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Wave spectral finite element model for the prediction of sound transmission loss and damping of sandwich panels

机译:预测夹层板传声损失和阻尼的波谱有限元模型

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Sandwich panels are usually modeled by considering only asymmetric motion which assumes the core deforms by transversal shearing without any compressive deformation over the thickness. This assumption is acceptable for panels with relatively stiff and thin cores. However, symmetric motion becomes important when the core is thick or soft. Under such conditions, the compressive deformation over the core thickness becomes significant. This paper addresses the prediction of the Sound Transmission Loss (STL) and composite Damping Loss Factor (DLF) of sandwich panels with either thin or thick cores as well as stiff or soft (viscoelastic) cores. Both the skin and the core are assumed to be orthotropic. A spectral finite element based approach is developed wherein the stress and strain components in each layer are described using the properties in that layer for a forced trace wave number and heading direction. The proposed approach provides a reliable and numerically efficient tool to account for the compressive deformation effect of thick orthotropic sandwich layers. Moreover, the proposed model is also able to consider panels with multiple of layers with varying properties. (C) 2015 Elsevier Ltd. All rights reserved.
机译:夹心板的建模通常只考虑不对称运动,即假设芯材通过横向剪切变形,而在整个厚度上没有任何压缩变形。对于具有相对刚性和薄芯的面板,此假设是可以接受的。但是,当芯层较粗或较软时,对称运动就变得很重要。在这样的条件下,在芯厚度上的压缩变形变得显着。本文介绍了具有薄或厚芯以及刚性或软(粘弹性)芯的夹芯板的传声损耗(STL)和复合阻尼损耗因子(DLF)的预测。皮肤和核心都被认为是正交各向异性的。开发了一种基于频谱有限元的方法,其中使用该层中的强制迹线波数和航向方向的属性来描述每一层中的应力和应变分量。所提出的方法为解决厚正交异性夹心层的压缩变形效应提供了可靠且在数值上有效的工具。而且,所提出的模型还能够考虑具有变化特性的多层的面板。 (C)2015 Elsevier Ltd.保留所有权利。

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