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Research on Static and Dynamic Characteristics of Gas-lubricated Microbearings for Microfluidic Devices

机译:微流体装置气体润滑微生物静态和动态特性研究

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摘要

Aerodynamic journal microbearings with microtribological phenomena significantly influence the operating stability of microfluidic devices. The modified Reynolds equations including different rarefaction models are derived and are solved by the partial derivative method and relaxation iteration algorithm. The effects of Knudsen number and bearing parameters on the static and dynamic characteristics of microbearings are investigated in detail. The results show that the rarefaction effect plays a crucial role in the ultra-thin gas film lubrication. The maximum film pressure of Fukui−Kaneko (FK) model is lowest and the result in Boltzmann model is largest in small Knudsen number regions. As the Knudsen number increases further, the curve of FK model is coincident with that of the Boltzmann model in the transition regime. The direct stiffness coefficients of Boltzmann model increase with the increase of eccentricity ratio and aspect ratio, whereas the effect of Knudsen number on the damping coefficients yields a relatively complicated trend.
机译:空气动力学杂志微生物与显微纤维学现象显着影响了微流体装置的操作稳定性。通过部分衍生法和弛豫迭代算法来得出包括不同稀疏模型的修改的雷诺等式。详细研究了knudsen号码和轴承参数对微直线性的静态和动态特性的影响。结果表明,罕见效应在超薄气膜润滑中起着至关重要的作用。 Fukui-Kaneko(FK)模型的最大薄膜压力最低,并且Boltzmann模型的结果在小knudsen号码中最大。随着knudsen数进一步增加,FK模型的曲线与过渡制度中的Boltzmann模型的曲线重合。 Boltzmann模型的直接刚度系数随着偏心比和纵横比的增加而增加,而knudsen数对阻尼系数的影响产生了相对复杂的趋势。

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