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Experimental Evaluation and Modeling of the Damping Properties of Multi-Layer Coated Composites

机译:多层涂层复合材料阻尼性能的实验评估与建模

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In this work, the dissipative properties of different coating solutions are compared and a beam mechanical model, taking into account of dissipative actions at the interface between different layers is proposed. The aim is to find optimal coatings to be employed in the production of composites with high damping properties. The investigated coating layers are obtained from different materials and production processes, and are applied on different metallic substrates. The composite specimens, in the form of slender beams, are tested by means of forced excitation dynamic measurements. Force and displacement experimental data, in a wide range of excitation frequencies, are used to estimate the system damping properties. Homogeneous, uncoated specimens are also tested for comparison. A specific identification procedure is used to identify the specimens stress-strain relationship in the frequency domain. The ratio of the imaginary part and the modulus of the specimen estimated complex frequency response function is considered as a measurement of the damping behaviour. A modified third order multi layered beam model, based on the zig-zag beam theory, is proposed. The model takes into account the contribution to the damping behaviour of the frictional actions and slipping at the interface between layers. Frictional actions are modelled by means of a complex, elasto-hysteretic contribution.
机译:在这项工作中,比较了不同涂料溶液的耗散性能,并考虑了在不同层之间的界面处的耗散作用,提出了一种束力学模型。目的是找到用于生产具有高阻尼性能的复合材料的最佳涂料。研究的涂层是从不同的材料和生产工艺中获得的,并应用于不同的金属基材上。细长梁形式的复合材料样本通过强制激励动态测量进行测试。在广泛的激励频率范围内,力和位移实验数据用于估计系统的阻尼特性。还测试了均质,未涂层的样品以进行比较。使用特定的识别程序在频域中识别试样的应力-应变关系。虚部的比例与样本估计的复频响应函数的模量之比被认为是阻尼行为的量度。提出了一种基于之字形梁理论的改进的三阶多层梁模型。该模型考虑了摩擦作用对阻尼行为的影响以及层之间界面处的滑移。摩擦动作是通过复杂的弹性滞后作用建模的。

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