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Viscous fluid damping in a laterally oscillating finger of a comb-drive micro-resonator based on micro-polar fluid theory

机译:基于微极性流体理论的梳状驱动微谐振器的横向振荡指中的粘性流体阻尼

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摘要

Viscous damping is a dominant source of energy dissipation in laterally oscillating micro-structures. In micro-resonators in which the characteristic dimensions are compa-rable to the dimensions of the fluid molecules, the assumption of the continuum fluid theory is no longer justified and the use of micro-polar fluid theory is indispensable. In this paper a mathematical model was presented in order to predict the viscous fluid damping in a laterally oscillating finger of a micro-resonator considering micro-polar fluid theory. The coupled governing partial differential equations of motion for the vibration of the finger and the micro-polar fluid field have been derived. Considering spin and no-spin boundary conditions, the related shape functions for the fluid field were presented. The obtained governing differential equations with time varying boundary conditions have been trans-formed to an enhanced form with homogenous boundary conditions and have been discretized using a Galerkin-based reduced order model. The effects of physical properties of the micro-polar fluid and geometrical parameters of the oscillat-ing structure on the damping ratio of the system have been investigated.
机译:在横向振荡的微结构中,粘性阻尼是能量耗散的主要来源。在特征尺寸与流体分子尺寸可比的微谐振器中,连续流体理论的假设不再成立,微极性流体理论的使用是必不可少的。在本文中,提出了一个数学模型,以便在考虑了微极性流体理论的情况下预测微谐振器的横向振荡指中的粘性流体阻尼。推导了手指振动和微极性流场的耦合控制运动偏微分方程。考虑自旋和非自旋边界条件,给出了流场的相关形状函数。所获得的具有时变边界条件的控制微分方程已转换为具有均匀边界条件的增强形式,并已使用基于Galerkin的降阶模型进行离散化。研究了微极性流体的物理性质和振荡结构的几何参数对系统阻尼比的影响。

著录项

  • 来源
    《力学学报:英文版》 |2016年第003期|397-405|共9页
  • 作者单位

    Department of Mechanical Engineering, Faculty of Engineering, Urmia University, 11th km of Sero Road, Urmia, Iran;

    Department of Mechanical Engineering, Faculty of Engineering, Urmia University, 11th km of Sero Road, Urmia, Iran;

    Department of Mechanical Engineering, Faculty of Engineering, Urmia University, 11th km of Sero Road, Urmia, Iran;

    Department of Mechanical Engineering, Faculty of Engineering, Urmia University, 11th km of Sero Road, Urmia, Iran;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:49:47
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