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Experimental and numerical analysis of an aluminum cantilevered beam with polymer adhesive

机译:高分子粘合剂铝悬臂梁的实验性和数值分析

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In this paper, experimental and numerical investigation on a composite cantilevered aluminum beam has been conducted. The subject of the study consists of two plain aluminum elements bonded with polymer adhesive of different thickness. It has been proven in the previous study that this kind of material has high damping properties. During an experimental investigation, value of damping ratios have been obtained. The aim of a numerical analysis was to determine dynamic parameters, such as modes of free vibration and corresponding natural frequencies. The results obtained from the analysis have been compared with the values estimated for plain cantilevered beam. The results of the study clearly show that bonding two stiff elements with the analyzed polymer adhesive leads to the significant increase in overall damping properties.
机译:在本文中,已经进行了对复合悬臂铝梁的实验和数值研究。该研究的主题包括与不同厚度的聚合物粘合剂粘合的两个平铝元件组成。它已被证明在以前的研究中,这种材料具有高阻尼性能。在实验研究期间,已经获得阻尼比的值。数值分析的目的是确定动态参数,例如自由振动模式和相应的自然频率。与普通悬臂梁估计的值进行了比较了从分析中获得的结果。该研究的结果清楚地表明,用分析的聚合物粘合剂粘合两个硬元素导致总阻尼性能的显着增加。

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