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首页> 外文期刊>Composite Structures >FG and viscoelastic models combination for vibroacoustic modeling of sandwich structures made of open and closed cell foam materials
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FG and viscoelastic models combination for vibroacoustic modeling of sandwich structures made of open and closed cell foam materials

机译:用于开放和闭孔泡沫材料制成的夹层结构的凝固结构的FG和粘弹性模型组合

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摘要

This paper presents a new method based on a functionally graded viscoelastic model for examining the acoustic vibrations of a submerged sandwich shell in the fluid. The structure consists of two isotropic shells that the space between them is filled with open-cell and closed-cell foams. A laminate model is used to get the equations of motion of the foam core. It is assumed that the core is composed of an infinite number of viscoelastic layers, while the properties of the adjacent layers are different. Consequently, complex Young's and shear moduli are dependent on the frequency of excitation. Density and Young modulus vary according to a distribution function through the thickness. Because of the effective roles of rotary inertia and shear deformation, the governing equations of the sandwich structure are obtained by the three-dimensional theory of elasticity. The Zener model is used for describing the viscoelastic behavior of foam. Next, the solution procedure of the vibroacoustic behavior is derived by the transfer matrix method. Finally, the effects of mechanical parameters of foam such as relative density, edge material fraction, relaxation time, volume fraction, and power index are examined. The results exhibit that open-cell foam is better sound insulation than closed-cell foam.
机译:本文介绍了一种基于功能梯度粘弹性模型的新方法,用于检查流体中浸没式夹心壳的声学振动。该结构由两个各向同性壳组成,使它们之间的空间填充有开孔和闭孔泡沫。层压模型用于获得泡沫芯的运动方程。假设芯由无限数量的粘弹性层组成,而相邻层的性质是不同的。因此,复杂的杨和剪切模量取决于激发的频率。密度和幼模根据厚度的分布函数而变化。由于旋转惯性和剪切变形的有效作用,夹层结构的控制方程是通过三维弹性理论获得的。齐纳模型用于描述泡沫的粘弹性行为。接下来,通过传输矩阵方法导出vibro声学行为的解决方案过程。最后,检查了泡沫等机械参数的影响,例如相对密度,边缘材料分数,弛豫时间,体积分数和功率指数。结果表明,开放式电池泡沫比闭孔泡沫更好地隔音。

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