強化繊維径および界面特性を考慮したGF/PA射出成形材の引張強度予測

Saved in:
Bibliographic Details
Published in日本機械学会論文集 Vol. 84; no. 860; p. 17-00582
Main Authors 白木, 伶治, 岡本, 彪, 小澤, 憲人, 金, 太成, 平山, 紀夫, 谷口, 憲彦, 西脇, 剛史, 細井, 厚志, 川田, 宏之
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本機械学会 2018
Subjects
Online AccessGet full text

Cover

Loading…
Author 川田, 宏之
白木, 伶治
小澤, 憲人
金, 太成
平山, 紀夫
谷口, 憲彦
細井, 厚志
岡本, 彪
西脇, 剛史
Author_xml – sequence: 1
  fullname: 白木, 伶治
  organization: 早稲田大学 理工学術院 大学院基幹理工学研究科
– sequence: 2
  fullname: 岡本, 彪
  organization: 早稲田大学 理工学術院 大学院基幹理工学研究科
– sequence: 3
  fullname: 小澤, 憲人
  organization: 早稲田大学 理工学術院 大学院基幹理工学研究科
– sequence: 4
  fullname: 金, 太成
  organization: 早稲田大学 理工学術院 大学院基幹理工学研究科
– sequence: 5
  fullname: 平山, 紀夫
  organization: 日本大学 生産工学部機械工学科
– sequence: 6
  fullname: 谷口, 憲彦
  organization: (株)アシックス スポーツ工学研究所
– sequence: 7
  fullname: 西脇, 剛史
  organization: (株)アシックス スポーツ工学研究所
– sequence: 8
  fullname: 細井, 厚志
  organization: 早稲田大学 理工学術院 基幹理工学部
– sequence: 9
  fullname: 川田, 宏之
  organization: 早稲田大学 理工学術院 基幹理工学部
BookMark eNo9kE1LAkEAhocoyMw_0H9YnZ3Zj9mjSFoh1KFuwTKzO1suarHrpZtrRiYeJLBOEnioS0kQfSjWn9lmt_5FWuHlfQ7vy3N4V8Bi9ajKAViTYVpGhpGpebTqu36Fp2VdglAlaAEkkEx0ydA1eRmkfL_EINaQSrCuJsC-mLyKzlU8ascvD-KjGQbtsNEKg6e41_nuD-KLUVS_CxuXX_XT6GwYBtdhcFPIZ3ay4rEpzsdRqyveB1G_GwZDMemJyfPMN779HLeit_tVsOTQss9T_0yCvfz6bm5DKm4XNnPZouQirEAJY4dhhdkMOQ5TVIs5XOPU4dywmQIdjAjVoU2IiqdpMSpTZFBDZYRb9rTiOAm2_ryuX6MH3Dz2ShXqnZjUq5WsMjfnp5hEMYkGZ5B18_ee-cg6pJ7pUvwDZ6OFqg
ContentType Journal Article
Copyright 2018 一般社団法人日本機械学会
Copyright_xml – notice: 2018 一般社団法人日本機械学会
DOI 10.1299/transjsme.17-00582
DeliveryMethod fulltext_linktorsrc
Discipline Engineering
EISSN 2187-9761
EndPage 17-00582
ExternalDocumentID article_transjsme_84_860_84_17_00582_article_char_ja
GroupedDBID ALMA_UNASSIGNED_HOLDINGS
GROUPED_DOAJ
ID FETCH-LOGICAL-j2340-33fb34bdb2ffb45cbfe6eafee9db40f328a70d88530d8cba1a29a95b8ecd8a7e3
IngestDate Sun Jul 28 05:07:49 EDT 2024
IsDoiOpenAccess true
IsOpenAccess true
IsPeerReviewed true
IsScholarly true
Issue 860
Language Japanese
LinkModel OpenURL
MergedId FETCHMERGED-LOGICAL-j2340-33fb34bdb2ffb45cbfe6eafee9db40f328a70d88530d8cba1a29a95b8ecd8a7e3
OpenAccessLink https://www.jstage.jst.go.jp/article/transjsme/84/860/84_17-00582/_article/-char/ja
ParticipantIDs jstage_primary_article_transjsme_84_860_84_17_00582_article_char_ja
PublicationCentury 2000
PublicationDate 2018
PublicationDateYYYYMMDD 2018-01-01
PublicationDate_xml – year: 2018
  text: 2018
PublicationDecade 2010
PublicationTitle 日本機械学会論文集
PublicationYear 2018
Publisher 一般社団法人 日本機械学会
Publisher_xml – name: 一般社団法人 日本機械学会
References Miller, B., Muri, P. and Rebenfeld, L., A microbond method for determination of the shear strength of a fiber/resin interface, Vol.28 (1987), pp.17-32.
