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Micromechanical analysis of UD CFRP composite lamina under multiaxial loading with different loading paths

Chen, Jiayun; Wan, Lei; Ismail, Yaser; Hou, Pengfei; Ye, Jianqiao; Yang, Dongmin

Authors

Jiayun Chen

Profile image of Ray Wan

Dr Ray Wan L.Wan@hull.ac.uk
Lecturer in Mechanical Engineering

Yaser Ismail

Pengfei Hou

Jianqiao Ye

Dongmin Yang



Abstract

The influences of loading path on the failure of unidirectional (UD) carbon fibre reinforced polymer (CFRP) composite laminae IM7/8552 are studied. A 3D representative volume element (RVE) based micromechanical model is established using finite element method (FEM) to capture the coupled effects of fibres, matrix and fibre/matrix interface on the failure under different multiaxial loading conditions. An artificial neural network (ANN) is adopted to identify experimentally difficult-to-measure micro-parameters of interface, such as interface thickness and stiffnesses, for the construction of the high-fidelity RVE. In order to precisely control the loading path with the consideration of Poisson's effects, the RVE is loaded by force at the dummy points instead of using the commonly used displacement loading approach. Three different loading paths are compared in each case, and the results show that the failure strength and patterns of the RVE under combined transverse and out-of-plane compressions as well as in-plane shear are independent of loading paths.

Citation

Chen, J., Wan, L., Ismail, Y., Hou, P., Ye, J., & Yang, D. (2021). Micromechanical analysis of UD CFRP composite lamina under multiaxial loading with different loading paths. Composite Structures, 269, Article 114024. https://doi.org/10.1016/j.compstruct.2021.114024

Journal Article Type Article
Acceptance Date Apr 23, 2021
Online Publication Date Apr 28, 2021
Publication Date Aug 1, 2021
Deposit Date May 28, 2024
Journal Composite Structures
Print ISSN 0263-8223
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 269
Article Number 114024
DOI https://doi.org/10.1016/j.compstruct.2021.114024
Public URL https://hull-repository.worktribe.com/output/4674992
Related Public URLs https://www.research.ed.ac.uk/en/publications/micromechanical-analysis-of-ud-cfrp-composite-lamina-under-multia