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A new 3D finite element sandwich plate for predicting the vibroacoustic response of laminated steel panels

机译:一种新型三维有限元夹芯板,用于预测层压钢板的振动声学响应

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摘要

A new sandwich finite element has been previously applied successfully to the vibration analysis of damped metal-polymer-metal beams 1. In this paper, this element is extended to the vibration of unsymmetrical sandwich plates with a viscoelastic core. The rotational influence of the transversal shearing in the core on the skins behaviour, ensures a displacement consistency over the interfaces between the viscoelastic core and the elastic skins resulting in accurate representations of the physics. To enable the analysis of plates with arbitrary orientation in three-dimensional space, a formulation with nine degrees of freedom per node is employed. Moreover, the element is shown to interface easily with classical plate's elements. Comparisons with both experimental tests and classical solid FE modeling are shown to prove the accuracy and computational efficiency of the presented element for the modeling of the vibro-acoustic response of the studied metal-polymer-metal panels.
机译:一种新的夹层有限元之前已成功应用于阻尼金属-聚合物-金属梁的振动分析[1]。在本文中,该元素被扩展到具有粘弹性核心的非对称夹层板的振动。核心中横向剪切的旋转对蒙皮行为的影响,确保了粘弹性核心和弹性蒙皮之间界面上的位移一致性,从而准确表示了物理场。为了能够在三维空间中分析具有任意方向的板,采用了每个节点具有九个自由度的公式。此外,该元件被证明可以轻松与经典板的元件连接。通过与实验试验和经典固体有限元建模的比较,证明了所提单元在模拟所研究的金属-聚合物-金属板的振动-声学响应方面的准确性和计算效率。

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