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Sudden stoppage of rotor in a thermally driven rotary motor made from double-walled carbon nanotubes

机译:由双壁碳纳米管制成的热驱动旋转电机中的转子突然停止运转

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In a thermally driven rotary motor made from double-walled carbon nanotubes, the rotor (inner tube) can be actuated to rotate within the stator (outer tube) when the environmental temperature is high enough. A sudden stoppage of the rotor can occur when the inner tube has been actuated to rotate at a stable high speed. To find the mechanisms of such sudden stoppages, eight motor models with the same rotor but different stators are built and simulated in the canonical NVT ensembles. Numerical results demonstrate that the sudden stoppage of the rotor occurs when the difference between radii is near 0.34 nm at a high environmental temperature. A smaller difference between radii does not imply easier activation of the sudden rotor stoppage. During rotation, the positions and electron density distribution of atoms at the ends of the motor show that a sp(1) bonded atom on the rotor is attracted by the sp(1) atom with the biggest deviation of radial position on the stator, after which they become two sp(2) atoms. The strong bond interaction between the two atoms leads to the loss of rotational speed of the rotor within 1 ps. Hence, the sudden stoppage is attributed to two factors: the deviation of radial position of atoms at the stator's ends and the drastic thermal vibration of atoms on the rotor in rotation. For a stable motor, sudden stoppage could be avoided by reducing deviation of the radial position of atoms at the stator's ends. A nanobrake can be, thus, achieved by adjusting a sp(1) atom at the ends of stator to stop the rotation of rotor quickly.
机译:在由双壁碳纳米管制成的热驱动旋转电动机中,当环境温度足够高时,可以驱动转子(内管)在定子(外管)内旋转。当内管已被驱动以稳定的高速旋转时,转子可能突然停止运转。为了找到这种突然停止的机理,在规范的NVT集成中建立了八个具有相同转子但定子不同的电动机模型并进行了仿真。数值结果表明,在高环境温度下,当半径之间的差异接近0.34 nm时,转子会突然停止。半径之间的较小差异并不意味着更容易激活转子突然停止。在旋转过程中,电动机端部原子的位置和电子密度分布表明,转子上的sp(1)结合原子被sp(1)原子吸引,定子上径向位置的偏差最大,它们变成两个sp(2)原子。两个原子之间的强键相互作用导致转子旋转速度在1 ps内损失。因此,突然停止的原因有两个:原子在定子端部的径向位置的偏差和原子在转子上旋转时的剧烈热振动。对于稳定的电动机,可以通过减小定子端部原子的径向位置偏差来避免突然停止。因此,可以通过调节定子端部的sp(1)原子以快速停止转子的旋转来实现纳米制动。

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