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Experimental Study on the Effectiveness of Polyurethane Flexible Adhesive in Reduction of Structural Vibrations

机译:基于结构振动减少聚氨酯柔性粘合剂的实验研究

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摘要

The aim of the present study is to consider the idea of using polyurethane flexible adhesive in to reduce the vibrations in structures exposed to dynamic loads and evaluate their damping properties in relation to large deformations. Firstly, two aluminium cantilever beams, simulating structural elements (without and with polyurethane layer in the form of tape), were analysed, in order to check the damping of the unconstrained polymer layer. In the second stage of the study, a composite beam consisting of two aluminium flat beams bonded with polymer adhesive was considered, so as to check the damping of the constrained polymer layer. Dynamic parameters, such as modes of free vibrations, corresponding natural frequencies and damping ratios, were determined and compared. The third stage of the investigation was aimed at solving the problem of the additional mass of the applied polymer layer, which influences the frequencies and damping of the tested structure. A special separating procedure is proposed that makes it possible to calculate the corrected real values of the polymer layer’s damping. The results of the study clearly show that the response of the composite aluminium beam with and without polymer adhesive layer is mainly influenced by the layers’ thickness and the large strain deformation, in terms of its damping characteristics. The use of polymer adhesive layers in constrained and unconstrained conditions leads to a significant reduction in the vibrations of tested beams, while preserving their stiffness at nearly the same level. The applied analysis procedure made it possible for us to separate the damping properties of the analysed polymer layers and evaluate them independently with respect to the influence of integrated structural elements on damping.
机译:本研究的目的是考虑使用聚氨酯柔性粘合剂的想法,以减少暴露于动态载荷的结构中的振动,并评估其有关大变形的阻尼性质。首先,分析了两个铝悬臂梁,模拟结构元件(没有胶带形式的聚氨酯层),以检查无约束聚合物层的阻尼。在研究的第二阶段,考虑由与聚合物粘合剂结合的两个铝平梁组成的复合梁,以检查约束聚合物层的阻尼。测定和比较动态参数,例如自由振动模式,相应的自然频率和阻尼比。调查的第三阶段旨在解决应用的聚合物层的额外质量的问题,这影响了测试结构的频率和阻尼。提出了一种特殊的分离过程,使得可以计算聚合物层的阻尼的校正真正值。该研究的结果清楚地表明,在其阻尼特性方面,具有和不具有聚合物粘合剂层的复合铝梁的响应主要受到层厚度和大应变变形的影响。在受约束和无约束条件下使用聚合物粘合剂层导致经测试梁的振动显着降低,同时在几乎相同的水平处保持刚度。所应用的分析程序使我们可以分离分析的聚合物层的阻尼性能,并根据综合结构元素对阻尼的影响来独立评估它们。

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