Iba, H., Chang, T. and Kagawa, Y., Optically transparent continuous glass fibre-reinforced epoxy matrix composite: fabrication, optical and mechanical properties, Composites Science and Technology, Vol.62 (2002), pp.2043-2052.
Tanaka, K., Minoshima, K., Grela, W. and Komai, K., Characterization of the aramid/epoxy interfacial properties by means of pull-out test and influence of water absorption, Composites Science and Technology, Vol.62 (2002), pp.2169-2177.
Penn, L.S. and Bowler, E.R., A new approach to surface energy characterization for a adhesive performance prediction, Surface and Interface Analysis, Vol.3, No.4 (1981), pp.161-164.
Kim, T., Arao, Y., Taniguchi, N., Nishiwaki, T., Hirayama, N., Hosoi, A. and Kawada, H., Impact properties of injection molded long fiber reinforced thermoplastics, Proceedings of the JSCM JCCM-6 (2015), 1A-15 (in Japanese).
Zhandarov, S. and Mäder, E., An alternative method of determining the local interfacial shear strength from force-displacement curves in the pull-out and microbond tests, International Journal of Adhesion and Adhesives, Vol.55 (2014), pp.37-42.
Fukuda, H. and Chou, T., A probability theory of the strength of short-fibre composites with variable fibre length and orientation, Journal of Materials Science, Vol.17 (1982), pp.1003-1011.
Ozawa, K., Kim, T., Arao, Y., Taniguchi, N., Nishiwaki, T., Hirayama, N., Nakamura, K. and Kawada, H., Influence of fiber diameter and cross sectional shape on the impact properties of short glass fiber reinforced polyamide, Proceedings of the JSME M&M2014 Material Mechanics Conference (2014), OS1716 (in Japanese).
Thomason, J.L., The influence of fiber length, diameter and concentration on the strength and strain to failure of glass fiberrein-forced polyamide 6,6, Composites: Part A, Vol.39 (2008), pp.1618-1624.
Gu, X.H., Young, R.J. and Day, R.J., Deformation micromechanics in model carbon fiber-reinforced composites, Journal of Materials Science, Vol.30 (1995), pp.1409-1419.
Yang, L. and Thomason, J.L., Interface strength in glass fibre-polypropylene measured using the fibre pull-out and microbond methods, 17th International Conference on Composite Materials (2009).
Thomason, J.L. and Yang, L., Temperature dependence of the interfacial shear strength in glass-fibre epoxy composites, Composite Science and Technology, Vol.96 (2014), pp.7-12.
Ozawa, K., Kim, T., Tsunoda, D., Arao, Y., Taniguchi, N., Nishiwaki, T., Hosoi, A. and Kawada, H., Influence of fiber diameter on impact tensile properties of injection-molded long glass fiber reinforced polyamide, Transactions of the JSME (in Japanese) Vol.82, No.839 (2016), DOI:10.1299/transjsme.15-00657.
Taniguchi, N., Arao, Y., Nishiwaki, T., Hirayama, N., Nakamura, K. and Kawada, H., Experimental study on impact tensile property of glass fiber, Transaction of the Japan Society for Composite Materials, Vol.38, No.4 (2012), pp.137-143 (in Japanese).
Thomason, J.L., The influence of fiber length, diameter and concentration on the impact performance of long glass-fiber reinforced polyamide 6,6, Composites: Part A, Vol.40 (2009), pp.114-124.
Morlin, B., Vas, L.M. and Czigany, T., Investigation of fiber/matrix adhesion: test speed and specimen shape effects in the cylinder test, Journal of Materials Science, Vol.48 (2013), pp.3185-3191.
