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脉冲电流作用下机织复合材料的冲击损伤降低

Impact damage reduction of woven composites subject to pulse current.

作者信息

Li Yan, Wang Fusheng, Huang Chenguang, Ren Jianting, Wang Donghong, Kong Jie, Liu Tao, Long Laohu

机构信息

School of Mechanics, Civil Engineering and Architecture, Northwestern Polytechnical University, 710129, Xi'an, PR China.

Shanxi Key Laboratory of Electromagnetic Protection Material and Technology, The 33th Institute of China Electronics Technology Group Corporation, 030032, Taiyuan, PR China.

出版信息

Nat Commun. 2023 Aug 19;14(1):5046. doi: 10.1038/s41467-023-40752-6.

Abstract

3D orthogonal woven composites are receiving increasing attention with the ever-growing market of composites. A current challenge for these materials' development is how to improve their damage tolerance in orthogonal and layer-to-layer structures under extreme loads. In this paper, a damage reduction strategy is proposed by combining structural and electromagnetic properties. An integrated experimental platform is designed combining a power system, a drop-testing machine, and data acquisition devices to investigate the effects of pulse current and impact force on woven composites. Experimental results demonstrate that pulse current can effectively reduce delamination damage and residual deformation. A multi-field coupled damage model is developed to analyze the evolutions of temperature, current and damage. Parallel current-carrying carbon fibers that cause yarns to be transversely compressed enhance the mechanical properties. Moreover, the microcrack formation and extrusion deformation in yarns cause the redistribution of local current among carbon fibers, and its interaction with the self-field produces an obvious anti-impact effect. The obtained results reveal the mechanism of damage reduction and provide a potential approach for improving damage tolerance of these composites.

摘要

随着复合材料市场的不断发展,三维正交编织复合材料正受到越来越多的关注。这些材料发展目前面临的一个挑战是如何在极端载荷下提高其在正交和层间结构中的损伤容限。本文提出了一种结合结构和电磁特性的损伤降低策略。设计了一个集成实验平台,该平台结合了电源系统、落锤试验机和数据采集设备,以研究脉冲电流和冲击力对编织复合材料的影响。实验结果表明,脉冲电流能有效减少分层损伤和残余变形。建立了一个多场耦合损伤模型来分析温度、电流和损伤的演变。平行载流碳纤维使纱线受到横向压缩,从而增强了力学性能。此外,纱线中的微裂纹形成和挤压变形导致局部电流在碳纤维之间重新分布,并且其与自场的相互作用产生了明显的抗冲击效果。所获得的结果揭示了损伤降低的机制,并为提高这些复合材料的损伤容限提供了一种潜在方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c3e/10439925/fa1354f5ce28/41467_2023_40752_Fig1_HTML.jpg

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