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CFRP层压板在拉伸预加载和冲击加载联合作用下的分层行为

Delamination Behavior of CFRP Laminated Plates under the Combination of Tensile Preloading and Impact Loading.

作者信息

Lan Kaiwei, Wang Haodong, Wang Cunxian

机构信息

School of Aeronautics, Northwestern Polytechnical University, Xi'an 710072, China.

Institute of Extreme Mechanics, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Materials (Basel). 2023 Oct 8;16(19):6595. doi: 10.3390/ma16196595.

Abstract

When subjected to impact loading, aircraft composite structures are usually in a specific preloading condition (such as tension and compression). In this study, ballistic tests were conducted using a high-speed gas gun system to investigate the effect of biaxial in-plane tensile preload on the delamination of CFRP laminates during high-speed impact. These tests covered central and near-edge locations for both unloaded and preloaded targets, with the test speeds including 50 m/s, 70 m/s, and 90 m/s. The delamination areas, when impacting the center location under 1000 με, show a 14.2~36.7% decrease. However, the cases when impacting the near-edge location show no more than a 19.3% decrease, and even more delamination areas were observed. In addition, in order to enhance the understanding of experimental phenomena, numerical simulations were conducted using the ABAQUS/Explicit solver, combined with the user subroutine VUMAT with modified Hou criteria. The experimental and simulation results were in good agreement, and the maximum error was approximately 12.9%. The results showed that not only the preloading value but also the impact velocity have significant influences on the delamination behavior of preloaded CFRP laminated plates. Combining detailed discussions, the biaxial tensile preload enhanced the resistance to out-of-plane displacement and caused laminate interface stiffness degradation. By analyzing the influence of the preloading value and impact velocity on competing mechanisms between the stress-stiffening effect and interface stiffness degradation effect, the complex delamination behaviors of laminates under various preloading degrees and impact velocities at different impact locations were reasonably explained.

摘要

在承受冲击载荷时,飞机复合材料结构通常处于特定的预加载状态(如拉伸和压缩)。在本研究中,使用高速气枪系统进行了弹道试验,以研究双轴面内拉伸预载荷对高速冲击下CFRP层压板分层的影响。这些试验涵盖了未加载和预加载靶材的中心和近边缘位置,试验速度包括50 m/s、70 m/s和90 m/s。当在1000 με以下冲击中心位置时,分层面积减少了14.2%~36.7%。然而,当冲击近边缘位置时,分层面积减少不超过19.3%,甚至观察到更多的分层区域。此外,为了加深对实验现象的理解,使用ABAQUS/Explicit求解器结合带有修正Hou准则的用户子程序VUMAT进行了数值模拟。实验和模拟结果吻合良好,最大误差约为12.9%。结果表明,不仅预加载值,而且冲击速度对预加载CFRP层压板的分层行为都有显著影响。通过详细讨论,双轴拉伸预载荷增强了对平面外位移的抵抗力,并导致层压板界面刚度退化。通过分析预加载值和冲击速度对应力强化效应和界面刚度退化效应之间竞争机制的影响,合理地解释了不同冲击位置在不同预加载程度和冲击速度下层压板的复杂分层行为。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e66/10574674/d7e0e9ea0365/materials-16-06595-g001.jpg

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