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首页> 外文期刊>Journal of Vibration and Acoustics >Analytical and Finite Element Modal Analysis of a Hyperelastic Membrane for Micro Air Vehicle Wings
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Analytical and Finite Element Modal Analysis of a Hyperelastic Membrane for Micro Air Vehicle Wings

机译:微型飞行器机翼超弹性膜的分析和有限元模态分析

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摘要

Analytical and finite element models are developed for investigating the modal characteristics of a hyperelastic rubber latex membrane for micro air vehicle wings applications. A radially prestretched membrane specimen is attached to a thin, rigid circular ring and vibrated in vacuum and in air at atmospheric pressure. The natural frequencies of the membrane computed by analytical and finite element models are correlated well. The natural frequencies increase with mode and prestretch level of the membrane but decrease in air from those in vacuum due to the effect of added mass of air. The damping is low and has a very minimal effect on the frequencies but helps to reduce the amplitude of vibration. Aerodynamic pressure at different angles of attack and a freestream velocity is computed from the wind tunnel test data, and a finite element model is developed for investigating the effect of the aerodynamic pressure on the modal characteristics of the membrane. It is found that the effect of aerodynamic pressure on the natural frequencies of the membrane is not significant.
机译:开发了分析和有限元模型来研究用于微型飞行器机翼应用的超弹性橡胶乳胶膜的模态特性。将径向预拉伸的膜样品连接到薄的刚性圆环上,并在大气压下在真空和空气中振动。通过分析和有限元模型计算的膜的固有频率之间具有很好的相关性。固有频率随膜的模式和预拉伸水平而增加,但由于增加的空气质量的影响,空气中的固有频率与真空中的固有频率相比有所降低。阻尼很低,对频率的影响很小,但有助于减小振动幅度。从风洞测试数据计算出不同迎角和自由流速度下的空气动力压力,并建立了一个有限元模型来研究空气动力压力对膜的模态特性的影响。发现气动压力对膜的固有频率的影响并不显着。

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