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Prediction and Measurement of the Damping Ratios of Laminated Polymer Composite Plates

机译:层压聚合物复合板阻尼比的预测和测量

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摘要

Laminated composites materials are mostly used in dynamically loaded structures. The design of these structures with finite element packages is focused on vibrations, elastic deformations and failure control. Damping is often neglected because of its assumed secondary importance and also because of dearth of information on relevant material properties. This trend is prone to change as it is now realised that damping plays an increasingly important role in vibration comfort, noise radiation and crash simulations. This paper shows in a first step how to identify the orthotropic elastic and damping properties of single layer fibre-reinforced composite material sheets using a new extended version of the Resonalyser procedure. The procedure is based on the elastic-viscoelastic correspondence principle and uses a mixed numerical experimental method. In a subsequent step, the complex laminate stiffness values are computed using the identified single layer material properties. To validate this approach, the modal damping ratios of arbitrary laminated plates of different materials at several resonance frequencies are predicted and experimentally verified.
机译:层压复合材料主要用于动态加载的结构。这些结构的设计具有有限元件封装,专注于振动,弹性变形和故障控制。由于其假定的二级重要性,并且还因为有关相关材料特性的信息,而且还因为有关相关材料特性的缺乏而忽略了阻尼。这种趋势易于改变,因为现在意识到阻尼在振动舒适度,噪声辐射和碰撞模拟中起着越来越重要的作用。本文在如何使用新的延长版本的中性程序程序识别单层纤维增强复合材料片的正交弹性和阻尼性能的第一步中。该程序基于弹性粘弹性的对应原理,并使用混合数值实验方法。在随后的步骤中,使用所识别的单层材料特性来计算复杂的层压刚度值。为了验证这种方法,预测并通过实验验证在多个共振频率下不同材料的任​​意层压板的模态阻尼比。

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