材料科学
环氧树脂
有限元法
固有频率
复合材料
振动
结构工程
悬臂梁
灵敏度(控制系统)
梁(结构)
纤维
声学
工程类
电子工程
物理
作者
Kaveh Salmalian,Ali Alijani,Habib Ramezannejad Azarboni
出处
期刊:International Journal of Structural Integrity
[Emerald Publishing Limited]
日期:2024-08-05
卷期号:15 (5): 974-992
被引量:1
标识
DOI:10.1108/ijsi-11-2023-0126
摘要
Purpose In this research, the free vibration sensitivity analysis of cracked fiber metal laminated (FML) beams is investigated numerically and experimentally. The effects of single and double cracks on the frequency of the cantilever beams are simulated using the finite element method (FEM) and compared to the experimental results. Design/methodology/approach In FEM analysis, the crack defect is simulated by the contour integral technique without considering the crack growth. The specimens are fabricated with an aluminum sheet, woven carbon fiber and epoxy resin. The FML specimens are constructed by bonding five layers as [carbon fiber-epoxy/Al/carbon fiber-epoxy/Al/carbon fiber-epoxy]. First, the location and length of cracks are considered input factors for the frequency sensitivity analysis. Then, the design of the experiment is produced in the cases of single and double cracks to compute the frequency of the beams in the first and second modes using the FEM. The mechanical shaker is used to determine the natural frequency of the specimens. In addition, the predicted response values of the frequency for the beam are used to compare with the experimental results. Findings Consequently, the results of the sensitivity analysis demonstrate that the location and length of the crack have significant effects on the modes. Originality/value Effective interaction diagrams are introduced to investigate crack detection for input factors, including the location and length of cracks in the cases of single and double cracks.
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