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Constrained Damping Layer Treatments: Finite Element Modeling

机译:约束阻尼层处理:有限元建模

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In this paper we assess the performance of finite element models in modeling structures with sheer damping treatments. We analyze the finite element modeling of constrained layer damping (CLD) and integrated layer damping (ILD) treatments using viscoelastic materials, devoting special attention to the spatial modeling of the treatment and to the characterization of the viscoelastic material properties. In this work, we used a finite element commercial software (MSC.Nastran) to simulate the dynamic response of aluminum plates with both treatment configurations (CLD and ILD). The spatial modeling of the treatment was developed using three different models, all based on a layered assembly of plate/brick conventional finite elements. The dynamic properties of the viscoelastic material were taken into account in the numerical simulation using the complex modulus approach. The numerical results are correlated with experimental data obtained for four treated specimens by direct comparison of the frequency response functions (FRFs) and by using FRF-based correlation indicators. The analyzed finite element models are found to provide very reliable results when compared with experimental acquired data.
机译:在本文中,我们评估了采用纯粹阻尼处理的结构建模中有限元模型的性能。我们分析了使用粘弹性材料的约束层阻尼(CLD)和集成层阻尼(ILD)处理的有限元建模,并特别关注处理的空间建模和粘弹性材料特性的表征。在这项工作中,我们使用了有限元商用软件(MSC.Nastran)来模拟两种处理配置(CLD和ILD)的铝板的动态响应。使用三种不同的模型开发了处理的空间模型,所有模型均基于板/砖常规有限元的分层组装。在使用复模量法的数值模拟中考虑了粘弹性材料的动力学特性。通过直接比较频率响应函数(FRF)并使用基于FRF的相关指标,将数值结果与四个处理过的标本获得的实验数据相关联。与实验获得的数据相比,发现分析的有限元模型提供了非常可靠的结果。

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