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双冲击下补片修复CFRP层合板损伤干涉影响因素的试验与数值研究

Experimental and Numerical Investigation on the Influence Factors of Damage Interference of Patch-Repaired CFRP Laminates under Double Impacts.

作者信息

Sun Zhenhui, Li Cheng, Tie Ying

机构信息

School of Mechanical and Power Engineering, Zhengzhou University, Science Road 100, Zhengzhou 450001, China.

出版信息

Polymers (Basel). 2023 Mar 11;15(6):1403. doi: 10.3390/polym15061403.

Abstract

The impact responses of a patch-repaired carbon-fiber-reinforced polymer (CFRP) specimen under double impacts were compared to study the damage interference mechanism through the combination of experiment and numerical analysis. A three-dimensional finite element model (FEM) with iterative loading based on continuous damage mechanics (CDM) and a cohesive zone model (CZM) was employed to simulate the double-impacts testing with an improved movable fixture at an impact distance of 0 mm-50 mm. The influence of impact distance and impact energy on the damage interference was explored by mechanical curves and delamination damage diagrams of the repaired laminates. When impactors fell within the range of the patch with an impact distance of 0 mm-25 mm at a low level of impact energy, delamination damage of the parent plate caused by the two impacts overlapped, resulting in damage interference. With the continuing increase in impact distance, the damage interference gradually disappeared. When impactors fell on the edge of the patch, the damage area caused by the first impact on the left half of the adhesive film gradually enlarged, and as the impact energy increased from 5 J to 12.5 J, the damage interference caused by the first impact on the second impact was gradually enhanced.

摘要

通过实验与数值分析相结合的方式,比较了贴片修复的碳纤维增强聚合物(CFRP)试件在双冲击下的冲击响应,以研究损伤干涉机理。采用基于连续损伤力学(CDM)和内聚力模型(CZM)的带有迭代加载的三维有限元模型(FEM),在0 mm至50 mm的冲击距离下使用改进的可移动夹具模拟双冲击试验。通过修复层压板的力学曲线和分层损伤图,探讨了冲击距离和冲击能量对损伤干涉的影响。当冲击体在低冲击能量下以0 mm至25 mm的冲击距离落在贴片范围内时,两次冲击引起的母板分层损伤重叠,导致损伤干涉。随着冲击距离的持续增加,损伤干涉逐渐消失。当冲击体落在贴片边缘时,胶粘剂膜左半部分首次冲击引起的损伤区域逐渐扩大,并且随着冲击能量从5 J增加到12.5 J,首次冲击对第二次冲击引起的损伤干涉逐渐增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb8c/10051077/a0d29092f82a/polymers-15-01403-g001.jpg

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