Inverse analysis for the amplitude-dependent damping properties of epoxy/glass fiber laminates

Tran Quyet Thang, Lev Rabinskiy, Yury Solyaev, Fedor Nasonov
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Abstract

In this paper, we present the experimental results and corresponding inverse analysis for determination of the amplitude-dependent damping properties of laminates made of glass fiber reinforced plastic (GFRP). Free damped vibration tests for the cantilever beams with different symmetric stacking sequences are performed. Logarithmic decrement analysis is used to evaluate the effective amplitude-dependent loss factor of the samples. Inverse analysis is used to find the dynamic properties of single ply based on the laminated beam theory and the complex moduli approach. It is found that the loss factors of GFRP laminates almost linearly depend on the maximum strain amplitude. Maximum value of the loss factor of unidirectional ply is realized in the transverse direction to fibers and reaches ~0.023 for the strain amplitudes up to 0.1% in the frequency range 20-60 Hz.
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环氧/玻璃纤维层合板振幅相关阻尼特性的逆分析
在本文中,我们提出了测定玻璃纤维增强塑料(GFRP)层合板的振幅相关阻尼特性的实验结果和相应的逆分析。对不同对称叠加顺序的悬臂梁进行了自由阻尼振动试验。采用对数减量分析来评估样品的有效振幅相关损失因子。基于叠合梁理论和复模量法,对单层结构的动力特性进行了反演分析。研究发现,GFRP层合板的损耗因子与最大应变幅值几乎呈线性关系。在20 ~ 60hz频率范围内,当应变幅值达到0.1%时,单向铺层的损耗因子在光纤横向上达到最大值,达到~0.023。
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CiteScore
0.60
自引率
0.00%
发文量
24
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