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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Controlling sliding velocity by mode locking at nanoscale solid surfaces with lubricants
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Controlling sliding velocity by mode locking at nanoscale solid surfaces with lubricants

机译:通过使用润滑剂锁定在纳米级固体表面上来控制滑动速度

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摘要

Driven dynamics and kinetic frictional phenomena at nanoscale solid-solid surfaces with lubricants in the presence of both dc and ac driving forces are studied numerically. Using a lattice model which consists of two rigid substrates and a monolayer of lubricant molecules, we found mode locking phenomena, that is, the dc sliding velocity is locked to be fixed values concerning the ac driving frequency for a finite range of the dc driving force. We discuss the details of the mode locking and the kinetic frictional force in connection with the control of friction at nanoscale.
机译:数值研究了在存在直流和交流驱动力的情况下,使用润滑剂在纳米级固态表面上的驱动动力学和动摩擦现象。使用由两个刚性基板和一个单分子润滑剂分子组成的晶格模型,我们发现了模式锁定现象,即,在有限的直流驱动力范围内,直流滑动速度被锁定为与交流驱动频率有关的固定值。我们讨论了锁模和动摩擦力与纳米级摩擦控制有关的细节。

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