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https://hdl.handle.net/20.500.14094/0100482051
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2025-07-02
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0100482051 (fulltext)
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5.77 MB
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メタデータID
0100482051
アクセス権
open access
出版タイプ
Version of Record
タイトル
Proposal of Evaluation Method for Crack Propagation Behaviors of Second-Generation Acrylic Adhesives under Mode I Static Loading
著者
Ogawa, Yuki ; Naito, Kimiyoshi ; Harada, Keisuke ; Oguma, Hiroyuki
著者ID
A2771
研究者ID
1000050880788
ORCID
0000-0002-2969-8997
KUID
https://kuid-rm-web.ofc.kobe-u.ac.jp/search/detail?systemId=7c9fec8cb06a3aec520e17560c007669
著者名
Ogawa, Yuki
小川, 裕樹
オガワ, ユウキ
所属機関名
工学研究科
著者名
Naito, Kimiyoshi
著者名
Harada, Keisuke
著者名
Oguma, Hiroyuki
言語
English (英語)
収録物名
Polymers
巻(号)
15(8)
ページ
1878
出版者
MDPI
刊行日
2023-04
公開日
2023-05-24
抄録
Second-generation acrylic (SGA) adhesives, possessing high strength and toughness, are applicable in automotive body structures. Few studies have considered the fracture toughness of the SGA adhesives. This study entailed a comparative analysis of the critical separation energy for all three SGA adhesives and an examination of the mechanical properties of the bond. Loading-unloading test was performed to evaluate crack propagation behaviors. In the loading–unloading test of the SGA adhesive with high ductility, plastic deformation was observed in the steel adherends; the arrest load dominated the propagation and non-propagation of crack for adhesive. The critical separation energy of this adhesive was assessed by the arrest load. In contrast, for the SGA adhesives with high tensile strength and modulus, the load suddenly decreased during loading, and the steel adherend was not plastically deformed. The critical separation energies of these adhesives were assessed using the inelastic load. The critical separation energies for all the adhesives were higher for thicker adhesive. Particularly, the critical separation energies of the highly ductile adhesives were more affected by the adhesive thickness than highly strength adhesives. The critical separation energy from the analysis using the cohesive zone model agreed with the experimental results.
キーワード
acrylic adhesive
crack propagation
fracture toughness
cohesive zone
カテゴリ
工学研究科
学術雑誌論文
権利
© 2023 by the authors. Licensee MDPI, Basel, Switzerland.
This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license
関連情報
DOI
https://doi.org/10.3390/polym15081878
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資源タイプ
journal article
eISSN
2073-4360
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