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首页> 外文期刊>Noise Control Engineering Journal >A wave and finite element approach for computing the optimal damping layer characteristics for composite structures
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A wave and finite element approach for computing the optimal damping layer characteristics for composite structures

机译:复合结构最优阻尼层特性的波与有限元方法

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The optimal mechanical and geometric characteristics for layered composite structures having damping layer inclusions and subject to vibroacoustic excitations are derived. A finite element description coupled to periodic structure theory is employed for the considered layered damped panel. Structures of arbitrary anisotropy as well as geometric complexity can be modeled by the exhibited approach. A numerical continuum-discrete approach for computing the sensitivity of the acoustic wave characteristics propagating within the modeled periodic composite structure is exhibited. The sensitivity of the acoustic transmission coefficient expressed within a statistical energy analysis context is subsequently derived as a function of the computed acoustic wave characteristics. The optimal mechanical and geometric characteristics satisfying the considered mass, stiffness and vibroacoustic performance criteria are sought by employing Newton's optimization method. (C) 2018 Institute of Noise Control Engineering.
机译:衍生具有阻尼层夹杂物的层状复合结构的最佳机械和几何特性,并受到纵传激发的影响。用于定期结构理论的有限元件用于考虑的分层阻尼板。可以通过表现方法进行建模任意各向异性以及几何复杂性的结构。表现出用于计算在建模的周期复合结构内传播的声波特性的敏感性的数值连续性方法。随后导出在统计能量分析上下文中表达的声传输系数的灵敏度作为计算的声波特征的函数。通过采用牛顿的优化方法,寻求满足所考虑的质量,刚度和纵岩性能标准的最佳机械和几何特征。 (c)2018年噪声控制工程研究所。

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