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Estimation of loss factors of a constrained layer plate using viscoelastic layer

机译:用粘弹性层估算约束层板的损耗因子

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A finite element method is developed and validated for the estimation of loss factors of a viscoelastically damped plate. Viscoelastic layer is used as constrained layer and is sandwiched between an aluminum base plate and a constraining layer. Frequency-dependent material properties are used for the viscoelastic material in the finite element model. The derived dynamic equations of motion are used to carry out harmonic analysis to determine the natural frequencies and loss factors of sandwich plate and validated with experimental results for cantilever boundary condition. The validated finite element model is then used to estimate the loss factors of sandwich plate with various boundary conditions and different thicknesses of constraining and constrained layer for a given base plate thickness. The results show that the loss factor is maximum for a constraining layer to sandwich plate thickness ratio of 0.40-0.45 and is independent of boundary condition. The loss factor increases with increase in thickness of the viscoelastic layer. The loss factor increases for higher mode for all boundary conditions.
机译:建立并验证了一种有限元方法,用于估算粘弹性阻尼板的损耗因子。粘弹性层用作约束层,并且夹在铝基板和约束层之间。频率依赖的材料属性用于有限元模型中的粘弹性材料。导出的运动动力学方程用于进行谐波分析,确定夹层板的固有频率和损耗因子,并针对悬臂边界条件的实验结果进行了验证。然后,使用经过验证的有限元模型来估计在给定基板厚度下具有各种边界条件和不同厚度的约束层和约束层的夹心板的损耗因子。结果表明,约束层与夹心板的厚度比为0.40-0.45时,损耗因子最大,并且与边界条件无关。损耗因子随粘弹性层厚度的增加而增加。对于所有边界条件,较高模式下的损耗因子都会增加。

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