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Size-dependent vibrations of a micro beam conveying fluid and resting on an elastic foundation

机译:微束输送流体的尺寸依赖性振动并在弹性基础上搁置

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摘要

In this study, fluid conveying continuous media was considered as micro beam. Unlike the classical beam theory, the effects of shear stress on micro-structure's dynamic behavior not negligible. Therefore, modified couple stress theory (MCST) were used to see the effects of being micro-sized. By using Hamilton's principle, the nonlinear equations of motion for the fluid conveying micro beam were obtained. Micro beam was considered as resting on an elastic foundation. The obtained equations of motion were became independence from material and geometric structure by nondimensionalization. Approximate solutions of the system were achieved with using the multiple time scales method (a perturbation method). The effects of micro-structure, spring constant, the occupancy rate of micro beam, the fluid velocity on natural frequency and solutions were researched. MCST compared with classical beam theory and showed that beam models that based on classical beam theory are not capable of describing the size effects. Comparisons of classical beam theory and MCST were showed in graphics and these graphics also proved that obtained mathematical model suitable for describe the behavior of normal sized beams.
机译:本研究将流体输送连续介质视为微束。与经典梁理论不同,剪切应力对微结构动力行为的影响不容忽视。因此,我们使用修正的耦合应力理论(MCST)来观察微小尺寸的影响。利用哈密顿原理,得到了流体输送微梁的非线性运动方程。微梁被认为是搁置在弹性地基上。通过无量纲化,得到的运动方程独立于材料和几何结构。利用多时间尺度法(一种摄动法)获得了系统的近似解。研究了微结构、弹簧常数、微梁占用率、流体速度对固有频率的影响及求解方法。MCST与经典梁理论进行了比较,结果表明基于经典梁理论的梁模型不能描述尺寸效应。图形显示了经典梁理论和MCST的比较,这些图形也证明了所获得的数学模型适合描述正常尺寸梁的行为。

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