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Tensile properties and failure mechanism of a new 3D nonorthogonal woven composite material

journal contribution
posted on 2024-11-02, 03:38 authored by Yu Wang, Jin Sun, Deng'an Cai, Zhou Guangming
Tensile properties and failure mechanism of a newly developed three-dimensional (3D) woven composite material named 3D nonorthogonal woven composite are investigated in this paper. The microstructure of the composite is studied and the tensile properties are obtained by quasi-static tensile tests. The failure mechanism of specimen is discussed based on observation of the fracture surfaces via electron microscope. It is found that the specimens always split along the oblique yarns and produce typical v-shaped fracture surfaces. The representative volume cell (RVC) is established based on the microstructure. A finite element analysis is conducted with periodical boundary conditions. The finite element simulation results agree well with the experimental data. By analyzing deformation and stress distribution under different loading conditions, it is demonstrated that finite element model based on RVC is valid in predicting tensile properties of 3D nonorthogonal woven composites. Stress distribution shows that the oblique yarns and warp yarns oriented along the x direction carry primary load under x tension and that warp yarns bear primary load under y tension.

History

Journal

Applied Composite Materials

Volume

23

Issue

6

Start page

1117

End page

1135

Total pages

19

Publisher

Springer Netherlands

Place published

Netherlands

Language

English

Former Identifier

2006071625

Esploro creation date

2020-06-22

Fedora creation date

2017-03-21

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