首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >The effects of S-glass fiber hybridization on vibration-damping behavior of intraply woven carbon/aramid hybrid composites for different lay-up configurations
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The effects of S-glass fiber hybridization on vibration-damping behavior of intraply woven carbon/aramid hybrid composites for different lay-up configurations

机译:S玻璃纤维杂交对不同叠层配置的专内织物/芳族芳族杂交复合材料的振动阻尼行为

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摘要

In this study, the vibration and damping characteristics of the hybrid composites reinforced with plain woven S-glass and intraply woven carbon/Kevlar fiber fabrics are investigated. Vibration tests on the samples have been conducted only for measuring the first mode of natural frequency with application of experimental modal analysis procedures. Symmetric and asymmetric layering structures have been prepared for the hybrid composite configurations in order to study the stacking sequence effects. Damping ratios have been evaluated from the logarithmic decrement method by using acceleration-time envelope curves. Results have shown that position and percentage of the fibers in the composites are the most effective parameters for natural frequency and damping characteristics of hybrid samples, and some samples have shown the synergistic effects leading to a significant enhancement in damping and natural frequency.
机译:在该研究中,研究了用平纹S玻璃和专内织物/ Kevlar纤维织物加强的混合复合材料的振动和阻尼特性。 已经进行了对样品的振动试验,仅用于测量具有实验模态分析程序的第一种自然频率模式。 已经为混合复合配置制备了对称和不对称分层结构,以研究堆叠序列效果。 通过使用加速时间包络曲线从对数减量方法评估阻尼比。 结果表明,复合材料中纤维的位置和百分比是杂化样品的固有频率和阻尼特性最有效的参数,并且一些样品表明了导致阻尼和固有频率显着提高的协同效应。

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