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Experimental Characterization of the Torsional Damping in CFRP Disks by Impact Hammer Modal Testing

机译:冲击锤模态测试CFRP磁盘扭转阻尼的实验表征

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Composite materials are widely used for their peculiar combination of excellent structural, mechanical, and damping properties. This work presents an experimental study on the dissipation properties of disk-shaped composite specimens exploiting vibration tests. Two different polymer matrix composites with the same number of identical laminae, but characterized by different stacking sequences, namely unidirectional and quasi-isotropic configurations, have been evaluated. An ad-hoc steel structure was designed and developed to reproduce an in-plane torsional excitation on the specimen. The main idea of the proposed approach relies on deriving the damping properties of the disks by focusing on the modal damping of the overall vibrating structure and, in particular, using just the first in-plane torsional deformation mode. Experimental torsional damping evaluations were conducted by performing vibrational hammer excitation on the presented setup. Two methods were proposed and compared, both relying on a single-degree-of-freedom (SDOF) approximation of the measured frequency response function (FRF).
机译:复合材料广泛用于优异的结构,机械和阻尼性能的特殊组合。该作品提出了一种对利用振动试验的磁盘形复合试样的耗散性能实验研究。已经评估了两种具有相同数量相同薄层的不同聚合物基复合材料,但表征了不同的堆叠序列,即单向和准各向同性配置。设计并开发了诸如施工钢结构以在样品上再现面内扭转激发。所提出的方法的主要思想依赖于通过专注于整体振动结构的模态阻尼,并且特别地使用仅使用第一面内扭转变形模式来依赖于磁盘的阻尼性能。通过对所呈现的设置进行振动锤激发进行实验扭转阻尼评估。提出并比较了两种方法,依赖于测量频率响应函数(FRF)的单一程度自由度(SDOF)近似。

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