is found with dependence on lateral applied stress. An in situ indentation experiment inside a high-resolution transmission electron microscope was performed to quantitatively understand this phenomenon by observing microstructure change in the indented area. Change of graphitic basal plane misalignment angle during indentation was linked to a continuous change of modulus with the help of finite element simulation. The established relationship between modulus and indentation force was further used to calculate residual stress distribution in CF imbedded in a CF reinforced polymer composite using the AFM indentation technique. The stress-induced formation of nanoscale defects in the CF and their transformation into fracture were directly characterized. | |||||
書誌情報 |
en : Science and technology of advanced materials 巻 20, 号 1, p. 412-420, 発行日 2019-04 |
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ISSN | ||||||
収録物識別子タイプ | ISSN | |||||
収録物識別子 | 1468-6996 | |||||
ISSN | ||||||
収録物識別子タイプ | ISSN | |||||
収録物識別子 | 1878-5514 | |||||
書誌レコードID | ||||||
収録物識別子タイプ | NCID | |||||
収録物識別子 | AA11561821 | |||||
DOI | ||||||
識別子タイプ | DOI | |||||
関連識別子 | 10.1080/14686996.2019.1600202 | |||||
権利 | ||||||
権利情報 | © 2019 The Author(s). Published by National Institute for Materials Science in partnership with Taylor & Francis Group. | |||||
権利 | ||||||
権利情報 | This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. | |||||
著者版フラグ | ||||||
値 | publisher | |||||
出版者 | ||||||
出版者 | National Institute for Materials Science | |||||
出版者 | ||||||
出版者 | Taylor & Francis |