Kelly, A. and Tyson, W.R., Tensile properties of fiber-reinforced materials: Copper/tungsten and copper/molybdenum, Journal of the Mechanics and Physics of Solids, Vol.13 (1965), pp.329-350.
Stewart, R., Rebounding automotive industry welcome news for FRP, Reinforced Plastics, Vol.55, No.1 (2011a), pp.38-44.
Stewart, R., Thermoplastic composites - recyclable and fast to process, Reinforced Plastic, Vol.55, No.3 (2011b), pp.22-28.
Tamrakar, S., Haque, B.Z.G. and Gillespie, J.W., High rate test method for fiber-matrix interface characterization, Polymer Testing, Vol.52 (2016), pp.174-183.
Taniguchi, N., Nishiwaki, T., Hirayama, N., Nishida, H. and Kawada, H., Dynamic tensile properties of carbon fiber composite based on thermoplastic epoxy resin loaded in matrix-dominant directions, Composites Science and Technology, Vol.69 (2009), pp.207-213.
De Monte, M., Moosbrugger, E. and Quaresimin, M., Influence of temperature and thickness on the off-axis behavior of short glass fibre reinforced polyamide 6.6 - Quasi-static loading, Composites: Part A, Vol.41 (2010), pp.859-871.
Nygård, P. and Gustafson, C., Interface and Impregnation relevant tests for continuous glass fibre-polypropylene composites, Composites: Part A, Vol.34 (2003), pp.995-1006.
Notta-Cuvier, D., Nciri, M., Lauro, F., Delille, R., Chaari, F., Robache, F., Haugou, G. and Maalej, Y., Coupled influence of strain rate and heterogeneous fibre orientation on the mechanical behaviour of short-glass-fibre reinforced polypropylene, Mechanics of Materials, Vol.100 (2016), pp.186-197.
Bernasconi, A., Davoli, P., Basile, A. and Filippi, A., Effect of fiber orientation on the fatigue behavior of a short glass fiber reinforced polyamide-6, International Journal of Fatigue, Vol.29 (2007), pp.199-208.
Van Hattum, V. and Van Breugel, S., LFT: the future of reinforced thermoplastics?, Reinforced Plastics, Vol.45, No.6 (2001), pp.42-44.
Kim, T., Oshima, K. and Kawada, H., Impact tensile properties and strength development mechanism of glass for reinforcement fiber, Journal of Physics: Conference Series Vol.451 (2013) 012006.
Yue, C.Y., Looi, H.C. and Quek, M.Y., Assessment of fibre-matrix adhesion and interfacial properties using the pull-out test, International Journal of Adhesion and Adhesives, Vol.15 (1995), pp.73-80.
Nomura, M., Kanno, S. and Yamao, S., Influence of shape of cross section on properties of GF reinforced thermo-plastics, Transaction of the Japan Society for Composite Materials, Vol.36, No.6 (2010), pp.230-236 (in Japanese).
Désarmot, G. and Favre, J. P., Advances in pull-out testing and data analysis, Composite Science and Technology, Vol.42 (1991), pp.151-187.
