Yousefi Armin, Jolaiy Saman, Hedayati Reza, Serjouei Ahmad, Bodaghi Mahdi
Department of Engineering, School of Science and Technology, Nottingham Trent University, Nottingham NG11 8NS, UK.
School of Mechanical Engineering, College of Engineering, University of Tehran, P.O. Box, Tehran 11155-4563, Iran.
Materials (Basel). 2021 Mar 15;14(6):1421. doi: 10.3390/ma14061421.
Bonded patches are widely used in several industry sectors for repairing damaged plates, cracks in metallic structures, and reinforcement of damaged structures. Composite patches have optimal properties such as high strength-to-weight ratio, easiness in being applied, and high flexibility. Due to recent rapid growth in the aerospace industry, analyses of adhesively bonded patches applicable to repairing cracked structures have become of great significance. In the present study, the fatigue behavior of the aluminum alloy, repaired by a double-sided glass/epoxy composite patch, is studied numerically. More specifically, the effect of applying a double-sided composite patch on the fatigue life improvement of a damaged aluminum 6061-T6 is analyzed. 3D finite element numerical modeling is performed to analyze the fatigue performance of both repaired and unrepaired aluminum plates using the Abaqus package. To determine the fatigue life of the aluminum 6061-T6 plate, first, the hysteresis loop is determined, and afterward, the plastic strain amplitude is calculated. Finally, by using the Coffin-Manson equation, fatigue life is predicted and validated against the available experimental data from the literature. Results reveal that composite patches increase the fatigue life of cracked structures significantly, ranging from 55% to 100% for different applied stresses.
粘结补片在多个工业领域被广泛用于修复受损板材、金属结构中的裂纹以及加固受损结构。复合材料补片具有诸如高强度重量比、易于应用和高柔韧性等最佳性能。由于航空航天工业最近的快速发展,对适用于修复开裂结构的粘结补片的分析变得具有重大意义。在本研究中,对用双面玻璃/环氧树脂复合材料补片修复的铝合金的疲劳行为进行了数值研究。更具体地说,分析了应用双面复合材料补片对受损6061-T6铝合金疲劳寿命提高的影响。使用Abaqus软件包进行三维有限元数值建模,以分析修复和未修复铝板的疲劳性能。为了确定6061-T6铝板的疲劳寿命,首先确定滞后回线,然后计算塑性应变幅值。最后,通过使用科芬-曼森方程预测疲劳寿命,并与文献中可用的实验数据进行验证。结果表明,复合材料补片显著提高了开裂结构的疲劳寿命,在不同的应用应力下,疲劳寿命提高范围为55%至100%。