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The effect of layup and boundary conditions on the modal damping of FRP composite panels

机译:铺层和边界条件对玻璃钢复合板模态阻尼的影响

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摘要

The degree of the modal damping in a fiber-reinforced plastic (FRP) composite panel depends on a number of factors including the nature of the layup, the modal deformation, the geometry and the boundary conditions of the panel. In this article, using the theoretical predictions of modal response of a square layered FRP panel, the variation of damping with the plate layup under a combination of clamped and free boundary conditions is studied. Particular attention is paid to the variation of modal damping with the fiber orientation of the two outmost layers of the panel with a view to possibly manipulation of this orientation in order to maximisze the modal damping.
机译:纤维增强塑料(FRP)复合面板的模态阻尼度取决于许多因素,包括铺层的性质,模态变形,面板的几何形状和边界条件。在本文中,使用方形层状FRP面板的模态响应的理论预测,研究了在夹紧和自由边界条件的组合下,阻尼随板叠合的变化。特别注意模态阻尼随面板的两个最外层的纤维取向的变化,以期可能对该方向进行操纵以使模态阻尼最大化。

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