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首页> 外文期刊>Aerospace science and technology >Flutter suppression of plates subjected to supersonic flow using passive constrained viscoelastic layers and Golla-Hughes-McTavish method
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Flutter suppression of plates subjected to supersonic flow using passive constrained viscoelastic layers and Golla-Hughes-McTavish method

机译:使用被动约束粘弹性层和Golla-Hughes-McTavish方法抑制超音速流动板的颤动抑制

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摘要

The present study involves the application of surface viscoelastic damping treatments to remedy panel flutter problems in existing aircraft components in which active control strategies cannot be easily performed. The rationale for such study is the fact that as the viscoelastic materials are often used to solve a variety of resonant noise and vibration problems in aerospace industry, it becomes important to quantify the increase of aeroelastic stability that can be obtained by the inclusion of viscoelastic treatments. The flutter boundaries of the aeroviscoelastic system accounting for the frequency- and temperature-dependent behavior of the viscoelastic material are computed by adopting the so-named Golla-Hughes-McTavish model. Since the inclusion of internal variables in the viscoelastic model leads to an augmented coupled system of equations of motion, a numerical pre-processing is found to be necessary prior to the resolution of the complex eigenvalue problem for the purposes of flutter analysis. After the theoretical foundations, the stability analysis of a three-layer sandwich plate under supersonic flow is addressed. The results show that it is possible to increase the critical flutter speeds of flat panels using surface viscoelastic damping treatments. However, the temperature and the thicknesses of the layers have significant effect on the flutter boundary. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:本研究涉及表面粘弹性阻尼处理的应用,以补救现有飞机部件中的面板颤振问题,在这些问题中,主动控制策略不易执行。进行这种研究的理由是,由于粘弹性材料通常用于解决航空航天工业中的各种共振噪声和振动问题,因此量化包含粘弹性处理可以提高的空气弹性稳定性变得很重要。 。通过采用所谓的Golla-Hughes-McTavish模型来计算考虑粘弹性材料的频率和温度相关行为的气弹弹性系统的颤动边界。由于在粘弹性模型中包含内部变量会导致运动方程的耦合系统增强,因此,为了解决颤振分析的目的,在解决复杂特征值问题之前,有必要进行数字预处理。在理论基础上,研究了三层夹芯板在超音速作用下的稳定性。结果表明,使用表面粘弹性阻尼处理可以提高平板的临界振颤速度。然而,层的温度和厚度对颤振边界具有显着影响。 (C)2016 Elsevier Masson SAS。版权所有。

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