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首页> 外文期刊>Journal of Composite Materials >Vibration and Damping Analysis of a Sandwich Beam Containing a Viscoelastic Constraining Layer
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Vibration and Damping Analysis of a Sandwich Beam Containing a Viscoelastic Constraining Layer

机译:包含粘弹性约束层的夹层梁的振动和阻尼分析

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摘要

Viscoelastic layered systems provide a simple and flexible solution for damping vibration of sheet metal panels.They also help to effectively eliminate noise from resonant structures and surfaces.This article presents an analytical formulation to predict the stiffness and damping of three layered beams with two different viscoelastic materials adjacent to each other.The complex modulus approach is used to model the elastic and shear moduli of the viscoelastic material and closed-form equations are derived for predicting system stiffness and damping.The model is derived for unsymmetrical setups using variational methods.Experiments are conducted on simply supported three-layered beams at different temperatures to validate theoretical results.Similar results are obtained from both the theoretical model and the experiments.A procedure for the optimization of structural and material parameters for maximizing the damping and minimizing the system mass for a given temperature and frequency range is also presented.
机译:粘弹性分层系统为阻尼金属板的振动提供了一种简单而灵活的解决方案,还有助于有效消除共振结构和表面的噪声。本文提出了一种分析公式,可预测具有两种不同粘弹性的三层梁的刚度和阻尼彼此相邻的材料。使用复模量方法对粘弹性材料的弹性模量和剪切模量进行建模,并导出封闭形式的方程式以预测系统的刚度和阻尼。使用变分方法得出用于非对称设置的模型。在不同温度下对简单支撑的三层梁进行了验证,以验证理论结果。从理论模型和实验中都获得了相似的结果。优化结构和材料参数的程序,以最大程度地减小阻尼并最小化系统质量。给定温度和频率r还介绍了昂热。

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