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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Adhesive wear law at the single asperity level
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Adhesive wear law at the single asperity level

机译:粘合剂磨损法在单一粗糙度水平

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摘要

Macroscopic wear experiments in mid 1950s suggested an empirical wear relation: wear volume is linearly proportional to load and sliding distance. Recent asperity-level wear experiments and simulations reported a breakdown of this law at the nanoscale, posing the fundamental question: Is the macroscopic wear relation recoverable at the asperity level? Here we show that discrepant observations of wear relations can be reconciled into a unified framework. Using systematic long-timescale coarse-grained molecular dynamic wear simulations, we show that a linear adhesive wear law can be recovered at the single-asperity level only if the material removal is dominated by plastic deformation, confirming the longstanding Archard's theoretical hypothesis. Alternatively, the relation breaks down when cleavage fracture or thermally activated atomic detachment governs the loss of material at the asperity level.
机译:20世纪50年代中期宏观磨损实验表明了经验磨损关系:磨损体积与负载和滑动距离线性成比例。最近的粗糙级磨损实验和仿真报告了纳米尺度的本法分解,构成了基本问题:是在粗糙度水平上可恢复的宏观磨损关系?在这里,我们表明,可以对佩戴关系的差异观察可以与统一的框架进行协调。利用系统的长时间粗粒化分子动态磨损模拟,我们表明,如果材料去除以塑性变形主导,则只能在单节奏水平上回收线性粘合剂磨损法,确认长期的Archard的理论假设。或者,当切割骨折或热活化的原子分离控制在粗糙度水平下的材料损失时,该关系发生故障。

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