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首页> 外文期刊>The Journal of Chemical Physics >Contact forces at the sliding interface: Mixed versus pure model alkane monolayers - art. no. 024701
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Contact forces at the sliding interface: Mixed versus pure model alkane monolayers - art. no. 024701

机译:滑动界面处的接触力:混合与纯模型烷烃单层-艺术。没有。 024701

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摘要

Classical molecular dynamics simulations of an amorphous carbon tip sliding against monolayers of n-alkane chains are presented. The tribological behavior of tightly packed, pure monolayers composed of chains containing 14 carbon atoms is compared to mixed monolayers that randomly combine equal amounts of 12- and 16-carbon-atom chains. When sliding in the direction of chain cant under repulsive (positive) loads, pure monolayers consistently show lower friction than mixed monolayers. The distribution of contact forces between individual monolayer chain groups and the tip shows pure and mixed monolayers resist tip motion similarly. In contrast, the contact forces "pushing" the tip along differ in the two monolayers. The pure monolayers exhibit a high level of symmetry between resisting and pushing forces which results in a lower net friction. Both systems exhibit a marked friction anisotropy. The contact force distribution changes dramatically as a result of the change in sliding direction, resulting in an increase in friction. Upon continued sliding in the direction perpendicular to chain cant, both types of monolayers are often capable of transitioning to a state where the chains are primarily oriented with the cant along the sliding direction. A large change in the distribution of contact forces and a reduction in friction accompany this transition. (C) 2005 American Institute of Physics.
机译:提出了经典碳纤维分子模拟的无定形碳尖端滑向正构烷烃链的单分子层。将紧密堆积的纯单分子层(由含14个碳原子的链组成)的摩擦学行为与随机结合等量的12和16碳原子链的混合单分子层进行比较。当在排斥(正)负荷下沿链倾斜方向滑动时,纯单层始终显示出比混合单层更低的摩擦力。单个单分子链基团与尖端之间的接触力分布表明,纯的和混合的单分子层均能抵抗尖端的运动。相反,“推动”尖端的接触力在两个单层中不同。纯单层在阻力和推力之间表现出高度的对称性,从而导致较低的净摩擦。两种系统都表现出明显的摩擦各向异性。接触力分布由于滑动方向的变化而急剧变化,从而导致摩擦增加。在沿垂直于链斜面的方向继续滑动时,两种类型的单分子层通常能够转变为链主要沿着斜面以斜面取向的状态。这种过渡伴随着接触力分布的巨大变化和摩擦的减小。 (C)2005美国物理研究所。

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