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Exact dynamic characteristic analysis of a double-beam system interconnected by a viscoelastic layer

机译:粘弹性层相互连接的双梁系统的精确动力特性分析

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摘要

As an important composite beam structure, the double-beam system with a viscoelastic connection layer has a wide range of applications in engineering. Accurate analysis of its dynamic characteristics is an imperative requirement for the design, monitoring and evaluation, or vibration control of these structures. Existing researches usually introduce some simplifications or assumptions, and ignore the damping characteristics of the structure in most cases, which results in inaccurate dynamic analysis results of such double-beam structures and cannot meet the actual requirements. For this reason, a generalized mechanical model that can consider the damping factor is established in this paper to accurately simulate the double-beam system with a viscoelastic connection layer, and its dynamic characteristics are accurately analyzed by dynamic stiffness method. On this basis, the effects of structural parameters on the modal frequencies and mode shapes of the system are studied. The results show that the stiffness of the connection layer has little effect on the system mode; the modal frequencies of the double-beam system can be reduced by increasing the mass or damping coefficient of the connection layer, where the influence of damping on the low-order modes of the system is very significant, but its effect on the higher-order modes are clearly inferior to that of mass.
机译:作为一种重要的复合梁结构,具有粘弹性连接层的双梁系统在工程中具有广泛的应用。准确分析其动态特性是这些结构的设计,监视和评估或振动控制的必要条件。现有的研究通常会引入一些简化或假设,而在大多数情况下会忽略结构的阻尼特性,从而导致这种双梁结构的动力分析结果不准确,无法满足实际要求。因此,本文建立了一个可以考虑阻尼系数的通用力学模型,以精确模拟具有粘弹性连接层的双梁系统,并通过动态刚度法对其动力学特性进行了精确分析。在此基础上,研究了结构参数对系统模态频率和模态形状的影响。结果表明,连接层的刚度对系统模式影响不大。通过增加连接层的质量或阻尼系数,可以降低双光束系统的模态频率,其中阻尼对系统低阶模态的影响非常显着,但对高阶模态的影响模式显然不如大众。

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