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首页> 外文期刊>Acta Mechanica Solida Sinica >LIQUID-SOLID COUPLED SYSTEM OF MICROPUMP
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LIQUID-SOLID COUPLED SYSTEM OF MICROPUMP

机译:微型泵的液固耦合系统

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摘要

This paper employs the integral-averaged method of thickness to approximate the periodical flows in a piezoelectric micropump, with a shallow water equation including nonlinearity and viscous damp presented to characterize the flows in micropump. The finite element method is used to obtain a matrix equation of fluid pressure. The fluid pressure equation is combined with the vibration equation of a silicon diaphragm to construct a liquid-solid coupled equation for reflecting the interaction between solid diaphragm and fluid motion in a micropump. Numerical results of a mode analysis of the coupled system indicate that the natural frequencies of the coupled system are much lower than those of the non-coupled system. The influence of additional mass and viscous damp of fluid on the natural frequencies of the coupled system is more significant as the pump thickness is small. It is found that the vibration shape functions of silicon diaphragm of the coupled system are almost the same as those of the non-coupled system. This paper also gives the first-order amplitude-frequency relationship of the silicon diaphragm, which is necessary for the flow-rate-frequency analysis of a micropump.
机译:本文采用厚度的积分平均法来近似压电微型泵中的周期性流量,并提出了一个包含非线性和粘性阻尼的浅水方程来表征微型泵中的流量。有限元法用于获得流体压力矩阵方程。将流体压力方程与硅膜片的振动方程相结合,以构建液固耦合方程,以反映固体膜片与微型泵中流体运动之间的相互作用。耦合系统的模式分析的数值结果表明,耦合系统的固有频率远低于非耦合系统的固有频率。当泵的厚度较小时,附加质量和流体的粘滞阻尼对耦合系统固有频率的影响更大。发现耦合系统的硅膜片的振动形状函数与非耦合系统的硅膜片的振动形状函数几乎相同。本文还给出了硅膜片的一阶振幅-频率关系,这对于微型泵的流量-频率分析是必需的。

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