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Conditions for escape of a rotor in a rotary nanobearing from short triple-wall nanotubes

机译:短纳米三壁纳米管在旋转纳米轴承中转子逃逸的条件

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摘要

In a short nanobearing system made from carbon nanotubes, the rotor with high rotational frequency may escape from the stator, which may cause a stability problem to the system of a nanodevice with such a nanobearing. In the present work, nanobearings with tri-walled nanotubes are investigated to reveal the conditions for the moving away of the free inner tube from the high-speed rotating middle tube. Experimental results show that the escape happens when the radii difference between the two rotors is larger than 0.34 nm and the rotational frequency of the middle tube is higher than a critical value. And before the escape occurs, the rotational frequency of the inner tube is lower than this critical value. Due to the radii difference being larger than 0.34 nm, the two rotors are non-coaxial, and the centrifugal force of the inner tube results in strong radial and axial interactions between the edges of the two rotors. When the relative sliding speed is relatively high, an edge of the inner rotor will pass through the potential barrier at the adjacent edge of the middle rotor, and further escape from the middle rotor occurs. The selection of a longer middle rotor with smaller radius can increase the critical rotational frequency of the middle rotor.
机译:在由碳纳米管制成的短的纳米轴承系统中,具有高旋转频率的转子可能从定子逸出,这可能给具有这种纳米轴承的纳米装置的系统造成稳定性问题。在目前的工作中,研究了具有三壁纳米管的纳米轴承,以揭示自由内管从高速旋转中管移开的条件。实验结果表明,当两个转子之间的半径差大于0.34 nm且中间管的旋转频率高于临界值时,会发生逸出。并且在逸出发生之前,内管的旋转频率低于该临界值。由于半径差大于0.34nm,两个转子是非同轴的,并且内管的离心力导致两个转子的边缘之间强烈的径向和轴向相互作用。当相对滑动速度相对较高时,内转子的边缘将穿过中间转子的相邻边缘处的势垒,并且进一步从中间转子逸出。选择具有较小半径的较长的中间转子可以增加中间转子的临界旋转频率。

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