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拉伸载荷下完整、有缺陷及修复后的埋头复合接头的试验与数值研究

Experimental and Numerical Investigation of Intact, Defective and Repaired Countersunk Composite Joints under Tensile Loading.

作者信息

Huang Yongjie, Guan Zhidong, Yi Xian, Ni Zhangsong, Ouyang Tian, Li Zengshan

机构信息

Chengdu Fluid Dynamics Innovation Center, Chengdu 610010, China.

School of Aeronautic Science and Engineering, Beihang University, Beijing 100191, China.

出版信息

Materials (Basel). 2022 Jul 4;15(13):4677. doi: 10.3390/ma15134677.

Abstract

Bolted joints are commonly used for assembling carbon fiber/resin composite structures. Since drilling may generate defects at hole edges which affect mechanical properties, it is of great engineering significance to develop proper repair methods to restore the mechanical properties of the defective parts. However, there are few studies on hole edge defects and their repair methods. Therefore, a novelty short fiber filling repair method was proposed to repair defective holes in this study. The mechanical properties of intact, defective and repaired countersunk composite joints were compared and investigated. Experimental tensile tests showed that defective joints had lower initial stiffness and failure loads compared to intact joints, while the mechanical properties were effectively restored after repair. Three-dimensional finite element models were also established to analyze the damage process of the joints. Results of numerical modelling were consistent with the experimental results. The simulations showed that changes in contact behaviors and local deformations caused by hole edge defects led to the low initial stiffness and stiffness transition point of the joint, while this phenomenon was reduced after repair. Additionally, despite different joint types, laminate failure mainly occurred around the hole and countersink.

摘要

螺栓连接常用于碳纤维/树脂复合材料结构的装配。由于钻孔可能会在孔边缘产生缺陷,从而影响机械性能,因此开发合适的修复方法以恢复有缺陷部件的机械性能具有重要的工程意义。然而,关于孔边缘缺陷及其修复方法的研究较少。因此,本研究提出了一种新颖的短纤维填充修复方法来修复有缺陷的孔。对完整、有缺陷和修复后的沉头复合接头的机械性能进行了比较和研究。实验拉伸试验表明,与完整接头相比,有缺陷的接头具有较低的初始刚度和破坏载荷,而修复后机械性能得到有效恢复。还建立了三维有限元模型来分析接头的损伤过程。数值模拟结果与实验结果一致。模拟表明,孔边缘缺陷引起的接触行为和局部变形的变化导致接头的初始刚度和刚度转变点较低,而修复后这种现象有所减少。此外,尽管接头类型不同,层合板失效主要发生在孔和沉头周围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50fe/9267200/b493b19d77aa/materials-15-04677-g001.jpg

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