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Nanoscopic surface texture formed by indentation and sliding of a smooth wedge tool

机译:由光滑楔形工具的压痕和滑动形成的纳米表面纹理

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摘要

To achieve reliable replication of a flat tool surface through a metalfbrming process with nanometer-scale surface roughness, a wedge tool was indented and slid under a constant normal load. In a workpiece finished with abrasive paper, some of the initial valleys remain on the tested surface, though at the boundary contact area the surface roughness is as small as that of the tool. The final surface roughness of the workpiece was much reduced by starting with a smoother surface of the workpiece and by unlubricated short sliding. A nanoscopically smooth surface of 0.8 nm sRa was obtained with a gold-coated copper workpiece after unlubricated indentation and sliding. This suggests the beneficial effect of a soft surface film coated over a hard substrate, causing complete filling of the interfacial vacancies.
机译:为了通过具有纳米级表面粗糙度的金属打磨工艺实现平面工具表面的可靠复制,将楔形工具压入并在恒定法向载荷下滑动。在用砂纸精加工的工件中,一些初始的凹谷保留在被测表面上,尽管在边界接触区域的表面粗糙度与工具的表面粗糙度一样小。通过从工件的光滑表面开始并通过未润滑的短滑动,大大降低了工件的最终表面粗糙度。在未润滑的压痕和滑动之后,用镀金的铜工件可获得0.8 nm sRa的纳米级光滑表面。这表明涂覆在硬质基底上的软表面膜的有益作用,导致界面空位的完全填充。

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