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Shear-Induced Surface-to-Bulk Transport at Room Temperature in a Sliding Metal-Metal Interface

机译:室温下在滑动金属-金属界面中剪切诱导的表面到本体的运输

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摘要

Predictions from molecular dynamics (MD) simulations, that sliding at a metal-metal interface causes vortices in the near-surface region that transport atoms from the surface into the subsurface region, is tested experimentally. This is accomplished by rubbing a methyl thiolate overlayer grown on a clean copper foil by exposure to dimethyl disulfide at room temperature. Repeatedly rubbing a 1.27 × 10~(-2) m diameter pin over a thiolatecovered copper surface at an applied load of 0.44 N and sliding speed of 4 × 10~(-3) m/s in an ultrahigh vacuum tribometer, results in the removal of sulfur from the wear track as measured using spatially resolved Auger spectroscopy. Any remaining surface species, in particular, outside the wear track, are removed by argon ion bombardment. Since sulfur is more thermodynamically stable at the surface, heating the sample causes the sulfur to resegregate to the surface only inside the wear track, thereby directly confirming the predictions from MD simulations.
机译:实验测试了分子动力学(MD)模拟的预测,即在金属-金属界面处滑动会在近表面区域产生涡旋,从而将原子从表面传输到地下区域。这是通过在室温下将二甲基二硫暴露于干净的铜箔上而生长的甲基硫醇盐覆盖层来完成的。在超高真空摩擦计中,以0.44 N的施加载荷和4×10〜(-3)m / s的滑动速度,在硫醇盐覆盖的铜表面上反复摩擦直径为1.27×10〜(-2)m的销,结果使用空间分辨俄歇光谱仪从磨损轨迹中去除硫。任何残留的表面物质,特别是在磨损痕迹之外,都可以通过氩离子轰击去除。由于硫在表面上的热力学稳定性更高,因此加热样品会使硫仅在磨损轨迹内重新偏析到表面,从而直接证实了MD模拟的预测。

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