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Dynamic Properties of Microresonators with the Bionic Structure of Tympanic Membrane

机译:具有鼓膜仿生膜的微生物器的动态特性

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摘要

The structure of a microresonator will affect the vibration characteristics and the performance of the system. Inspired by the structural characteristics of the human tympanic membrane, this paper proposed a microresonator with the bionic structure of a tympanic membrane. The structure of a tympanic membrane was simplified to a regular shape with three structural parameters: diameter, height, and thickness. To imitate the tympanic membrane, the contour surface of the bionic structure was modeled based on the formula of transverse vibration mode of a circular thin plate. The geometric model of the bionic structure was established by using the three structural parameters and the contour surface equation. The dynamic properties of the bionic model were studied by the finite element method (FEM). We discuss the modal characteristics of the bionic structure and study the effect of structural parameters and scale on the dynamic properties. The advantages of the bionic structure were investigated by a comparison with circular plate microresonators. The results illustrate that the bionic structure can significantly improve the resonant frequency and have a much larger effective area of vibration displacement.
机译:微管的结构将影响振动特性和系统性能。本文提出了一种具有鼓膜膜的仿生结构的微生物的结构特征的启发。鼓膜的结构简化为具有三个结构参数的规则形状:直径,高度和厚度。为了模拟鼓膜,基于圆形薄板的横向振动模式的公式模拟仿生结构的轮廓表面。通过使用三个结构参数和轮廓表面方程建立了仿生结构的几何模型。通过有限元法(FEM)研究了仿生模型的动态特性。我们讨论了仿生结构的模态特征,研究了结构参数和规模对动态性质的影响。通过与圆形板微生物的比较研究了仿生结构的优点。结果说明仿生结构可以显着提高谐振频率,并且具有更大的振动位移的有效面积。

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