Evaluation of different advanced finite element concepts for detailed stress analysis of laminated composite structures
被引:0
作者:
K. Rah
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机构:Ghent University,Department of Materials Science and Engineering
K. Rah
W. Van Paepegem
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机构:Ghent University,Department of Materials Science and Engineering
W. Van Paepegem
A. M. Habraken
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机构:Ghent University,Department of Materials Science and Engineering
A. M. Habraken
R. Alves de Sousa
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机构:Ghent University,Department of Materials Science and Engineering
R. Alves de Sousa
R. A. F. Valente
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机构:Ghent University,Department of Materials Science and Engineering
R. A. F. Valente
机构:
[1] Ghent University,Department of Materials Science and Engineering
[2] University of Liège,ArGEnCo Department Architecture, Geology, Environment & Constructions
[3] University of Aveiro,Department of Mechanical Engineering
来源:
International Journal of Material Forming
|
2009年
/
2卷
关键词:
Specific stiffness and strength;
Fibre-reinforced plastic plies;
Interalaminar damage;
Interlaminar damage;
Delamination;
Laminated composite structures;
Solid-shell element;
Interlaminar stresses;
D O I:
暂无
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摘要:
Despite their high specific stiffness and strength, laminated composite materials, e.g. fibre-reinforced plastic plies stacked at different fibre orientations, are susceptible to damage. Damage can be divided into interalaminar damage and interlaminar damage. Delamination is a typical kind of interlaminar damage which occurs in laminated composite materials, often accompanied with intralaminar damage, and may lead to a catastrophic structural collapse. The first and most crucial step in the prediction of failure of Laminated Composite Structures (LCS) is to accurately determine the stresses, particularly the three transverse stress components, also called the interlaminar stresses. It is proposed in the present paper that the integration of a displacement based solid-shell formulation and partial-hybrid stress formulation will lead to an accurate and robust solid-shell element, suitable for the efficient and detailed interlaminar stress calculation.
机构:
Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 08826, South KoreaSeoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 08826, South Korea
Han, Jang-Woo
Kim, Jun-Sik
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机构:
Kumoh Natl Inst Technol, Dept Mech Syst Engn, Gyeongbuk 39177, South KoreaSeoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 08826, South Korea
Kim, Jun-Sik
Cho, Maenghyo
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机构:
Seoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 08826, South Korea
Seoul Natl Univ, Inst Adv Machines & Design, Seoul 08826, South KoreaSeoul Natl Univ, Sch Mech & Aerosp Engn, Seoul 08826, South Korea
机构:
Key Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, NanjingKey Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing
Zhang J.
Chen H.
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机构:
Key Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, NanjingKey Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing
Chen H.
Bai Y.
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机构:
Key Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, NanjingKey Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing
Bai Y.
Liao J.
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机构:
Organizing Committee of Nanning New and Hi-Tech Industry Development Zone, NanningKey Laboratory of Concrete and Prestressed Concrete Structures of the Ministry of Education, Southeast University, Nanjing