Geometric Accuracy and Energy Absorption Characteristics of 3D Printed Continuous Ramie Fiber Reinforced Thin-Walled Composite Structures

被引:0
|
作者
Kui Wang [1 ]
Hao Lin [1 ]
Antoine Le Duigou [2 ]
Ruijun Cai [1 ]
Yangyu Huang [1 ]
Ping Cheng [1 ,3 ]
Honghao Zhang [4 ]
Yong Peng [1 ]
机构
[1] Key Laboratory of Traffic Safety on Track of Ministry of Education,School of Traffic and Transportation Engineering,Central South University
[2] Institute de Research Dupty de L?me,Bionics Group,University of South Britany
[3] ICUBE Laboratory-CNRS,University of Strasbourg
[4] Key Laboratory of High Efficiency and Clean Mechanical Manufacture (Ministry of Education),School of Mechanical Engineering,Shandong University
基金
中国国家自然科学基金;
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暂无
中图分类号
TB332 [非金属复合材料];
学科分类号
摘要
The application of continuous natural fibers as reinforcement in composite thin-walled structures offers a feasible approach to achieve light weight and high strength while remaining environmentally friendly. In addition, additive manufacturing technology provides a favorable process foundation for its realization. In this study, the printability and energy absorption properties of 3D printed continuous fiber reinforced thin-walled structures with different configurations were investigated. The results suggested that a low printing speed and a proper layer thickness would mitigate the printing defects within the structures. The printing geometry accuracy of the structures could be further improved by rounding the sharp corners with appropriate radii. This study successfully fabricated structures with various configurations characterized by high geometric accuracy through printing parameters optimization and path smoothing. Moreover, the compressive property and energy absorption characteristics of the structures under quasistatic axial compression were evaluated and compared. It was found that all studied thin-walled structures exhibited progressive folding deformation patterns during compression. In particular, energy absorption process was achieved through the combined damage modes of plastic deformation, fiber pullout and delamination. Furthermore, the comparison results showed that the hexagonal structure exhibited the best energy absorption performance. The study revealed the structure-mechanical property relationship of 3D printed continuous fiber reinforced composite thin-walled structures through the analysis of multiscale failure characteristics and load response, which is valuable for broadening their applications.
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页码:159 / 170
页数:12
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