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A nano continuous variable transmission system from nanotubes

机译:纳米管的纳米连续变速器系统

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A nano continuous variable transmission (nano-CVT) system is proposed by means of carbon nanotubes (CNTs). The dynamic behavior of the CNT-based nanosystem is assessed using molecular dynamics simulations. The system contains a rotary CNT-motor and a CNT-bearing. The tube axes of the nanomotor and the rotor in the bearing are laid in parallel, and the distance between them is known as the eccentricity of the rotor with a diameter of d. By changing the eccentricity (e) of the rotor from 0 to d, some interesting rotation transmission phenomena are discovered, whose procedures can be used to design various nanodevices. This might include the failure of rotation transmission- i.e. the rotor has no rotation-when e = d at an extremely low temperature, or when the edges of the two tubes are orthogonal at their intersections in any condition. This hints that the state of the nanosystem can be used as an on/off switch or breaker. For a system with e = d and a high temperature, the rotor rotates in the reverse direction of the motor. This means that the output signal (rotation) is the reverse of the input signal. When changing the eccentricity from 0 to d continuously, the output signal gradually decreases from a positive value to a negative value; as a result a nano-CVT system is obtained.
机译:通过碳纳米管(CNT)提出了一种纳米连续变速器(纳米CVT)系统。使用分子动力学模拟评估基于CNT的纳米系统的动态行为。该系统包含旋转CNT电动机和CNT轴承。纳米电机的管轴和轴承中的转子并联布置,并且它们之间的距离称为转子的偏心率,具有D的直径。通过改变转子的偏心(e)从0到D,发现了一些有趣的旋转传输现象,其程序可用于设计各种纳米型。这可能包括旋转传输的失败 - 即,当在极低温度下e& = d时,转子没有旋转 - 或者当两个管的边缘在任何条件下在它们的交叉处垂直时。这提示纳米系统的状态可用作开/关开关或断路器。对于具有E = D的系统和高温,转子沿电动机的相反方向旋转。这意味着输出信号(旋转)是输入信号的反向。当连续将偏心率从0变为D时,输出信号从正值逐渐减小到负值;结果,获得了纳米CVT系统。

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