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A mechanical analysis of variable angle-tow composite plates through variable kinematics models based on Carrera’s unified formulation

Article dans une revue avec comité de lecture
Auteur
IANNOTTA, Domenico Andrea
GIUNTA, Gaetano
480071 Luxembourg Institute of Science and Technology [LIST]
105622 Centre de Recherche Public Henri Tudor [Technoport] [CRP Henri Tudor]
ccMONTEMURRO, Marco
1002421 Institut de Mécanique et d'Ingénierie [I2M]

URI
http://hdl.handle.net/10985/24825
DOI
10.1016/j.compstruct.2023.117717
Date
2024-01
Journal
Composite Structures

Résumé

Variable Angle-Tow (VAT) laminates offer a promising alternative to straight fiber composites. By varying fibers orientation within the structure plane, ambitious design and performance goals can be achieved. However, the wider design space results in a more complex problem with more parameters to consider. Carrera’s Unified Formulation (CUF) has been used in previous works performing buckling, vibrational and stress analyses of VAT plates. Usually, one-dimensional (1D) CUF beam models are used, while two-dimensional (2D) plate models are obtained as a particular case of shells by considering a null curvature. In most cases, a linear law is considered to describe the variation of fibers orientation in the main plane of the structure. The purpose of this article is to extend the CUF 2D plate finite elements family to the mechanical analysis of composite laminated plate structures with curvilinear fibers. The main contribute consists in the development of a CUF FE model within the Reissner’s Mixed Variational Theorem (RMVT) context for an improved calculation of the out-of-plane stress components. Results show that RMVT can predict in-plane stresses and satisfy the though-the-thickness transverse stresses continuity due to inter-layer equilibrium. The accuracy of RMVT-based models is also investigated using two different approximation points distributions along the plates thickness.

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  • Institut de Mécanique et d’Ingénierie de Bordeaux (I2M)

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  • A FEM Free Vibration Analysis of Variable Stiffness Composite Plates through Hierarchical Modeling 
    Article dans une revue avec comité de lecture
    GIUNTA, Gaetano; IANNOTTA, Domenico Andrea; ccMONTEMURRO, Marco (MDPI AG, 2023-06-27)
    Variable Angle Tow (VAT) laminates offer a promising alternative to classical straight-fiber composites in terms of design and performance. However, analyzing these structures can be more complex due to the introduction ...
  • Buckling Analysis of Variable-Angle Tow Composite Plates through Variable Kinematics Hierarchical Models 
    Article dans une revue avec comité de lecture
    GIUNTA, Gaetano; ccIANNOTTA, Domenico Andrea; ccKIRKAYAK, LEVENT; ccMONTEMURRO, Marco (MDPI AG, 2024-08-13)
    Variable-Angle Tow (VAT) laminates can improve straight fiber composites’ mechanical properties thanks to the application of curvilinear fibers. This characteristic allows one to achieve ambitious objectives for design and ...
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    DELUCIA, Marco; ccCATAPANO, Anita; ccMONTEMURRO, Marco; ccPAILHES, Jerome (SAGE Publications, 2019)
    In this paper, a general numerical homogenisation scheme coupled with an efficient modelling strategy for predicting the effective thermoelastic properties of cork-based agglomerates is presented. In order to generate a ...
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    Conférence invitée
    DELUCIA, Marco; ccCATAPANO, Anita; ccMONTEMURRO, Marco; ccPAILHES, Jerome (2019)
    The last decades have been characterized by a growth of raw material demand, in particular due to the consumerism in developed countries and to the fast industrialization of emerging economies. Nowadays, with the aim to ...

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