References_xml
SSID ssib036258375
ssib016970096
ssib051641555
ssj0002911760
ssib016970100
Score 2.1439903
SourceID jstage
SourceType Publisher
StartPage 17-00582
SubjectTerms Composite materials
Fiber diameter
Impact properties
Interfacial properties
LFT
Strain rate dependency
Title 強化繊維径および界面特性を考慮したGF/PA射出成形材の引張強度予測
URI https://www.jstage.jst.go.jp/article/transjsme/84/860/84_17-00582/_article/-char/ja
Volume 84
hasFullText 1
inHoldings 1
isFullTextHit
isPrint
ispartofPNX 日本機械学会論文集, 2018, Vol.84(860), pp.17-00582-17-00582
link http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwrV3NaxQxFB9KvehB_MRvejAn2Xa-kkmOme1si6D00EIPwrCzM3NYsIpuLx6kWyvW0kMRqqci9KAXLYL40aX6z4yzq_-F72Wyu7PUgxYv07fJyy_vY8J7SZOMYVw3Y8qiJDIrEM15xY09gf8k9CoQGhLTTFJLxHg4-dZtNrvg3lyki2PjbmnX0nIrmmw8-uO5kqN4FcrAr3hK9h88OwCFAqDBv_AED8Pzr3xMAkr8KvE9JHiVCEYCj_iCcKkIRuS04gkId0ngQNqoqoCwCee6xHeQWSiEQBAxTaSNJVwgVMBwM4T0dCsBVRxLuKOqKJGBxhFen6jN1ECpOan6NlXfgA4CSdWGE2GqqqInhl1iiWqMcEorEEirR0f0BBAJerpIoA6M-JzoGySbfbswlEZSRVShFgkJutUUYaNUAAXW0VDQnUTFpK-MyPAJAqM5fMIHq5fKUAIF18AcX1GN4KuGPoD7Q36KBdIaCqL4C93lCBvYSUkHzpJuwQYyKMBCWb_EL1A6YfXRoIEc2ra8kqPDDo46BaN8hx7kyioeNvWVyUFRqXwK7wPaXvd542jGLAK_ijCQ3nkVyEetcjgsvtinhz0vPvagoxskNPgZSruULZWLDkVjSHXgbWth0tV8eDeZHG0_csu5HkPhgDnkbgi94x8Lt0hAs7DPhAcSwybMio7ZeL0jbth9HPSjiMWEhxPzkd_W8BJKyNgod4ZJM7UYJtV0sDJrQ_z3mKlP2IEOU4c1gHy1CbO3_s5PlYzOnzJO6lnkhCwkPW2MNetnjBOlu0XPGnfygy_55sve_kbv8_v8-1rW3shW17P2x9725q-d3d7z_e7K22z1xc-VJ92ne1n7VdZ-PVObmpP5h7X8Wae7vpV_2-3ubGXtvfxgOz_4hHidNz86692v784ZC7Vgvjpb0Z9SqTRtx4VMy0kjx43iyE7TyKWNKE1YUk-TRMSRa6aOzeueGXPI3eHZiOpW3RZ1QSOeNGKoSpzzxvjSvaXkgjEBtrNsyK8op6brRhGHORcuwzDGHcCnF41qYZrwfnFfTngU3176LyiXjeM40Iol0yvGeOvBcnIVJhGt6Jp6Z34DG0Lrww
link.rule.ids 315,783,787,4033,27937,27938,27939
linkProvider ISSN International Centre
openUrl ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=%E5%BC%B7%E5%8C%96%E7%B9%8A%E7%B6%AD%E5%BE%84%E3%81%8A%E3%82%88%E3%81%B3%E7%95%8C%E9%9D%A2%E7%89%B9%E6%80%A7%E3%82%92%E8%80%83%E6%85%AE%E3%81%97%E3%81%9FGF%2FPA%E5%B0%84%E5%87%BA%E6%88%90%E5%BD%A2%E6%9D%90%E3%81%AE%E5%BC%95%E5%BC%B5%E5%BC%B7%E5%BA%A6%E4%BA%88%E6%B8%AC&rft.jtitle=%E6%97%A5%E6%9C%AC%E6%A9%9F%E6%A2%B0%E5%AD%A6%E4%BC%9A%E8%AB%96%E6%96%87%E9%9B%86&rft.au=%E7%99%BD%E6%9C%A8%2C+%E4%BC%B6%E6%B2%BB&rft.au=%E5%B2%A1%E6%9C%AC%2C+%E5%BD%AA&rft.au=%E5%B0%8F%E6%BE%A4%2C+%E6%86%B2%E4%BA%BA&rft.au=%E9%87%91%2C+%E5%A4%AA%E6%88%90&rft.date=2018&rft.pub=%E4%B8%80%E8%88%AC%E7%A4%BE%E5%9B%A3%E6%B3%95%E4%BA%BA+%E6%97%A5%E6%9C%AC%E6%A9%9F%E6%A2%B0%E5%AD%A6%E4%BC%9A&rft.eissn=2187-9761&rft.volume=84&rft.issue=860&rft.spage=17-00582&rft.epage=17-00582&rft_id=info:doi/10.1299%2Ftransjsme.17-00582&rft.externalDocID=article_transjsme_84_860_84_17_00582_article_char_ja