Failure analysis of 3D woven composites under tension based on realistic model

被引:0
|
作者
ZHANG, Binbin [1 ]
CHEN, Guangchang [2 ]
WANG, Bing [3 ]
GE, Jingran [1 ]
LI, Mengran [1 ]
LIU, Zengfei [1 ]
LIANG, Jun [1 ,4 ]
机构
[1] Institute of Advanced Structure Technology, Beijing Institute of Technology, Beijing,100081, China
[2] China Helicopter Research and Development Institute, Jingdezhen,333001, China
[3] Center for Composite Materials and Structures, Harbin Institute of Technology, Harbin,150001, China
[4] Beijing Key Laboratory of Lightweight Multi-functional Composite Materials and Structures, Beijing,100081, China
基金
中国国家自然科学基金;
关键词
D O I
10.1016/j.cja.2024.07.032
中图分类号
学科分类号
摘要
The failure behavior of the three-dimensional (3D) woven composites under tension are evaluated via experimentation and simulation. To accurately depict the intricate geometry of the woven composites, including the fluctuation of yarn paths, variations in cross-section, and resin distribution, the image-aided digital elements modeling approach is employed. Subsequently, to further assess both the tensile performance and damage response, a realistic voxel model is established with the integration of a well-suited progressive damage model. The obtained stress–strain curves align with the experimental results, and damage progression and underlying mechanisms involved are clearly revealed. Specifically, when subjected to warp tension, severe transverse damage and fiber bundle pull-out towards the warp yarns are observed within the curved section. Similarly, under weft loading, longitudinal damage is found to occur in the weft yarns, while the warp yarns suffer from transverse damage, leading to the formation of a smooth and brittle crack. Ultimately, the findings of this study hold potential to advance the engineering applications of the 3D woven composites. © 2024
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页码:242 / 253
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