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首页> 外文期刊>Journal of Sound and Vibration >Quantitative determination of material viscoelasticity using a piezoelectric cantilever bimorph beam
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Quantitative determination of material viscoelasticity using a piezoelectric cantilever bimorph beam

机译:使用压电悬臂双压电晶片梁定量测定材料的粘弹性

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摘要

The objective of this paper is to formulate the governing equation of a cantilever bimorph beam associated with a tip mass in contact with a viscoelastic material, which is modeled by a stiffness and a damper in parallel. From the eigenvalue problem, we can obtain the resonant frequencies as functions of the tip mass and material stiffness. The relation between the spectrum and material damping is established by the half-power bandwidth. It is found that the resonant frequencies increase as the material stiffness increases or the tip mass decreases, and the spectrum decreases by increasing the damping. From the analytic results, a cantilever could provide a technique to assess material viscoelasticity by simple measurements of the resonant frequency and the spectrum. Since the cantilever's behavior scales with its geometry, the device can be designed specifically for mechanical measurement of a microscopic system such as living cells and biomaterials. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本文的目的是建立与与粘弹性材料接触的尖端质量相关联的悬臂双压电晶片梁的控制方程,该方程由刚度和阻尼器并行建模。从特征值问题,我们可以得出共振频率与尖端质量和材料刚度的关系。频谱和材料阻尼之间的关系由半功率带宽建立。已经发现,共振频率随着材料刚度的增加或端头质量的减少而增加,并且频谱通过增加阻尼而减少。从分析结果来看,悬臂可以提供一种通过简单测量谐振频率和频谱来评估材料粘弹性的技术。由于悬臂的行为随其几何形状而变化,因此该设备可以专门设计用于对微观系统(例如活细胞和生物材料)进行机械测量。 (c)2005 Elsevier Ltd.保留所有权利。

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