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Numerical simulation data for the dynamic properties of rainbow metamaterials

机译:彩虹超材料动态特性的数值模拟数据

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摘要

Simulation data are presented for identifying and analysing the dynamic properties of the rainbow metamaterials as presented in the articles “Rainbow metamaterials for broadband multi-frequency vibration attenuation: numerical analysis and experimental validation” (Meng et al., 2019 [1]) and “Optimal design of rainbow elastic metamaterials” (Meng et al., 2019 [2]). In this data article, the frequency response functions and mode shapes of the rainbow metamaterials are numerically calculated by Finite Element models set up in Ansys Mechanical APDL. Harmonic analysis was performed to figure out the receptance function values of the rainbow metamaterials within the frequency regime 0–500 Hz. Modal analysis was applied to estimate the mode shapes, which could be used to explain the critical peaks and dips in the receptance function curve. Source files of Finite Element models are provided in the data. The Finite Element simulation is not only an effective alternative way to estimate the dynamic properties of the rainbow metamaterials, the mode shape analysis, which is unlikely to be achieved with the analytical model, provides direct insights into the underlying vibration mechanism of the rainbow metamaterials.
机译:提供了用于识别和分析彩虹超材料的动力学特性的仿真数据,如“宽带多频振动衰减的彩虹超材料:数值分析和实验验证”(Meng等,2019 [1])和“彩虹弹性超材料的优化设计”(Meng等,2019 [2])。在此数据文章中,彩虹超材料的频率响应函数和模态形状是通过在Ansys Mechanical APDL中建立的有限元模型进行数值计算的。进行了谐波分析,以找出0–500 Hz频率范围内彩虹超材料的接受函数值。应用模态分析来估计模态形状,这可以用来解释接收函数曲线中的关键峰和谷。数据中提供了有限元模型的源文件。有限元模拟不仅是估计彩虹超材料的动力学特性的有效替代方法,而且模式形状分析(通过分析模型不太可能实现)可以直接了解彩虹超材料的潜在振动机理。

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