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Simplification of finite element modeling for plates structures with constrained layer damping by using single-layer equivalent material properties

机译:通过使用单层等效材料特性简化受约束层阻尼的板结构的有限元建模

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摘要

As an effective approach of suppressing vibrations, the constrained layer damping (CLD) has drawn wide attention from the automotive and aerospace industries. However, most of the existing investigations focus on the beam structures with CLD and few studies have been done on the plate structures with CLD. Considering the practical applications, this work studies the finite element (FE) modeling of plate structures with CLD by considering the shear and extension strains in all of three layers. To reduce the computational cost and ensure the accuracy, a simplified single-layer equivalent method is originally proposed to model the plate structure with CLD based on the equivalent material properties. In this method, the equivalent material properties are obtained by defining a new equation which includes the equivalent bending stiffness. By nonlinear regression of these responses at resonance frequencies, the equivalent bending stiffness can be obtained, and the plate structure with CLD can be regarded as a regular single-layer plate for modeling. The simulation result shows that the proposed simplified single-layer equivalent method using single-layer equivalent material properties is efficient and accurate for modeling plate structures with CLD.
机译:作为抑制振动的有效方法,约束层阻尼(CLD)已引起汽车和航空航天行业的广泛关注。但是,现有的大多数研究都集中在带有CLD的梁结构上,而对带有CLD的板结构的研究很少。考虑到实际应用,这项工作通过考虑所有三层中的剪切应变和延伸应变来研究具有CLD的板结构的有限元(FE)建模。为了降低计算成本并确保精度,最初提出了一种简化的单层等效方法,基于等效材料属性,使用CLD对板结构进行建模。在这种方法中,等效材料性能是通过定义一个包括等效弯曲刚度的新方程式获得的。通过在共振频率下对这些响应进行非线性回归,可以获得等效的弯曲刚度,并且具有CLD的板结构可以视为用于建模的常规单层板。仿真结果表明,所提出的简化的单层等效材料特性的单层等效方法对于利用CLD建模板结构是有效而准确的。

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