Lateral Free Vibration of Micro-Rods Using a Nonlocal Continuum Approach

F. Xie, Ning Zhang, Cheng Chen, Cheng Li
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Abstract

The lateral free vibration of micro-rods initially subjected to axial loads based on a nonlocal continuum theory is considered. The effects of nonlocal long-range interaction fields on the natural frequencies and vibration modes are examined. A simply supported micro-rod is taken as an example; the linear vibration responses are observed by two different methods, including the separation of variables and multiple scales analysis. The relations between the vibration mode and dimensionless coordinate and the relations between natural frequencies and nonlocal parameters are analyzed and discussed in detail. The numerical comparison shows that the theoretical results by two different approaches have a good agreement, which validates the present micro-rod model that can be used as a component of the micro-electromechanical system.
基于非局部连续体方法的微杆横向自由振动
基于非局部连续介质理论,研究了微杆在初始轴向载荷作用下的横向自由振动问题。研究了非局域远程相互作用场对系统固有频率和振型的影响。以简支微杆为例;采用分离变量法和多尺度分析两种方法对结构的线性振动响应进行了分析。详细分析和讨论了振动模态与无量纲坐标的关系以及固有频率与非局部参数的关系。数值比较表明,两种方法的理论计算结果具有较好的一致性,验证了所建立的微杆模型可以作为微机电系统的组成部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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