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Experimental Characterization of a High-Damping Viscoelastic Material Enclosed in Carbon Fiber Reinforced Polymer Components

机译:碳纤维增强聚合物组分封装的高阻尼粘弹性材料的实验表征

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摘要

This work aims to identify the damping properties of a commercial viscoelastic material that can be embedded and cured between the layers of composite laminates. The material may be adopted for reducing the vibration response of composite panels, typically used in automotive and aerospace applications, e.g. as vehicle body shell components. In order to objectively estimate the actual potential to enhance the noise vibration and harshness aspects, the effects of the viscoelastic material on the modal parameters of carbon/epoxy thin panels are quantitatively assessed through experimental modal analysis. Two different experiments are conducted, namely impact hammer tests and shaker excitation measurements. Based on the results of the experimental campaign, the investigated material is confirmed as a promising solution for possibly reducing the severity of vibrations in composite panels, thanks to its high damping properties. Indeed, the presence of just one layer proves to triple the damping properties of a thin panel. An approximate damping model is derived from the measured data in order to effectively simulate the dynamic response of new design solutions, including thin composite panels featuring the viscoelastic material.
机译:该工作旨在识别商业粘弹性材料的阻尼性能,这些材料可以嵌入和固化在复合层压板层之间。可以采用该材料来减少复合板的振动响应,通常用于汽车和航空航天应用中,例如,用于汽车和航空航天应用。作为车身壳组件。为了客观地估计实际潜力来增强噪声振动和刺痛的方面,通过实验模态分析定量评估粘弹性材料对碳/环氧薄板的模态参数的影响。进行了两个不同的实验,即冲击锤试验和振动筛激发测量。根据实验活动的结果,由于其高阻尼性能,所研究的材料被证实是可能降低复合板中振动严重程度的有希望的解决方案。实际上,只有一层的存在证明了薄面板的阻尼性能。近似阻尼模型来自测量数据,以便有效地模拟新设计解决方案的动态响应,包括粘弹性材料的薄复合板。

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